| 1 | Selective Ni-Catalyzed Cross-Electrophile Coupling of Heteroaryl Chlorides and Aryl Bromides at 1:1 Substrate Ratio | 15.0 | 17 | Citations (PDF) |
| 2 | Synergistic enhancement of electrochemical alcohol oxidation by combining NiV-layered double hydroxide with an aminoxyl radical | 13.7 | 30 | Citations (PDF) |
| 3 | Scaling Organic Electrosynthesis: The Crucial Interplay between Mechanism and Mass Transport | 9.2 | 24 | Citations (PDF) |
| 4 | Heterogeneous Fe‐N‐C Cocatalyst for Hydroquinone Oxidation Enables Aerobic Oxidation of Primary Alcohols to Aldehydes | 14.4 | 3 | Citations (PDF) |
| 5 | Heterogeneous Fe‐N‐C Cocatalyst for Hydroquinone Oxidation Enables Aerobic Oxidation of Primary Alcohols to Aldehydes | 1.4 | 0 | Citations (PDF) |
| 6 | Can the Hock Process Be Used to Produce Phenol from Polystyrene? | 15.0 | 24 | Citations (PDF) |
| 7 | Mediated Electrochemical Oxidation of Nucleosides to Their 5′‐Carboxylic Acid Derivatives | 3.4 | 1 | Citations (PDF) |
| 8 | Synthesis of C4‐Acyl Glycosides by Cross‐Ketonization: The Importance of Precise Temperature Control in Photochemistry | 3.4 | 0 | Citations (PDF) |
| 9 | Lignin-Derived Methoxyterephthalates for Performance-Advantaged Polymers and Plasticizers | 6.9 | 4 | Citations (PDF) |
| 10 | Electrochemical Ammoxidation of Unprotected Glycosides 2025, 1, 1515-1522 | | 2 | Citations (PDF) |
| 11 | Reductively Induced Aryl Transmetalation: An Alternative Catalytically Relevant Ni-Catalyzed Biaryl Coupling Mechanism | 15.0 | 16 | Citations (PDF) |
| 12 | General Approach To Access Aldehyde Oxidase Metabolites of Drug Molecules via N-Oxidation/Reissert–Henze-Type Reaction | 4.8 | 2 | Citations (PDF) |
| 13 | Divergent Kinetic/Thermodynamic Selectivity in Palladium(II)-Mediated C–H Activation to Form 5- and 6-Membered Palladacycles | 15.0 | 6 | Citations (PDF) |
| 14 | Cyclic voltammetry and chronoamperometry: mechanistic tools for organic electrosynthesis | 37.7 | 154 | Citations (PDF) |
| 15 | Mechanistic insights into radical formation and functionalization in copper/<i>N</i>-fluorobenzenesulfonimide radical-relay reactions | 7.1 | 5 | Citations (PDF) |
| 16 | Synthetic dioxygenase reactivity by pairing electrochemical oxygen reduction and water oxidation | 36.3 | 88 | Citations (PDF) |
| 17 | Catalytic carbon–carbon bond cleavage in lignin via manganese–zirconium-mediated autoxidation | 13.7 | 56 | Citations (PDF) |
| 18 | Divergent Bimetallic Mechanisms in Copper(II)-Mediated C–C, N–N, and O–O Oxidative Coupling Reactions | 15.0 | 7 | Citations (PDF) |
| 19 | Mechanistic insights into radical formation and functionalization in copper/N-fluorobenzenesulfonimide radical-relay reactions | 7.1 | 17 | Citations (PDF) |
| 20 | Scale-Up of a Two-Stage Cu-Catalyzed Alkaline-Oxidative Pretreatment of Hybrid Poplar | 3.8 | 6 | Citations (PDF) |
| 21 | Recovery of p-Hydroxybenzoic Acid from Cu-Catalyzed Alkaline Hydrogen Peroxide Pretreatment of Hybrid Poplar | 6.9 | 2 | Citations (PDF) |
| 22 | Radical chlorination of non-resonant heterobenzylic C‒H bonds and high-throughput diversification of heterocyclesCheM, 2024, 10, 1593-1605 | 16.6 | 17 | Citations (PDF) |
| 23 | Heterogeneous Fe-N-C Catalyst for Aerobic Dehydrogenation of Hydrazones to Diazo Compounds Used for Carbene Transfer | 15.0 | 14 | Citations (PDF) |
