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360 peer-reviewed articles • 23,233 peer-reviewed citations • Sorted by year • Download PDF (PDF by citations)
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1Infrared multiple photon dissociation spectroscopy of protonated amino acid clusters with non-interacting side chains in the gas phase1.63Citations (PDF)
2Effect of Cosolutes on the Aggregation of a Tau Fragment: A Combined Experimental and Simulation Approach
Journal of Physical Chemistry B, 2023, 127, 4022-4031
2.71Citations (PDF)
3Computationally Designed Small Molecules Disassemble Both Soluble Oligomers and Protofibrils of Amyloid β-Protein Responsible for Alzheimer’s Disease
ACS Chemical Neuroscience, 2023, 14, 2717-2726
3.79Citations (PDF)
4Multiscale simulations reveal TDP-43 molecular-level interactions driving condensation
Biophysical Journal, 2023, 122, 4370-4381
2.248Citations (PDF)
5Computationally Designed Molecules Modulate ALS-Related Amyloidogenic TDP-43307–319 Aggregation
ACS Chemical Neuroscience, 2023, 14, 4395-4408
3.75Citations (PDF)
6Tachykinin Neuropeptides and Amyloid β (25–35) Assembly: Friend or Foe?15.019Citations (PDF)
7VO Cluster-Stabilized H2O Adsorption on a TiO2 (110) Surface at Room Temperature
Journal of Physical Chemistry C, 2022, 126, 17975-17982
3.13Citations (PDF)
8Catalytic Cross Talk between Key Peptide Fragments That Couple Alzheimer’s Disease with Amyotrophic Lateral Sclerosis15.017Citations (PDF)
9Modulating ALS-Related Amyloidogenic TDP-43307–319 Oligomeric Aggregates with Computationally Derived Therapeutic Molecules
Biochemistry, 2020, 59, 499-508
2.410Citations (PDF)
10Latent Models of Molecular Dynamics Data: Automatic Order Parameter Generation for Peptide Fibrillization
Journal of Physical Chemistry B, 2020, 124, 8012-8022
2.711Citations (PDF)
11Terminal Capping of an Amyloidogenic Tau Fragment Modulates Its Fibrillation Propensity
Journal of Physical Chemistry B, 2020, 124, 8772-8783
2.727Citations (PDF)
12Characterizing TDP-43307–319 Oligomeric Assembly: Mechanistic and Structural Implications Involved in the Etiology of Amyotrophic Lateral Sclerosis
ACS Chemical Neuroscience, 2019, 10, 4112-4123
3.724Citations (PDF)
13Catalytic Prion-Like Cross-Talk between a Key Alzheimer’s Disease Tau-Fragment R3 and the Type 2 Diabetes Peptide IAPP
ACS Chemical Neuroscience, 2019, 10, 4757-4765
3.727Citations (PDF)
14Recommendations for reporting ion mobility Mass Spectrometry measurements
Mass Spectrometry Reviews, 2019, 38, 291-320
6.8453Citations (PDF)
15The Classifying Autoencoder: Gaining Insight into Amyloid Assembly of Peptides and Proteins
Journal of Physical Chemistry B, 2019, 123, 5256-5264
2.77Citations (PDF)
16An Intrinsic Hydrophobicity Scale for Amino Acids and Its Application to Fluorinated Compounds14.448Citations (PDF)
17Inhibiting and Remodeling Toxic Amyloid-Beta Oligomer Formation Using a Computationally Designed Drug Molecule That Targets Alzheimer’s Disease2.615Citations (PDF)
18The Structure of the Protonated Serine Octamer15.078Citations (PDF)
19Distal amyloid β‐protein fragments template amyloid assembly
Protein Science, 2018, 27, 1181-1190
5.910Citations (PDF)
20Side-chain effects on the structures of protonated amino acid dimers: A gas-phase infrared spectroscopy study1.631Citations (PDF)
21NFGAIL Amyloid Oligomers: The Onset of Beta-Sheet Formation and the Mechanism for Fibril Formation15.057Citations (PDF)
22A new instrument with high mass and high ion mobility resolution1.67Citations (PDF)
23Zinc-Induced Conformational Transitions in Human Islet Amyloid Polypeptide and Their Role in the Inhibition of Amyloidosis
Journal of Physical Chemistry B, 2018, 122, 9852-9859
2.716Citations (PDF)
24Hetero-oligomeric Amyloid Assembly and Mechanism: Prion Fragment PrP(106–126) Catalyzes the Islet Amyloid Polypeptide β-Hairpin15.031Citations (PDF)
25Conformational investigation of the structure–activity relationship of GdFFD and its analogues on an achatin-like neuropeptide receptor of Aplysia californica involved in the feeding circuit2.715Citations (PDF)
26The Solution Assembly of Biological Molecules Using Ion Mobility Methods: From Amino Acids to Amyloid β-Protein7.052Citations (PDF)
27Atomic structure of a toxic, oligomeric segment of SOD1 linked to amyotrophic lateral sclerosis (ALS)7.5127Citations (PDF)
28Infrared spectrum and structure of the homochiral serine octamer–dichloride complex
Nature Chemistry, 2017, 9, 1263-1268
18.771Citations (PDF)
291,2,3,4,6-penta-O-galloyl-β-d-glucopyranose binds to the N-terminal metal binding region to inhibit amyloid β-protein oligomer and fibril formation1.628Citations (PDF)
30Structural effects of chirally mutated Enkephalin neurotransmitters: An argument for biological homochirality1.63Citations (PDF)
31Oligomerization of the microtubule‐associated protein tau is mediated by its N‐terminal sequences: implications for normal and pathological tau action
Journal of Neurochemistry, 2016, 137, 939-954
3.842Citations (PDF)
32Human Islet Amyloid Polypeptide N-Terminus Fragment Self-Assembly: Effect of Conserved Disulfide Bond on Aggregation Propensity2.631Citations (PDF)
33Aggregation of Chameleon Peptides: Implications of α-Helicity in Fibril Formation
Journal of Physical Chemistry B, 2016, 120, 5874-5883
2.724Citations (PDF)
34Retention of Native Protein Structures in the Absence of Solvent: A Coupled Ion Mobility and Spectroscopic Study14.4125Citations (PDF)
35The impact of environment and resonance effects on the site of protonation of aminobenzoic acid derivatives2.777Citations (PDF)
36Human Islet Amyloid Polypeptide Assembly: The Key Role of the 8–20 Fragment
Journal of Physical Chemistry B, 2016, 120, 11905-11911
2.713Citations (PDF)
37Die Erhaltung nativer Proteinstrukturen unter Ausschluss von Lösungsmittel: eine Untersuchung mit Hilfe der Kombination von Ionenmobilität mit Spektroskopie
Angewandte Chemie, 2016, 128, 14380-14384
1.43Citations (PDF)
38Rücktitelbild: Die Erhaltung nativer Proteinstrukturen unter Ausschluss von Lösungsmittel: eine Untersuchung mit Hilfe der Kombination von Ionenmobilität mit Spektroskopie (Angew. Chem. 45/2016)
Angewandte Chemie, 2016, 128, 14386-14386
1.40Citations (PDF)
39Amino Acid Metaclusters: Implications of Growth Trends on Peptide Self-Assembly and Structure
Analytical Chemistry, 2016, 88, 868-876
6.550Citations (PDF)
40Amyloid β-Protein Assembly and Alzheimer’s Disease: Dodecamers of Aβ42, but Not of Aβ40, Seed Fibril Formation15.0139Citations (PDF)
41Opposing Effects of Cucurbit[7]uril and 1,2,3,4,6-Penta-O-galloyl-β-d-glucopyranose on Amyloid β25–35 Assembly
ACS Chemical Neuroscience, 2016, 7, 218-226
3.731Citations (PDF)
42Amyloid β-Protein C-Terminal Fragments: Formation of Cylindrins and β-Barrels15.0105Citations (PDF)
43Mechanism of C-Terminal Fragments of Amyloid β-Protein as Aβ Inhibitors: Do C-Terminal Interactions Play a Key Role in Their Inhibitory Activity?
Journal of Physical Chemistry B, 2016, 120, 1615-1623
2.751Citations (PDF)
44An infrared spectroscopy approach to follow β-sheet formation in peptide amyloid assemblies
Nature Chemistry, 2016, 9, 39-44
18.7229Citations (PDF)
45Re-print of “Ion Mobility Spectrometry: A Personal View of its Development at UCSB”1.63Citations (PDF)
46Phenylalanine Oligomers and Fibrils: The Mechanism of Assembly and the Importance of Tetramers and Counterions15.0115Citations (PDF)
47Molecular Structures and Ion Mobility Cross Sections: Analysis of the Effects of He and N2 Buffer Gas
Analytical Chemistry, 2015, 87, 7196-7203
6.586Citations (PDF)
48Elucidation of the Aggregation Pathways of Helix–Turn–Helix Peptides: Stabilization at the Turn Region Is Critical for Fibril Formation
Biochemistry, 2015, 54, 4050-4062
2.47Citations (PDF)
49Amyloid β-Protein Assembly: The Effect of Molecular Tweezers CLR01 and CLR03
Journal of Physical Chemistry B, 2015, 119, 4831-4841
2.777Citations (PDF)
50Diphenylalanine Self Assembly: Novel Ion Mobility Methods Showing the Essential Role of Water
Analytical Chemistry, 2015, 87, 4245-4252
6.533Citations (PDF)
51Tau Assembly: The Dominant Role of PHF6 (VQIVYK) in Microtubule Binding Region Repeat R3
Journal of Physical Chemistry B, 2015, 119, 4582-4593
2.7193Citations (PDF)
52Protomers of Benzocaine: Solvent and Permittivity Dependence15.0212Citations (PDF)
53Role of Species-Specific Primary Structure Differences in Aβ42 Assembly and Neurotoxicity
ACS Chemical Neuroscience, 2015, 6, 1941-1955
3.726Citations (PDF)
54A new algorithm to characterise the degree of concaveness of a molecular surface relevant in ion mobility spectrometry
Molecular Physics, 2015, 113, 2344-2349
2.211Citations (PDF)
55Tau Aggregation Propensity Engrained in Its Solution State
Journal of Physical Chemistry B, 2015, 119, 14421-14432
2.734Citations (PDF)
56Amyloid β-Protein Assembly: Differential Effects of the Protective A2T Mutation and Recessive A2V Familial Alzheimer’s Disease Mutation
ACS Chemical Neuroscience, 2015, 6, 1732-1740
3.757Citations (PDF)
57Gly25-Ser26 Amyloid β-Protein Structural Isomorphs Produce Distinct Aβ42 Conformational Dynamics and Assembly Characteristics
Journal of Molecular Biology, 2014, 426, 2422-2441
4.132Citations (PDF)
58Catalytic Oxidation of Methanol to Formaldehyde by Mass-Selected Vanadium Oxide Clusters Supported on a TiO2(110) Surface
Journal of Physical Chemistry A, 2014, 118, 8309-8313
2.522Citations (PDF)
59Rational Design of a Structural Framework with Potential Use to Develop Chemical Reagents That Target and Modulate Multiple Facets of Alzheimer’s Disease15.0179Citations (PDF)
60Interactions between Amyloid-β and Tau Fragments Promote Aberrant Aggregates: Implications for Amyloid Toxicity
Journal of Physical Chemistry B, 2014, 118, 11220-11230
2.778Citations (PDF)
61Factors That Drive Peptide Assembly from Native to Amyloid Structures: Experimental and Theoretical Analysis of [Leu-5]-Enkephalin Mutants
Journal of Physical Chemistry B, 2014, 118, 7247-7256
2.727Citations (PDF)
62Photodissociation of Conformer-Selected Ubiquitin Ions Reveals Site-Specific Cis/Trans Isomerization of Proline Peptide Bonds15.099Citations (PDF)
63Defining the Molecular Basis of Amyloid Inhibitors: Human Islet Amyloid Polypeptide–Insulin Interactions15.073Citations (PDF)
64Ion mobility spectrometry: A personal view of its development at UCSB1.646Citations (PDF)
65Ion Mobility Analysis of Molecular Dynamics11.0183Citations (PDF)
66Effects of pH and Charge State on Peptide Assembly: The YVIFL Model System
Journal of Physical Chemistry B, 2013, 117, 10759-10768
2.737Citations (PDF)
67A novel projection approximation algorithm for the fast and accurate computation of molecular collision cross sections (IV). Application to polypeptides1.662Citations (PDF)
68A novel projection approximation algorithm for the fast and accurate computation of molecular collision cross sections (II). Model parameterization and definition of empirical shape factors for proteins1.670Citations (PDF)
69Factors Contributing to the Collision Cross Section of Polyatomic Ions in the Kilodalton to Gigadalton Range: Application to Ion Mobility Measurements
Analytical Chemistry, 2013, 85, 2191-2199
6.579Citations (PDF)
70Initiation of assembly of tau(273-284) and its ΔK280 mutant: an experimental and computational study2.762Citations (PDF)
71Formation of Functionalized Nanowires by Control of Self‐Assembly Using Multiple Modified Amyloid Peptides
Advanced Functional Materials, 2013, 23, 4881-4887
17.026Citations (PDF)
72Factors That Drive Peptide Assembly and Fibril Formation: Experimental and Theoretical Analysis of Sup35 NNQQNY Mutants
Journal of Physical Chemistry B, 2013, 117, 8436-8446
2.728Citations (PDF)
73Dimerization of Chirally Mutated Enkephalin Neurotransmitters: Implications for Peptide and Protein Aggregation Mechanisms
Journal of Physical Chemistry B, 2013, 117, 1770-1779
2.710Citations (PDF)
74Ion Mobility Spectrometry Reveals the Mechanism of Amyloid Formation of Aβ(25–35) and Its Modulation by Inhibitors at the Molecular Level: Epigallocatechin Gallate andScyllo-inositol15.087Citations (PDF)
75Familial Alzheimer’s Disease Mutations Differentially Alter Amyloid β-Protein Oligomerization
ACS Chemical Neuroscience, 2012, 3, 909-918
3.791Citations (PDF)
76A novel projection approximation algorithm for the fast and accurate computation of molecular collision cross sections (III): Application to supramolecular coordination-driven assemblies with complex shapes1.660Citations (PDF)
77Aβ(39–42) Modulates Aβ Oligomerization but Not Fibril Formation
Biochemistry, 2012, 51, 108-117
2.478Citations (PDF)
78Structural Stability from Solution to the Gas Phase: Native Solution Structure of Ubiquitin Survives Analysis in a Solvent-Free Ion Mobility–Mass Spectrometry Environment
Journal of Physical Chemistry B, 2011, 115, 12266-12275
2.7338Citations (PDF)
79The Amyloid Formation Mechanism in Human IAPP: Dimers Have β-Strand Monomer−Monomer Interfaces15.0215Citations (PDF)
80On the Origin of the Stronger Binding of PIB over Thioflavin T to Protofibrils of the Alzheimer Amyloid-β Peptide: A Molecular Dynamics Study
Biophysical Journal, 2011, 100, 1316-1324
2.288Citations (PDF)
81A novel projection approximation algorithm for the fast and accurate computation of molecular collision cross sections (I). Method1.6215Citations (PDF)
82STM characterization of size-selected V1, V2, VO, and VO2 clusters on a TiO2(110)-(1×1) surface at room temperature
Surface Science, 2011, 605, 972-976
1.728Citations (PDF)
83Characterization of simple isomeric oligosaccharides and the rapid separation of glycan mixtures by ion mobility mass spectrometry1.6118Citations (PDF)
84ESI and MALDI mass spectrometry of large POSS oligomers1.620Citations (PDF)
85Structural analysis of prion proteins by means of drift cell and traveling wave ion mobility mass spectrometry2.649Citations (PDF)