| 24 | Copper–Nitroxyl-Catalyzed α-Oxygenation of Cyclic Secondary Amines Including Application to Late-Stage Functionalization | 15.0 | 15 | Citations (PDF) |
| 25 | Nickel-Catalyzed Hydrocarboxylation of Terminal Unactivated Alkenes: Formation of Branched Carboxylic Acids and Competing Catalyst Deactivation from CO2 Reduction to CO | 2.9 | 3 | Citations (PDF) |
| 26 | Oxidative Catalytic Fractionation of Lignocellulosic Biomass Using a Co-N-P-C Catalyst and One-Step Isolation of Aromatic Monomers via Centrifugal Partition Chromatography | 6.9 | 12 | Citations (PDF) |
| 27 | Manganese-Mediated Electrochemical Oxidation of Thioethers to Sulfoxides Using Water as the Source of Oxygen Atoms | 15.0 | 42 | Citations (PDF) |
| 28 | (Invited) Chemical Kinetic Method for Active-Site Quantification in Fe-N-C Catalysts and Correlation with Molecular Probe and Spectroscopic Site-Counting Methods | 0.0 | 0 | Citations (PDF) |
| 29 | Zinc and manganese redox potentials in organic solvents and their influence on nickel-catalysed cross-electrophile coupling | 18.7 | 71 | Citations (PDF) |
| 30 | Accessing monomers from lignin through carbon–carbon bond cleavage | 46.5 | 96 | Citations (PDF) |
| 31 | Impact of C–H Cross-Coupling Reactions in the One-Step Retrosynthesis of Drug Molecules | 3.5 | 6 | Citations (PDF) |
| 32 | Non-Innocent Role of Sacrificial Anodes in Electrochemical Nickel-Catalyzed C(sp
2
)–C(sp
3
) Cross-Electrophile Coupling | 15.0 | 23 | Citations (PDF) |
| 33 | Identifying Green Solvent Mixtures for Bioproduct Separation Using Bayesian Experimental Design | 6.9 | 8 | Citations (PDF) |
| 34 | Heterogeneous M-N-C Catalysts for Aerobic Oxidation Reactions: Lessons from Oxygen Reduction Electrocatalysts | 52.5 | 104 | Citations (PDF) |
| 35 | Ni- and Ni/Pd-Catalyzed Reductive Coupling of Lignin-Derived Aromatics to Access Biobased Plasticizers | 9.2 | 29 | Citations (PDF) |
| 36 | Benzylic C–H Esterification with Limiting C–H Substrate Enabled by Photochemical Redox Buffering of the Cu Catalyst | 15.0 | 65 | Citations (PDF) |
| 37 | Accessing three-dimensional molecular diversity through benzylic C–H cross-coupling | 18.1 | 18 | Citations (PDF) |
| 38 | Polar Heterobenzylic C(sp3)–H Chlorination Pathway Enabling Efficient Diversification of Aromatic Nitrogen Heterocycles | 15.0 | 23 | Citations (PDF) |
| 39 | Quinone-mediated hydrogen anode for non-aqueous reductive electrosynthesis | 37.9 | 72 | Citations (PDF) |
| 40 | Chemical Kinetic Method for Active-Site Quantification in Fe-N-C Catalysts and Correlation with Molecular Probe and Spectroscopic Site-Counting Methods | 15.0 | 41 | Citations (PDF) |
| 41 | Autoxidation Catalysis for Carbon–Carbon Bond Cleavage in Lignin | 9.2 | 29 | Citations (PDF) |
| 42 | Copper-Catalyzed Benzylic C–H Cross-Coupling Enabled by Redox Buffers: Expanding Synthetic Access to Three-Dimensional Chemical Space | 17.0 | 27 | Citations (PDF) |
| 43 | Chemical and Electrochemical O2 Reduction on Earth-Abundant M-N-C Catalysts and Implications for Mediated Electrolysis | 15.0 | 55 | Citations (PDF) |
| 44 | Thermodynamic–Kinetic Comparison of Palladium(II)-Mediated Alcohol and Hydroquinone Oxidation | 2.9 | 5 | Citations (PDF) |