86Molecular Structures of Quiescently Grown and Brain-Derived Polymorphic Fibrils of the Alzheimer Amyloid Aβ9-40 Peptide: A Comparison to Agitated Fibrils
PLoS Computational Biology, 2010, 6, e1000693
3.156Citations (PDF)
87The Effect of Calcium Ions and Peptide Ligands on the Relative Stabilities of the Calmodulin Dumbbell and Compact Structures2.763Citations (PDF)
88Structures of Metallosupramolecular Coordination Assemblies Can Be Obtained by Ion Mobility Spectrometry−Mass Spectrometry15.0140Citations (PDF)
89Conformational Stability of Syrian Hamster Prion Protein PrP(90−231)15.029Citations (PDF)
90Oligomers of the Prion Protein Fragment 106−126 Are Likely Assembled from β-Hairpins in Solution, and Methionine Oxidation Inhibits Assembly without Altering the Peptide’s Monomeric Conformation15.072Citations (PDF)
91Direct Visualization of Water-Induced Relocation of Au Atoms from Oxygen Vacancies on a TiO2(110) Surface
Journal of Physical Chemistry C, 2010, 114, 3987-3990
3.140Citations (PDF)
92Ion mobility–mass spectrometry reveals a conformational conversion from random assembly to β-sheet in amyloid fibril formation
Nature Chemistry, 2010, 3, 172-177
18.7358Citations (PDF)
93A new, higher resolution, ion mobility mass spectrometer1.6192Citations (PDF)
94Amyloid-β protein oligomerization and the importance of tetramers and dodecamers in the aetiology of Alzheimer's disease
Nature Chemistry, 2009, 1, 326-331
18.7899Citations (PDF)
95Gas-phase structures of solution-phase zwitterions: Charge solvation or salt bridge?1.616Citations (PDF)
96Aminoglycoside antibiotics: A-site specific binding to 16S1.64Citations (PDF)
97Hydration of biomolecules
Chemical Physics Letters, 2009, 480, 1-16
2.785Citations (PDF)
98Amyloid β-Protein: Experiment and Theory on the 21−30 Fragment
Journal of Physical Chemistry B, 2009, 113, 6041-6046
2.753Citations (PDF)
99Amyloid β Protein: Aβ40 Inhibits Aβ42 Oligomerization15.0116Citations (PDF)
100Supramolecular Modification of Ion Chemistry: Modulation of Peptide Charge State and Dissociation Behavior through Complexation with Cucurbit[n]uril (n = 5, 6) or α-Cyclodextrin
Journal of Physical Chemistry A, 2009, 113, 1508-1517
2.542Citations (PDF)
101Systematic Study of the Structures of Potassiated Tertiary Amino Acids: Salt Bridge Structures Dominate
Journal of Physical Chemistry A, 2009, 113, 9543-9550
2.525Citations (PDF)
102DNA Hairpin, Pseudoknot, and Cruciform Stability in a Solvent-Free Environment
Journal of Physical Chemistry B, 2009, 113, 1722-1727
2.737Citations (PDF)
103The Structure of Aβ42 C-Terminal Fragments Probed by a Combined Experimental and Theoretical Study
Journal of Molecular Biology, 2009, 387, 492-501
4.189Citations (PDF)
104Characterization of Phosphorylated Peptides Using Traveling Wave-Based and Drift Cell Ion Mobility Mass Spectrometry
Analytical Chemistry, 2009, 81, 248-254
6.5239Citations (PDF)
105Human Islet Amyloid Polypeptide Monomers Form Ordered β-hairpins: A Possible Direct Amyloidogenic Precursor15.0218Citations (PDF)
106Protonated Arginine and Protonated Lysine: Hydration and Its Effect on the Stability of Salt-Bridge Structures
Journal of Physical Chemistry B, 2009, 113, 9995-10000
2.746Citations (PDF)
107Hydration of Protonated Aromatic Amino Acids: Phenylalanine, Tryptophan, and Tyrosine15.065Citations (PDF)
108Effects of Familial Alzheimer’s Disease Mutations on the Folding Nucleation of the Amyloid β-Protein
Journal of Molecular Biology, 2008, 381, 221-228
4.1101Citations (PDF)
109The Binding of Thioflavin T and Its Neutral Analog BTA-1 to Protofibrils of the Alzheimer’s Disease Aβ16–22 Peptide Probed by Molecular Dynamics Simulations
Journal of Molecular Biology, 2008, 384, 718-729
4.1140Citations (PDF)
110G-Quadruplex DNA Assemblies: Loop Length, Cation Identity, and Multimer Formation15.0277Citations (PDF)
111Conformational evolution of ubiquitin ions in electrospray mass spectrometry: molecular dynamics simulations at gradually increasing temperatures2.755Citations (PDF)
112Interactions of the Hormone Oxytocin with Divalent Metal Ions15.082Citations (PDF)
113Spermine Binding to Parkinson’s Protein α-Synuclein and Its Disease-Related A30P and A53T Mutants
Journal of Physical Chemistry B, 2008, 112, 11147-11154
2.763Citations (PDF)
114Structural Investigation of Encapsulated Fluoride in Polyhedral Oligomeric Silsesquioxane Cages Using Ion Mobility Mass Spectrometry and Molecular Mechanics
Chemistry of Materials, 2008, 20, 4299-4309
6.789Citations (PDF)
115Chapter 3 Noncovalent Protein Interactions0.50Citations (PDF)
116Stabilization and Structure of Telomeric and c-myc Region Intramolecular G-Quadruplexes:  The Role of Central Cations and Small Planar Ligands15.0147Citations (PDF)
117Intermolecular Interactions in Biomolecular Systems Examined by Mass Spectrometry11.0151Citations (PDF)
118An investigation of the mobility separation of some peptide and protein ions using a new hybrid quadrupole/travelling wave IMS/oa-ToF instrument1.6780Citations (PDF)
119B-DNA Helix Stability in a Solvent-Free Environment2.659Citations (PDF)
120Elucidating Amyloid β-Protein Folding and Assembly:  A Multidisciplinary Approach17.0207Citations (PDF)
121PNA/dsDNA Complexes:  Site Specific Binding and dsDNA Biosensor Applications15.086Citations (PDF)
122Structural Characterization of POSS Siloxane Dimer and Trimer
Chemistry of Materials, 2006, 18, 1490-1497
6.753Citations (PDF)
123Hydration of Mononucleotides15.056Citations (PDF)
124Cyclo[n]pyrroles:  Size and Site-Specific Binding to G-Quadruplexes15.087Citations (PDF)
125Pinning Mononuclear Au on the Surface of Titania2.723Citations (PDF)
126Formation, deposition and examination of size selected metal clusters on semiconductor surfaces: An experimental setup1.630Citations (PDF)
127Amyloid beta-protein monomer structure: A computational and experimental study
Protein Science, 2006, 15, 420-428
5.9247Citations (PDF)
128An experimental and theoretical investigation into the binding interactions of silver cluster cations with ethene and propene1.621Citations (PDF)
129G-quadruplexes in telomeric repeats are conserved in a solvent-free environment1.681Citations (PDF)
130Probing Shapes of Bichromophoric Metal−Organic Complexes Using Ion Mobility Mass Spectrometry15.024Citations (PDF)
131Structural characterization of G-quadruplexes in deoxyguanosine clusters using ion mobility mass spectrometry2.665Citations (PDF)
132Is it biologically relevant to measure the structures of small peptides in the gas-phase?1.667Citations (PDF)
133Hydration of small peptides1.653Citations (PDF)
134Binding interactions of mono- and diatomic silver cations with small alkenes: experiment and theory1.637Citations (PDF)
135Structural motifs of DNA complexes in the gas phase1.6103Citations (PDF)
136Dissociation reactions of diatomic silver cations with small alkenes: experiment and theory1.619Citations (PDF)
137Evolution of Constrained Gonadotropin-releasing Hormone Ligand Conformation and Receptor Selectivity
Journal of Biological Chemistry, 2005, 280, 38569-38575
2.239Citations (PDF)
138Landing of size-selected Agn+ clusters on single crystal TiO2 (110)-(1×1) surfaces at room temperature
Journal of Chemical Physics, 2005, 122, 081102
2.860Citations (PDF)
139Structure of Hybrid Polyhedral Oligomeric Silsesquioxane Propyl Methacrylate Oligomers Using Ion Mobility Mass Spectrometry and Molecular Mechanics
Chemistry of Materials, 2005, 17, 2537-2545
6.735Citations (PDF)
140Structural Analysis of Metal Interactions with the Dinucleotide Duplex, dCG·dCG, Using Ion Mobility Mass Spectrometry
Journal of Physical Chemistry B, 2005, 109, 4808-4810
2.721Citations (PDF)
141Oxytocin-Receptor Binding:  Why Divalent Metals Are Essential15.069Citations (PDF)
142Probing the Structure of Gas-Phase Metallic Clusters via Ligation Energetics:  Sequential Addition of C2H4to Agm+(m= 3−7)15.024Citations (PDF)
143Intact Size-Selected AunClusters on a TiO2(110)-(1 × 1) Surface at Room Temperature15.0140Citations (PDF)
144Amyloid β-Protein:  Monomer Structure and Early Aggregation States of Aβ42 and Its Pro19Alloform15.0340Citations (PDF)
145Hydration of protonated primary amines: effects of intermolecular and intramolecular hydrogen bonds1.651Citations (PDF)
146Microstructural and conformational studies of polyether copolymers1.676Citations (PDF)
147Sequence dependent conformations of glycidyl methacrylate/butyl methacrylate copolymers in the gas phase1.616Citations (PDF)
148α-Synuclein: Stable compact and extended monomeric structures and pH dependence of dimer formation2.6151Citations (PDF)
149Isomeric Structural Characterization of Polyhedral Oligomeric Silsesquioxanes (POSS) with Styryl and Epoxy Phenyl Capping Agents
Nano Letters, 2004, 4, 779-785
8.747Citations (PDF)
150Sodium stabilization of dinucleotide multiplexes in the gas phase2.724Citations (PDF)
151Duplex Formation and the Onset of Helicity in Poly d(CG)nOligonucleotides in a Solvent-Free Environment15.0120Citations (PDF)
152Investigation of Noncovalent Interactions in Deprotonated Peptides:  Structural and Energetic Competition between Aggregation and Hydration15.046Citations (PDF)
153The Determination of Cis−Trans Conformations in Tetrahedralp-Phenylene Vinylene Oligomers
Journal of Physical Chemistry A, 2004, 108, 7730-7735
2.510Citations (PDF)
154Diastereomer Assignment of an Olefin-Linked Bis-paracyclophane by Ion Mobility Mass Spectrometry15.019Citations (PDF)
155Activation of Methane by MH+(M = Fe, Co, and Ni):  A Combined Mass Spectrometric and DFT Study†
Journal of Physical Chemistry A, 2004, 108, 9755-9761
2.566Citations (PDF)
156Clustering and activation in reactions of CoCp+ with hydrogen and methane1.615Citations (PDF)
157Gas-phase conformations of deprotonated trinucleotides (dGTT−, dTGT−, and dTTG−): the question of zwitterion formation2.647Citations (PDF)
158Application of ion mobility to the gas-phase conformational analysis of polyhedral oligomeric silsesquioxanes (POSS)1.647Citations (PDF)
1593-Dimensional structural characterization of cationized polyhedral oligomeric silsesquioxanes (POSS) with styryl and phenylethyl capping agents1.637Citations (PDF)
160Bonding interactions in Ag+(O2)n and Ag2+(O2)n clusters: experiment and theory1.626Citations (PDF)
161Conformation and Luminescence of Isolated Molecular Semiconductor Molecules15.037Citations (PDF)
162Gas-Phase Conformations of Deprotonated and Protonated Mononucleotides Determined by Ion Mobility and Theoretical Modeling
Journal of Physical Chemistry B, 2003, 107, 12829-12837
2.769Citations (PDF)
163On the Dissolution Processes of Na2I+and Na3I2+with the Association of Water Molecules:  Mechanistic and Energetic Details15.030Citations (PDF)
164The Effect of the Initial Water of Hydration on the Energetics, Structures, and H/D Exchange Mechanism of a Family of Pentapeptides:  An Experimental and Theoretical Study15.088Citations (PDF)
165Sequential Hydration of Small Protonated Peptides15.076Citations (PDF)
166Origin of Bonding Interactions in Cu2+(H2)nClusters:  An Experimental and Theoretical Investigation†
Journal of Physical Chemistry A, 2002, 106, 10027-10032
2.518Citations (PDF)
167Gas-phase conformations of cationized poly(styrene) oligomers2.674Citations (PDF)
168Gas-Phase Conformations and Folding Energetics of Oligonucleotides:  dTG-and dGT-15.077Citations (PDF)
169Mechanistic and Energetic Details of Adduct Formation and σ-Bond Activation in Zr+(H2)nClusters†
Journal of Physical Chemistry A, 2001, 105, 2216-2224
2.526Citations (PDF)
170Sigma bond activation by transition metal ions: the Co(CH4)n+ systems revisited1.626Citations (PDF)
171Fe(CH4)n+ and Ni(CH4)n+ clusters: experimental and theoretical bond energies for n = 1–61.637Citations (PDF)
172Design of a new electrospray ion mobility mass spectrometer1.6265Citations (PDF)
173Conformations of biopolymers in the gas phase: a new mass spectrometric method1.649Citations (PDF)
174On the Stability of Amino Acid Zwitterions in the Gas Phase:  The Influence of Derivatization, Proton Affinity, and Alkali Ion Addition15.0265Citations (PDF)
175Gas-Phase Conformations of Synthetic Polymers:  Poly(ethylene glycol), Poly(propylene glycol), and Poly(tetramethylene glycol)15.0149Citations (PDF)
176The Role of the Cyclopentadienyl Ligand in the σ-Bond Activation of Methane15.018Citations (PDF)
177On the question of salt bridges of cationized amino acids in the gas phase: glycine and arginine1.681Citations (PDF)
178Gas phase conformations of synthetic polymers: poly (methyl methacrylate) oligomers cationized by sodium ions1.672Citations (PDF)
179Host/guest conformations of biological systems: valinomycin/alkali ions1.636Citations (PDF)
180Gas phase conformations of biological molecules: the hydrogen/deuterium exchange mechanism2.6155Citations (PDF)
181Poly (ethylene terephthalate) oligomers cationized by alkali ions: Structures, energetics, and their effect on mass spectra and the matrix-assisted laser desorption/ionization process2.676Citations (PDF)
182A New Determination of the Fluoride Ion−Water Bond Energy15.074Citations (PDF)
183Folding Energetics and Dynamics of Macromolecules in the Gas Phase:  Alkali Ion-Cationized Poly(ethylene terephthalate) Oligomers15.039Citations (PDF)
184Ni+(H2)n: Ligand bond energies for ground state ions
Chemical Physics Letters, 1998, 293, 503-510
2.737Citations (PDF)
185Cluster-Assisted Thermal Energy Activation of the H−H σ Bond in H2by Ground State B+(1S0) Ions:  Overcoming a 77 kcal/mol Barrier15.031Citations (PDF)
186Salt Bridge Structures in the Absence of Solvent? The Case for the Oligoglycines15.0176Citations (PDF)
187Reactions of Ground-State Ti+ and V+ with Propane:  Factors That Govern C−H and C−C Bond Cleavage Product Branching Ratios15.062Citations (PDF)
188Internal Excitation in the Products of Nucleophilic Substitution from the Dissociation of Metastable Ion Complexes15.026Citations (PDF)
189Binding between Ground-State Aluminum Ions and Small Molecules: Al+·(H2/CH4/C2H2/C2H4/C2H6)n. Can Al+Insert into H2?