| 45 | Cu-Catalyzed Site-Selective Benzylic Chlorination Enabling Net C–H Coupling with Oxidatively Sensitive Nucleophiles | 4.8 | 36 | Citations (PDF) |
| 46 | Radical C(sp3)–H functionalization and cross-coupling reactions | 46.5 | 277 | Citations (PDF) |
| 47 | Thermal Hydroquinone Oxidation on Co/N-doped Carbon Proceeds by a Band-Mediated Electrochemical Mechanism | 15.0 | 48 | Citations (PDF) |
| 48 | Exploring Electrosynthesis: Bulk Electrolysis and Cyclic Voltammetry Analysis of the Shono Oxidation | 2.8 | 18 | Citations (PDF) |
| 49 | Electrochemical PINOylation of Methylarenes: Improving the Scope and Utility of Benzylic Oxidation through Mediated Electrolysis | 15.0 | 86 | Citations (PDF) |
| 50 | Zinc-free, Scalable Reductive Cross-Electrophile Coupling Driven by Electrochemistry in an Undivided Cell | 12.4 | 86 | Citations (PDF) |
| 51 | Molecular Catalyst Synthesis Strategies to Prepare Atomically Dispersed Fe-N-C Heterogeneous Catalysts | 15.0 | 51 | Citations (PDF) |
| 52 | Pairing of Aqueous and Nonaqueous Electrosynthetic Reactions Enabled by a Redox Reservoir Electrode | 15.0 | 32 | Citations (PDF) |
| 53 | Modular Electrochemical Synthesis Using a Redox Reservoir Paired with Independent Half-Reactions | 25.7 | 63 | Citations (PDF) |
| 54 | Copper-Catalyzed Oxidation of Hydrazones to Diazo Compounds Using Oxygen as the Terminal Oxidant | 12.4 | 43 | Citations (PDF) |
| 55 | Scalable Flow Electrochemical Alcohol Oxidation: Maintaining High Stereochemical Fidelity in the Synthesis of Levetiracetam | 3.4 | 54 | Citations (PDF) |
| 56 | Multichannel gas-uptake/evolution reactor for monitoring liquid-phase chemical reactions | 1.5 | 4 | Citations (PDF) |
| 57 | Catalyst-Controlled Regioselectivity in Pd-Catalyzed Aerobic Oxidative Arylation of Indoles | 2.9 | 14 | Citations (PDF) |
| 58 | Benzoquinone Cocatalyst Contributions to DAF/Pd(OAc)2-Catalyzed Aerobic Allylic Acetoxylation in the Absence and Presence of a Co(salophen) Cocatalyst | 12.4 | 25 | Citations (PDF) |
| 59 | Iron(III) Nitrate/TEMPO-Catalyzed Aerobic Alcohol Oxidation: Distinguishing between Serial versus Integrated Redox Cooperativity | 15.0 | 80 | Citations (PDF) |
| 60 | Copper-Catalyzed Cross-Coupling of Benzylic C–H Bonds and Azoles with Controlled N-Site Selectivity | 15.0 | 83 | Citations (PDF) |
| 61 | Oxidative Catalytic Fractionation of Lignocellulosic Biomass under Non-alkaline Conditions | 15.0 | 137 | Citations (PDF) |
| 62 | Sustainable Pd(OAc)2/Hydroquinone Cocatalyst System for Cis‐Selective Dibenzoyloxylation of 1,3‐Cyclohexadiene | 14.4 | 9 | Citations (PDF) |
| 63 | Ethylene oligomerization into linear olefins over cobalt oxide on carbon catalyst | 4.0 | 19 | Citations (PDF) |
| 64 | Effective Biomass Fractionation through Oxygen-Enhanced Alkaline–Oxidative Pretreatment | 6.9 | 35 | Citations (PDF) |
| 65 | Benzylic C–H isocyanation/amine coupling sequence enabling high-throughput synthesis of pharmaceutically relevant ureas | 7.1 | 45 | Citations (PDF) |
| 66 | Deriving the Turnover Frequency of Aminoxyl-Catalyzed Alcohol Oxidation by Chronoamperometry: An Introduction to Organic Electrocatalysis | 2.8 | 40 | Citations (PDF) |