Journal of Physical Chemistry A, 1998, 102, 8590-8597
2.565Citations (PDF)
190Origin of Bonding Interactions in Cu+(H2)n Clusters:  An Experimental and Theoretical Investigation15.088Citations (PDF)
191Structures and Energetics of Vn(C6H6)m+Clusters:  Evidence for a Quintuple-Decker Sandwich
Journal of Physical Chemistry A, 1997, 101, 8207-8213
2.5139Citations (PDF)
192Dehydrogenation of Ethene by Ti+and V+:  Excited State Effects on the Mechanism for C−H Bond Activation from Kinetic Energy Release Distributions15.029Citations (PDF)
193Structures of CnHx+Molecules forn≤ 22 andx≤ 5:  Emergence of PAHs and Effects of Dangling Bonds on Conformation
Journal of Physical Chemistry A, 1997, 101, 2096-2102
2.532Citations (PDF)
194Binding energies of Ti+(H2)1–6 clusters: Theory and experiment
Journal of Chemical Physics, 1997, 106, 10153-10167
2.849Citations (PDF)
195Mn+(H2)n and Zn+(H2)n Clusters:  Influence of 3d and 4s Orbitals on Metal−Ligand Bonding
Journal of Physical Chemistry A, 1997, 101, 2809-2816
2.568Citations (PDF)
196Effect of the long-range potential on ion mobility measurements2.6316Citations (PDF)
197Cr+(H2)n clusters: Asymmetric bonding from a symmetric ion1.648Citations (PDF)
198Gas phase structures of sodiated oligosaccharides by ion mobility/ion chromatography methods1.685Citations (PDF)
199Conformations of alkali ion cationized polyethers in the gas phase: polyethylene glycol and bis[(benzo-15-crown-5)-15-ylmethyl] pimelate1.6131Citations (PDF)
200Gas-Phase Conformation of Biological Molecules:  Bradykinin15.0378Citations (PDF)
201Mass Spectrometry:  Recent Advances and Future Directions
The Journal of Physical Chemistry, 1996, 100, 12897-12910
3.177Citations (PDF)
202Inclusion of a MALDI ion source in the ion chromatography technique: conformational information on polymer and biomolecular ions1.6208Citations (PDF)
203Carbon cluster anions: structure and growth from C5− to C62−1.6130Citations (PDF)
204Structures of Carbon Clusters from Polychlorinated Graphitic Precursors: Investigations of C12Clx+ (x = 0-10) Using the Ion Chromatography Method3.125Citations (PDF)
205Methane Dehydrogenation by Ti+: A Cluster-Assisted Mechanism for .sigma.-Bond Activation15.057Citations (PDF)
206Details of Potential Energy Surfaces Involving C-C Bond Activation: Reactions of Fe+, Co+, and Ni+ with Acetone15.051Citations (PDF)
207Factors Affecting .sigma. Bond Activation in Simple Systems: Measurement of Experimental Binding Energies of Fe+(H2)1-6 Clusters
The Journal of Physical Chemistry, 1995, 99, 15602-15607
3.142Citations (PDF)
208Gas Phase Conformations of Li+, Na+, K+, and Cs+ Complexed with 18-Crown-615.098Citations (PDF)
209The structures of small iron-carbon cluster anions. Linear to planar to three-dimensional
Chemical Physics Letters, 1994, 227, 601-608
2.766Citations (PDF)
210Structures and energies of small carbon clusters: what experiment and theory have to say about C+8, C+9 and C+101.637Citations (PDF)
211Insertion of Sc+ into H2: The First Example of Cluster-Mediated .sigma.-Bond Activation by a Transition Metal Center15.084Citations (PDF)
212Na+/K+.cntdot.(H2)1,2 clusters: binding energies from theory and experiment3.168Citations (PDF)
213Cluster ions: carbon, met-cars, and .sigma.-bond activation17.074Citations (PDF)
214Relative Energetics of C-H and C-C Bond Activation of Alkanes: Reactions of Ni+ and Fe+ with Propane on the Lowest Energy (Adiabatic) Potential Energy Surfaces15.086Citations (PDF)
215Vibrational Excitation in Products of Nucleophilic Substitution: The Dissociation of Metastable X-(CH3Y) in the Gas Phase15.0102Citations (PDF)
216C+7 is cyclic: experimental evidence
Chemical Physics Letters, 1993, 212, 241-246
2.737Citations (PDF)
217The lowest energy structures of C+7, C7 and C−7. An ab initio study
Chemical Physics Letters, 1993, 212, 247-252
2.735Citations (PDF)
218Experimental evidence for the formation of fullerenes by collisional heating of carbon rings in the gas phase
Nature, 1993, 363, 60-63
37.9421Citations (PDF)
219Cobalt-hydrogen (Co+.cntdot.(H2)n) clusters: binding energies and molecular parameters3.164Citations (PDF)
220Gas-Phase Ion Chromatography: Transition Metal State Selection and Carbon Cluster Formation
Science, 1993, 260, 1446-1451
36.2283Citations (PDF)
221Fundamental studies of the energetics and dynamics of state-selected cobalt(+) reacting with methyl iodide. The Co+-CH3 and Co+-I bond energies15.020Citations (PDF)
222Binding energies of cobalt(1+)-hydrogen-methane-ethane (Co+.cntdot.(H2/CH4/C2H6)1,2,3) clusters3.172Citations (PDF)
223Spin change induced in vanadium(I) by low-field ligands: binding energies of vanadium ion-hydrogen (V+(H2)n) clusters (n = 1-7)
The Journal of Physical Chemistry, 1993, 97, 11628-11634
3.145Citations (PDF)
224Annealing of carbon cluster cations: rings to rings and rings to fullerenes15.097Citations (PDF)
225Carbon cluster cations with up to 84 atoms: structures, formation mechanism, and reactivity3.1589Citations (PDF)
226State to state collisional quenching of vibrationally excited nitric oxide(1+) (.nu.) ions3.110Citations (PDF)
227Ion-molecule reactions of vibrationally state-selected nitric oxide ion(1+) with small alkyl halides3.115Citations (PDF)
228Determination of potential energy curves for ground and metastable excited state transition metal ions interacting with helium and neon using electronic state chromatography
Journal of Chemical Physics, 1992, 96, 6591-6605
2.838Citations (PDF)
229One- and Two-Dimensional Carbon Clusters: Isomers, Structures and Isomer Abundances.0.11Citations (PDF)
230Electronic state-selected reactivity of transition metal ions: cobalt(+) and iron(+) with propane15.055Citations (PDF)
231Reactions of state-selected cobalt(+) with propane15.043Citations (PDF)
232The dynamics of photodissociation of the gas phase N2O·H2O)+ cluster ion1.69Citations (PDF)
233The nonstatistical dissociation dynamics of chloride(bromomethane) Cl-(CH3Br): evidence for vibrational excitation in the products of gas-phase SN2 reactions15.0109Citations (PDF)
234Structures of carbon cluster ions from 3 to 60 atoms: Linears to rings to fullerenes
Journal of Chemical Physics, 1991, 95, 3835-3837
2.8499Citations (PDF)
235Dynamics of metastable dissociation and photodissociation of the gas-phase cluster ion (OCS:C2H2)+3.18Citations (PDF)
236Radiative lifetime measurements of vibrationally excited states of NO+ (X 1Σ+)
Chemical Physics Letters, 1991, 177, 239-246
2.720Citations (PDF)
237On the structure and photodissociation dynamics of Ar+3
Chemical Physics Letters, 1991, 180, 235-240
2.748Citations (PDF)
238Transition-metal ion-rare gas clusters: bond strengths and molecular parameters for Co+(He/Ne)n, Ni+(He/Ne)n, and Cr+(He/Ne/Ar)
The Journal of Physical Chemistry, 1991, 95, 10600-10609
3.164Citations (PDF)
239Electronic-state chromatography: application to first-row transition-metal ions3.1186Citations (PDF)
240Photodissociation of CO−3⋅H2O: Observation of the O−⋅H2O+CO2 product channel
Journal of Chemical Physics, 1991, 94, 6546-6552
2.823Citations (PDF)
241On the structure, reactivity and relative stability of the large carbon cluster ions C+62, C+60 and C+58
Chemical Physics Letters, 1990, 174, 223-229
2.7132Citations (PDF)
242A hybrid double-focusing mass spectrometer—High-pressure drift reaction cell to study thermal energy reactions of mass-selected ions2.6149Citations (PDF)
243The mechanism and photodissociation dynamics of the (S·SO2)+ cluster at 308 nm1.65Citations (PDF)
244A new instrument for measuring the radiative lifetimes and for studying the state-selected bimolecular reaction chemistry of small ionic species1.618Citations (PDF)
245Energetics, structure and photodissociation dynamics of the cluster Ar⋅N+2
Journal of Chemical Physics, 1990, 93, 1158-1164
2.821Citations (PDF)
246Photodissociation of CO−3: Product kinetic energy measurements as a probe of excited state potential surfaces and dissociation dynamics
Journal of Chemical Physics, 1990, 92, 5935-5943
2.822Citations (PDF)
247Mechanistic studies of processes involving carbon-carbon bond cleavage in gas-phase organometallic reactions using product kinetic energy release distributions: Co+ reacting with cyclopentane
Organometallics, 1990, 9, 625-630
2.914Citations (PDF)
248Carbon-hydrogen bond activation as the initial step in the Co+-mediated demethanation of propane: the critical role of angular momentum at the rate-limiting transition state15.062Citations (PDF)
249Kinetic energy release distributions as a probe of ligation effects on potential energy surfaces in organometallic reactions. Reversible dehydrogenation of cycloalkenes by iron cation15.014Citations (PDF)
250Radiative lifetimes of metastable O+2(a 4Πu) and NO+(a 3Σ+)
Journal of Chemical Physics, 1990, 92, 4849-4855
2.830Citations (PDF)
251Photodissociation dynamics of Ar3+
Chemical Physics Letters, 1989, 159, 10-16
2.772Citations (PDF)
252On the structure of CH3O+2 product ions in Ar/O2/CH4 mixtures: the first example of a kinetic surface1.614Citations (PDF)
253Product kinetic energy release distributions as a probe of the energetics and mechanisms of organometallic reactions involving the formation of metallacyclobutanes in the gas phase15.047Citations (PDF)
254Fundamental studies of the energetics and dynamics of ligand dissociation and exchange processes at transition-metal centers in the gas phase: Mn(CO)x+, x = 1-615.041Citations (PDF)
255Translational energy spectroscopy of beams of C+(2Pu) and C+(4Pg) ions1.69Citations (PDF)
256Photodissociation dynamics of small ionic clusters. The O+2 · (CO2)2 trimer1.60Citations (PDF)
257A new method for studying carbon clusters in the gas phase: Observation of size specific neutral fragment loss from metastable reactions of mass selected C+n, n≤60
Journal of Chemical Physics, 1988, 88, 2809-2814
2.8157Citations (PDF)
258Intramolecular energy transfer rates in photoexcited cluster ions: The photodissociation dynamics of CO−3⋅H2O and CO−3⋅CO2
Journal of Chemical Physics, 1988, 88, 3072-3080
2.817Citations (PDF)
259Photodissociation dynamics of butadiene(1+) ions from 1,3-butadiene3.19Citations (PDF)
260Mechanism and product energy disposal in the reaction of argon(1+)(2P3/2) with carbon disulfide(~X1.SIGMA.g+)3.19Citations (PDF)
261An experimental study of the formation and reactivity of ionic hydrogen clusters: The first observation and characterization of the even clusters H+4, H+6, H+8, and H+10
Journal of Chemical Physics, 1987, 86, 1301-1310
2.841Citations (PDF)
262Statistical phase space theory of ion–polar molecule systems: Application to the reaction H2O⋅H3O+→H2O+H3O+
Journal of Chemical Physics, 1987, 86, 2611-2616
2.813Citations (PDF)
263Photodissociation dynamics of weakly bound ion–neutral clusters: SO2 ⋅ O+2
Journal of Chemical Physics, 1987, 86, 3283-3291
2.86Citations (PDF)
264Fragmentation dynamics of metastable hydrogen ion clusters H5+, H7+, and H9+: experiment and theory3.134Citations (PDF)
265Product energy disposal in simple thermal-energy bimolecular ion–molecule reactions3.210Citations (PDF)
266Photon driven charge transfer half‐collisions: The photodissociation of CO2⋅O+2 cluster ions with resolution of the O2 product vibrational states
Journal of Chemical Physics, 1987, 87, 2667-2676
2.823Citations (PDF)
267The mechanism and product energy disposal in the reaction of C+(2Pu) with O2(X3Σg−)1.610Citations (PDF)
268Internal energy effects in ion-molecule reactions: ammonia(1+) + molecular deuterium3.119Citations (PDF)
269Photodissociation of weakly bound ion-molecule clusters: krypton-sulfur dioxide (Kr.SO2+)3.18Citations (PDF)
270Ion/molecule association reactions. A study of the temperature dependence of the reactions CO+ + CO + M → (CO)2+ + M for M = CO, Ne, and He, and NO+ + 2 NO → (NO)2+ + NO. Experiment and theory1.612Citations (PDF)
271Metastable and collision-induced dissociation studies of unimolecular and bimolecular reactions in the C2H5O+, C2H7O+, and C2H8N+ systems: the role of methyl (CH3+) radiative association reactions in interstellar clouds3.153Citations (PDF)
272Photodissociation dynamics of negative ion clusters: (SO2)−2
Journal of Chemical Physics, 1986, 85, 2718-2725
2.836Citations (PDF)
273A laser–ion beam study of the photodissociation dynamics of the (CO2)+3 cluster
Journal of Chemical Physics, 1986, 84, 4882-4887
2.821Citations (PDF)
274Comment on ‘‘Entropy bottlenecks in ion–molecule reactions’’
Journal of Chemical Physics, 1985, 82, 2168-2169
2.88Citations (PDF)
275A reexamination of the methyl + hydrogen cyanide association reaction including the methyl/methyl-d3 isotope effect3.116Citations (PDF)