| 67 | “How Should I Think about Voltage? What Is Overpotential?”: Establishing an Organic Chemistry Intuition for Electrochemistry | 3.5 | 87 | Citations (PDF) |
| 68 | From Lignin to Valuable Aromatic Chemicals: Lignin Depolymerization and Monomer Separation via Centrifugal Partition Chromatography | 9.2 | 117 | Citations (PDF) |
| 69 | Mechanistic insights into copper-catalyzed aerobic oxidative coupling of N–N bonds | 7.1 | 38 | Citations (PDF) |
| 70 | Efficient electrochemical synthesis of robust, densely functionalized water soluble quinones | 3.4 | 32 | Citations (PDF) |
| 71 | Nucleophilic Thiols Reductively Cleave Ether Linkages in Lignin Model Polymers and Lignin | 6.2 | 38 | Citations (PDF) |
| 72 | Can Donor Ligands Make Pd(OAc)2a Stronger Oxidant? Access to Elusive Palladium(II) Reduction Potentials and Effects of Ancillary Ligands via Palladium(II)/Hydroquinone Redox Equilibria | 15.0 | 34 | Citations (PDF) |
| 73 | Copper-Catalyzed C–H Fluorination/Functionalization Sequence Enabling Benzylic C–H Cross Coupling with Diverse Nucleophiles | 4.8 | 95 | Citations (PDF) |
| 74 | Copper-Catalyzed Functionalization of Benzylic C–H Bonds with N-Fluorobenzenesulfonimide: Switch from C–N to C–F Bond Formation Promoted by a Redox Buffer and Brønsted Base | 4.8 | 57 | Citations (PDF) |
| 75 | Molecular Cobalt Catalysts for O2Reduction to H2O2: Benchmarking Catalyst Performance via Rate–Overpotential Correlations | 12.4 | 89 | Citations (PDF) |
| 76 | Pd-Catalyzed Aerobic Oxidative Coupling of Thiophenes: Synergistic Benefits of Phenanthroline Dione and a Cu Cocatalyst | 15.0 | 28 | Citations (PDF) |
| 77 | Site-Selective Copper-Catalyzed Azidation of Benzylic C–H Bonds | 15.0 | 161 | Citations (PDF) |
| 78 | Electrochemical Strategy for Hydrazine Synthesis: Development and Overpotential Analysis of Methods for Oxidative N–N Coupling of an Ammonia Surrogate | 15.0 | 91 | Citations (PDF) |
| 79 | Catalytic Behavior of Mono‐N‐Protected Amino‐Acid Ligands in Ligand‐Accelerated C−H Activation by Palladium(II) | 14.4 | 36 | Citations (PDF) |
| 80 | Catalytic Behavior of Mono‐N‐Protected Amino‐Acid Ligands in Ligand‐Accelerated C−H Activation by Palladium(II) | 1.4 | 6 | Citations (PDF) |
| 81 | Mediated Fuel Cells: Soluble Redox Mediators and Their Applications to Electrochemical Reduction of O2 and Oxidation of H2, Alcohols, Biomass, and Complex Fuels | 52.5 | 199 | Citations (PDF) |
| 82 | Mechanistic Study of Diaryl Ether Bond Cleavage during Palladium‐Catalyzed Lignin Hydrogenolysis | 6.2 | 47 | Citations (PDF) |
| 83 | Anthraquinone-Mediated Fuel Cell Anode with an Off-Electrode Heterogeneous Catalyst Accessing High Power Density When Paired with a Mediated Cathode | 17.0 | 27 | Citations (PDF) |
| 84 | Copper-catalysed benzylic C–H coupling with alcohols via radical relay enabled by redox buffering | 40.9 | 180 | Citations (PDF) |
| 85 | Electrochemical Oxidation of Organic Molecules at Lower Overpotential: Accessing Broader Functional Group Compatibility with Electron−Proton Transfer Mediators | 17.0 | 599 | Citations (PDF) |
| 86 | Mechanism of the reaction of an NHC-coordinated palladium(II)-hydride with O2 in acetonitrile | 2.4 | 6 | Citations (PDF) |
| 87 | Comparison of Quinone‐Based Catholytes for Aqueous Redox Flow Batteries and Demonstration of Long‐Term Stability with Tetrasubstituted Quinones | 22.5 | 67 | Citations (PDF) |
| 88 | Merging Photochemistry with Electrochemistry: Functional‐Group Tolerant Electrochemical Amination of C(sp3)−H Bonds | 1.4 | 54 | Citations (PDF) |
| 89 | Copper/TEMPO Redox Redux: Analysis of PCET Oxidation of TEMPOH by Copper(II) and the Reaction of TEMPO with Copper(I) | 4.6 | 48 | Citations (PDF) |
| 90 | Electrochemical Aminoxyl-Mediated Oxidation of Primary Alcohols in Lignin to Carboxylic Acids: Polymer Modification and Depolymerization | 15.0 | 172 | Citations (PDF) |
| 91 | Replacement of Stoichiometric DDQ with a Low Potentialo-Quinone Catalyst Enabling Aerobic Dehydrogenation of Tertiary Indolines in Pharmaceutical Intermediates | 4.8 | 57 | Citations (PDF) |
| 92 | Oxidative Amide Coupling from Functionally Diverse Alcohols and Amines Using Aerobic Copper/Nitroxyl Catalysis | 1.4 | 8 | Citations (PDF) |
| 93 | Oxidative Amide Coupling from Functionally Diverse Alcohols and Amines Using Aerobic Copper/Nitroxyl Catalysis | 14.4 | 36 | Citations (PDF) |
| 94 | Electrochemical C–H oxygenation and alcohol dehydrogenation involving Fe-oxo species using water as the oxygen source | 7.1 | 80 | Citations (PDF) |
| 95 | Brønsted Acid Scaling Relationships Enable Control Over Product Selectivity from O2 Reduction with a Mononuclear Cobalt Porphyrin Catalyst | 9.2 | 82 | Citations (PDF) |
| 96 | Operando Spectroscopic and Kinetic Characterization of Aerobic Allylic C–H Acetoxylation Catalyzed by Pd(OAc)2/4,5-Diazafluoren-9-one | 15.0 | 40 | Citations (PDF) |
| 97 | Integrated Two-Stage Alkaline-Oxidative Pretreatment of Hybrid Poplar. Part 1: Impact of Alkaline Pre-Extraction Conditions on Process Performance and Lignin Properties | 3.8 | 31 | Citations (PDF) |
| 98 | Aerobic Acyloxylation of Allylic C−H Bonds Initiated by a Pd0 Precatalyst with 4,5‐Diazafluoren‐9‐one as an Ancillary Ligand | 6.2 | 22 | Citations (PDF) |
| 99 | Funneling aromatic products of chemically depolymerized lignin into 2-pyrone-4-6-dicarboxylic acid withNovosphingobium aromaticivorans | 9.1 | 124 | Citations (PDF) |
| 100 | Merging Photochemistry with Electrochemistry: Functional‐Group Tolerant Electrochemical Amination of C(sp3)−H Bonds | 14.4 | 250 | Citations (PDF) |
| 101 | Use of Imidoxyl Radical Mediators for Electrochemical Oxidation/Depolymerization of Lignin | 0.0 | 0 | Citations (PDF) |
| 102 | Electrochemical Functional‐Group‐Tolerant Shono‐type Oxidation of Cyclic Carbamates Enabled by Aminoxyl Mediators | 1.4 | 36 | Citations (PDF) |
| 103 | Electrochemical Functional‐Group‐Tolerant Shono‐type Oxidation of Cyclic Carbamates Enabled by Aminoxyl Mediators | 14.4 | 142 | Citations (PDF) |
| 104 | Lignin Conversion to Low-Molecular-Weight Aromatics via an Aerobic Oxidation-Hydrolysis Sequence: Comparison of Different Lignin Sources | 6.9 | 143 | Citations (PDF) |
| 105 | Tetramethylpiperidine N-Oxyl (TEMPO), Phthalimide N-Oxyl (PINO), and Related N-Oxyl Species: Electrochemical Properties and Their Use in Electrocatalytic Reactions | 52.5 | 990 | Citations (PDF) |
| 106 | Are Phosphines Viable Ligands for Pd-Catalyzed Aerobic Oxidation Reactions? Contrasting Insights from a Survey of Six Reactions | 12.4 | 16 | Citations (PDF) |