276Ion-molecule clustering in simple systems. A study of the temperature dependence of the dimerization reactions of CH2CF2+, C6H6+ (benzene), and C6D6+ (benzene-d6) in their parent neutral gases: experiment and theory3.124Citations (PDF)
277Photodissociation of weakly bound ion-molecule clusters: the krypton.carbon dioxide (Kr.CO2+) cluster3.114Citations (PDF)
278Fragmentation dynamics and energy disposal in photodissociation of (N2O)2+ in the 458–660 nm wavelength range
Chemical Physics, 1985, 95, 469-472
2.25Citations (PDF)
279Translational energy spectroscopy of NO+ ions formed by charge transfer from Ar+
Chemical Physics Letters, 1985, 113, 93-98
2.75Citations (PDF)
280Comparison of energy partitioning in Ar+ and N2+ charge-transfer reactions
Chemical Physics Letters, 1985, 117, 127-131
2.729Citations (PDF)
281The formation and reactivity of HOC+: Interstellar implications
Journal of Chemical Physics, 1985, 83, 1121-1131
2.854Citations (PDF)
282Photodissociation of the SO2⋅SO+2 dimer in the visible region of the spectrum: Product relative kinetic energy distributions and product angular distributions
Journal of Chemical Physics, 1985, 82, 1832-1840
2.830Citations (PDF)
283Effect of reactant ion internal and translational energy on the rate constants of the charge exchange reactions: CO2++O2→O2++CO2and O2++O2→O2+O2+
Journal of Chemical Physics, 1985, 82, 4517-4523
2.813Citations (PDF)
284Kinetic isotope effect in gas-phase base-induced elimination reactions15.031Citations (PDF)
285Photoinduced intramolecular charge transfer: photodissociation of carbon dioxide ion (1+)-argon (CO2+.Ar) cluster ions15.028Citations (PDF)
286Photodissociation of the dimanganese ion: Mn2+: a route to the energetics of metal clusters15.060Citations (PDF)
287The dynamics of photodissociation of cluster ions. II. Photodissociation of the (NO)+3 cluster in the visible wavelength range
Journal of Chemical Physics, 1984, 81, 222-230
2.834Citations (PDF)
288Energy disposal in the thermal and near‐thermal energy charge exchange reactions: N+(3P)+CO(X1Σ+) → N(4S)+CO+(X 2Σ) and N+(3P)+CO(X 1Σ+) → C(3P)+NO+(X 1Σ)
Journal of Chemical Physics, 1984, 80, 4901-4906
2.818Citations (PDF)
289First Spectroscopic Observation of theCΠu2Excited State ofH2+
Physical Review Letters, 1984, 52, 26-28
8.220Citations (PDF)
290Energy disposal in photodissociation from magic angle measurements with a crossed high‐energy ion beam and laser beam: Photodissociation dynamics of the (N2)+2 cluster in the 458–514 nm range
Journal of Chemical Physics, 1984, 81, 214-221
2.875Citations (PDF)
291Charge transfer half‐collisions: Photodissociation of the Kr⋅O+2cluster ion with resolution of the O2product vibrational states
Journal of Chemical Physics, 1984, 81, 4369-4379
2.870Citations (PDF)
292The first experimental observation of electronic transitions in C2+ and C2D+
Chemical Physics, 1984, 91, 161-166
2.239Citations (PDF)
293Electronic predissociation of carbonylchromium(1+) (CrCO+) and dicarbonylchromium(1+) (Cr(CO)2+)3.13Citations (PDF)
294Metastable and collision induced fragmentation of some small cluster ions: Ar2+ Ar3+, ArN2+ and N4+
Organic Mass Spectrometry, 1983, 18, 553-560
0.715Citations (PDF)
295On the structure and photodissociation of cluster ions in the gas phase. (N2) (O2+) and (NO)2+
Chemical Physics Letters, 1983, 102, 335-339
2.710Citations (PDF)
296Translational-energy spectroscopy of NO+ and NO2+
Chemical Physics, 1983, 82, 471-478
2.236Citations (PDF)
297An improved high-pressure, temperature-variable ion source with coaxial electron beam/ion exit slit1.637Citations (PDF)
298Reevaluation of the temperature dependence of the reactions of Cl+ and HCl+· with H21.05Citations (PDF)
299An improved tandem mass spectrometer-ion-cyclotron-resonance spectrometer1.036Citations (PDF)
300Kinetics of ion–molecule collision complexes in the gas phase. Experiment and theory3.245Citations (PDF)
301Structure and reactivity of gas-phase ions: C4H4.bul.+15.029Citations (PDF)
302Ion-molecule association reactions: reaction sequences initiated by protonated methanol (MeOH2+) in methanol; experiment and theory15.078Citations (PDF)
303Unimolecular and bimolecular reactions in the C4H6+⋅ system: Experiment and theory
Journal of Chemical Physics, 1983, 78, 3756-3766
2.832Citations (PDF)
304Investigation of the dynamics and energy disposal in the photodissociation of small ion clusters using a high‐energy ion beam crossed with a laser beam: Photodissociation of (NO)2+. in the 488–660 nm range
Journal of Chemical Physics, 1983, 79, 6086-6096
2.857Citations (PDF)
305Photodissociation of vibrationally excited trifluoroiodomethane(1+) and trifluorobromomethane(1+) by a single infrared photon3.152Citations (PDF)
306Bill Flygare: A Research Director3.10Citations (PDF)
307Frequency‐scanning marginal oscillator for ion cyclotron resonance spectroscopy1.512Citations (PDF)
308On the formation of HCO+ and HOC+ from the reaction between H+3 and CO
Journal of Chemical Physics, 1982, 77, 5847-5848
2.841Citations (PDF)
309On the use of collision induced dissociation spectra in the determination of the structural composition of ions
Organic Mass Spectrometry, 1982, 17, 229-236
0.737Citations (PDF)
310Internal energy effects in collision induced dissociation spectra
Organic Mass Spectrometry, 1982, 17, 399-402
0.721Citations (PDF)
311On the question of intermolecular entropy effects in low-pressure ion/molecule equilibria: An analysis based on the langevin model1.01Citations (PDF)
312Mechanism of the metastable reaction H2S+ → S+ + H2; product energy distributions and their dependence on temparature
Chemical Physics, 1982, 65, 19-28
2.229Citations (PDF)
313High resolution translational energy spectroscopy: Electronic transitions in Kr±, and I+ and vibronic transitions in N2±
Chemical Physics, 1982, 65, 281-288
2.234Citations (PDF)
314Ion-molecule radiative association reactions. A statistical phase-space theory model15.049Citations (PDF)
315Kinetic energy release in unimolecular reactions of the type CH3XH+ → CH2X+ + H2
Chemical Physics Letters, 1981, 82, 455-457
2.711Citations (PDF)
316Multiple transition states in unimolecular reactions: A transition state switching model. Application to the C4H8 +⋅ system
Journal of Chemical Physics, 1981, 74, 2228-2246
2.8188Citations (PDF)
317C3H5+ isomers: evidence for the existence of long-lived allyl and 2-propenyl cations in the gas phase15.032Citations (PDF)
318Collisions in a noncentral field: A variational and trajectory investigation of ion–dipole capture
Journal of Chemical Physics, 1980, 72, 2641-2655
2.8278Citations (PDF)
319Proton affinities and photoelectron spectra of three-membered-ring heterocycles15.090Citations (PDF)
320Theory of translationally driven reactions3.1220Citations (PDF)
321Gas-phase basicities of amides and imidates. Estimation of protomeric equilibrium constants by the basicity method in the gas phase15.036Citations (PDF)
322Gas-phase ion-molecule association reactions. A statistical phase space theory approach15.069Citations (PDF)
323Energy transfer in excited ionic species. Rates and mechanism of dimerization of protonated amines with their neutral bases15.023Citations (PDF)
324Ion–polar molecule collisions. Conservation of angular momentum in the average dipole orientation theory. The AADO theory
Journal of Chemical Physics, 1978, 69, 2243-2250
2.8119Citations (PDF)
325Ion cycloton resonance spectroscopy: A sensitivity calibration of marginal oscillators as a function of frequency1.514Citations (PDF)
326Statistical phase space theory of polyatomic systems: Rigorous energy and angular momentum conservation in reactions involving symmetric polyatomic species
Journal of Chemical Physics, 1977, 66, 2306-2315
2.8215Citations (PDF)
327Statistical phase space theory of polyatomic systems. Application to the unimolecular reactions C6H5CN.cntdot.+ .fwdarw. C6H4.cntdot.+ + HCN and C4H6.cntdot.+ .fwdarw. C3H3+ + .cntdot.CH315.0111Citations (PDF)
328Statistical phase space theory of polyatomic systems: application to the reactions NH+3 + NH3 → NH+4 + NH2 and NH+·3 + H2O → NH+4 + OH·
Chemical Physics Letters, 1977, 52, 179-183
2.721Citations (PDF)
329A quantitative comparison of gas- and solution-phase basicities of substituted pyridines15.043Citations (PDF)
330Heats of formation of C3H5+ ions. Allyl, vinyl, and cyclopropyl cations in gas-phase proton-transfer reactions15.055Citations (PDF)
331A thermodynamic analysis of solvation effects on the basicities of alkylamines. An electrostatic analysis of substituent effects15.0246Citations (PDF)
332Quantitative proton affinities, ionization potentials, and hydrogen affinities of alkylamines15.0285Citations (PDF)
333Some fast fluoride ion transfer reactions of carbon monoxide ion (CO.cntdot.+) with perfluoroalkanes and sulfur hexafluoride. Limits on the heat of formation of fluorooxomethyl3.118Citations (PDF)
334Phase space theory for atom—atom collisions: Application to the reaction Na+ + K → Na + K+
Chemical Physics Letters, 1976, 39, 277-280
2.70Citations (PDF)
335Ion velocity distributions in an ICR spectrometer and their effect on measured rate constants
Journal of Chemical Physics, 1976, 65, 990-997
2.88Citations (PDF)
336Reactions of ions in excited electronic states: (CO+⋅) *+CO→C2O+⋅+CO
Journal of Chemical Physics, 1975, 63, 3656-3660
2.813Citations (PDF)
337Proton affinities, ionization potentials, and hydrogen affinities of nitrogen and oxygen bases. Hybridization effects15.060Citations (PDF)
338Photoelectron spectrum and gas-phase basicity of manxine. Evidence for a planar bridgehead nitrogen15.054Citations (PDF)
339Ion‐polar molecule collisions: Nonreactive collisions of Cl−with dichloroethylene and difluorobenzene
Journal of Chemical Physics, 1974, 60, 4897-4899
2.825Citations (PDF)
340Near thermal energy charge transfer reactions of rare gas ions with diatomic and simple polyatomic molecules: The importance of Franck‐Condon factors and energy resonance on the magnitude of the rate constants
Journal of Chemical Physics, 1974, 61, 4600-4617
2.8206Citations (PDF)
341Energy transfer in excited ionic species. Collisional stabilization of the dimer ions (C4H4F4.+)* and (C12H12.+)* in 1,1-difluoroethylene and benzene15.026Citations (PDF)
342Quantitative evaluation of intramolecular strong hydrogen bonding in the gas phase15.0134Citations (PDF)
343Ion-polar molecule collisions. Proton transfer reactions of butyl ions with ammonia, methylamine, diethylamine, and trimethylamine15.026Citations (PDF)
344Ion-polar molecule collisions. Proton transfer reactions of H3+ and CH5+ to the geometric isomers of difluoroethylene, dichloroethylene, and difluorobenzene15.068Citations (PDF)
345Ion-polar molecule collisions. Effect of molecular size on ion-polar molecule rate constants15.053Citations (PDF)
346Theory of ion‐polar molecule collisions. Kinetic energy dependence of ion‐polar molecule reactions: CH3OH+ + CH3OH→ CH3OH2+ + CH3O
Journal of Chemical Physics, 1973, 58, 5175-5176
2.833Citations (PDF)
347Mechanism of thermal energy gas phase charge exchange reaction: He+· + N2
Journal of Chemical Physics, 1973, 59, 4915-4921
2.820Citations (PDF)
348Mechanisms of ion-molecule reactions of propene and cyclopropane15.019Citations (PDF)
349Quantitative relative gas-phase basicities of alkylamines. Correlation with solution basicity15.0136Citations (PDF)
350Thermal energy charge transfer reactions of rare-gas ions to methane, ethane, propane, and silane. The importance of franck-condon factors
Chemical Physics Letters, 1972, 16, 486-491
2.777Citations (PDF)
351Equilibrium constants for gas-phase ionic reactions. Accurate determination of relative proton affinities15.058Citations (PDF)
352Analysis of the mechanism of reaction of H3+ [tritium ion] with ethylene oxide and acetaldehyde15.093Citations (PDF)
353Analysis of ion-molecule reactions in allene and propyne by ion cyclotron resonance3.136Citations (PDF)
354Relative proton affinity of argon and deuterium15.08Citations (PDF)
355Analysis of the ion-molecule reactions in hydrogen-methane mixtures using ion cyclotron resonance15.018Citations (PDF)
356Analysis of the nuclear magnetic resonance spectrum of hexafluoro-1,3-butadiene15.029Citations (PDF)
357Microwave spectra, molecular structure, and dipole moment of phosphirane15.056Citations (PDF)
358Ion cyclotron resonance of olefins. I. Study of the ion-molecule reactions in electron-impacted ethylene3.183Citations (PDF)
359Aggregation of TDP-43307–319: A Dual Pathway to Forming Cylindrins and Fibrils and a Contribution to the Etiology of Amyotrophic Lateral Sclerosis2.72Citations (PDF)
360Mechanism of Aggregation of the NACore of α-Synuclein: Stable Oligomer Formation Competes with Fibril Formation with Implications for the Etiology of Parkinson’s Disease15.00Citations (PDF)