| 107 | Ligand-Promoted Palladium-Catalyzed Aerobic Oxidation Reactions | 52.5 | 570 | Citations (PDF) |
| 108 | Mechanistic Insights into Aerobic Oxidative Methyl Esterification of Primary Alcohols with Heterogeneous PdBiTe Catalysts | 12.4 | 27 | Citations (PDF) |
| 109 | Structural Effects on the pH-Dependent Redox Properties of Organic Nitroxyls: Pourbaix Diagrams for TEMPO, ABNO, and Three TEMPO Analogs | 3.5 | 101 | Citations (PDF) |
| 110 | N-Hydroxyphthalimide-Mediated Electrochemical Iodination of Methylarenes and Comparison to Electron-Transfer-Initiated C–H Functionalization | 15.0 | 211 | Citations (PDF) |
| 111 | Selective electrochemical generation of benzylic radicals enabled by ferrocene-based electron-transfer mediators | 7.1 | 112 | Citations (PDF) |
| 112 | Quinone-Mediated Electrochemical O2 Reduction Accessing High Power Density with an Off-Electrode Co-N/C CatalystJoule, 2018, 2, 2722-2731 | 25.7 | 54 | Citations (PDF) |
| 113 | Kinetic and Mechanistic Characterization of Low-Overpotential, H2O2-Selective Reduction of O2Catalyzed by N2O2-Ligated Cobalt Complexes | 15.0 | 72 | Citations (PDF) |
| 114 | Cu-Catalyzed Aerobic Oxidative N–N Coupling of Carbazoles and Diarylamines Including Selective Cross-Coupling | 15.0 | 81 | Citations (PDF) |
| 115 | Electrochemical Aminoxyl-Mediated α-Cyanation of Secondary Piperidines for Pharmaceutical Building Block Diversification | 15.0 | 152 | Citations (PDF) |
| 116 | Platinum-Based Heterogeneous Catalysts for Nitrile Synthesis via Aerobic Oxidative Coupling of Alcohols and Ammonia | 4.2 | 57 | Citations (PDF) |
| 117 | Electrochemical Oxidation of Alcohols and Aldehydes to Carboxylic Acids Catalyzed by 4-Acetamido-TEMPO: An Alternative to “Anelli” and “Pinnick” Oxidations | 12.4 | 172 | Citations (PDF) |
| 118 | Electrochemical Functionalization of Methylarenes Initiated By Hydrogen Atom Transfer and Comparison to Electron-Transfer-Initiated Functionalization | 0.0 | 0 | Citations (PDF) |
| 119 | Electrochemical Oxidation/Modification of Lignin Mediated By Aminoxyl Radicals | 0.0 | 0 | Citations (PDF) |
| 120 | Discovery of Multicomponent Heterogeneous Catalysts via Admixture Screening: PdBiTe Catalysts for Aerobic Oxidative Esterification of Primary Alcohols | 15.0 | 87 | Citations (PDF) |
| 121 | Detection of Palladium(I) in Aerobic Oxidation Catalysis | 1.4 | 13 | Citations (PDF) |
| 122 | Second-Order Biomimicry: In Situ Oxidative Self-Processing Converts Copper(I)/Diamine Precursor into a Highly Active Aerobic Oxidation Catalyst | 9.2 | 57 | Citations (PDF) |
| 123 | Detection of Palladium(I) in Aerobic Oxidation Catalysis | 14.4 | 56 | Citations (PDF) |
| 124 | Characterization of NiFe oxyhydroxide electrocatalysts by integrated electronic structure calculations and spectroelectrochemistry | 7.5 | 238 | Citations (PDF) |
| 125 | Pd-Catalyzed Aerobic Oxidative Biaryl Coupling: Non-Redox Cocatalysis by Cu(OTf)2 and Discovery of Fe(OTf)3 as a Highly Effective Cocatalyst | 15.0 | 54 | Citations (PDF) |
| 126 | Noncovalent Immobilization of Molecular Electrocatalysts for Chemical Synthesis: Efficient Electrochemical Alcohol Oxidation with a Pyrene–TEMPO Conjugate | 1.4 | 33 | Citations (PDF) |
| 127 | Feedstocks to Pharmacophores: Cu-Catalyzed Oxidative Arylation of Inexpensive Alkylarenes Enabling Direct Access to Diarylalkanes | 15.0 | 145 | Citations (PDF) |
| 128 | Molecular Cobalt Catalysts for O2 Reduction: Low-Overpotential Production of H2O2 and Comparison with Iron-Based Catalysts | 15.0 | 140 | Citations (PDF) |
| 129 | Electronic Structural Analysis of Copper(II)–TEMPO/ABNO Complexes Provides Evidence for Copper(I)–Oxoammonium Character | 15.0 | 65 | Citations (PDF) |
| 130 | Mechanistic Basis for Efficient, Site-Selective, Aerobic Catalytic Turnover in Pd-Catalyzed C–H Imidoylation of Heterocycle-Containing Molecules | 15.0 | 29 | Citations (PDF) |
| 131 | Noncovalent Immobilization of Molecular Electrocatalysts for Chemical Synthesis: Efficient Electrochemical Alcohol Oxidation with a Pyrene–TEMPO Conjugate | 14.4 | 151 | Citations (PDF) |
| 132 | Cluster Preface: Catalytic Aerobic Oxidations | 1.4 | 0 | Citations (PDF) |
| 133 | Cooperative Electrocatalytic O2 Reduction Involving Co(salophen) with p-Hydroquinone as an Electron–Proton Transfer Mediator | 15.0 | 78 | Citations (PDF) |
| 134 | Aerobic Oxidation of Diverse Primary Alcohols to Carboxylic Acids with a Heterogeneous Pd–Bi–Te/C (PBT/C) Catalyst | 3.4 | 82 | Citations (PDF) |
| 135 | Co/NHPI-mediated aerobic oxygenation of benzylic C–H bonds in pharmaceutically relevant molecules | 7.1 | 237 | Citations (PDF) |
| 136 | Synthesis of Indole-2-carboxylate Derivatives via Palladium-Catalyzed Aerobic Amination of Aryl C–H Bonds | 4.8 | 44 | Citations (PDF) |
| 137 | Diazafluorenone-Promoted Oxidation Catalysis: Insights into the Role of Bidentate Ligands in Pd-Catalyzed Aerobic Aza-Wacker Reactions | 12.4 | 59 | Citations (PDF) |
| 138 | Practical Synthesis of Amides via Copper/ABNO-Catalyzed Aerobic Oxidative Coupling of Alcohols and Amines | 15.0 | 139 | Citations (PDF) |
| 139 | KetoABNO/NOx Cocatalytic Aerobic Oxidation of Aldehydes to Carboxylic Acids and Access to α-Chiral Carboxylic Acids via Sequential Asymmetric Hydroformylation/Oxidation | 4.8 | 35 | Citations (PDF) |
| 140 | Quinone 1 e– and 2 e–/2 H+ Reduction Potentials: Identification and Analysis of Deviations from Systematic Scaling Relationships | 15.0 | 302 | Citations (PDF) |
| 141 | Cooperative electrocatalytic alcohol oxidation with electron-proton-transfer mediators | 37.9 | 523 | Citations (PDF) |
| 142 | Structurally Diverse Diazafluorene-Ligated Palladium(II) Complexes and Their Implications for Aerobic Oxidation Reactions | 15.0 | 49 | Citations (PDF) |
| 143 | Co(salophen)-Catalyzed Aerobic Oxidation of p-Hydroquinone: Mechanism and Implications for Aerobic Oxidation Catalysis | 15.0 | 139 | Citations (PDF) |
| 144 | Discovering Inexpensive, Effective Catalysts for Solar Energy Conversion: An Authentic Research Laboratory Experience | 2.8 | 19 | Citations (PDF) |
| 145 | Mechanism of Copper/Azodicarboxylate-Catalyzed Aerobic Alcohol Oxidation: Evidence for Uncooperative Catalysis | 15.0 | 60 | Citations (PDF) |
| 146 | Quinone‐Catalyzed Selective Oxidation of Organic Molecules | 14.4 | 382 | Citations (PDF) |
| 147 | Chinon‐katalysierte, selektive Oxidation organischer Moleküle | 1.4 | 90 | Citations (PDF) |
| 148 | Palladium-catalyzed aerobic acetoxylation of benzene using NOx-based redox mediators | 2.1 | 33 | Citations (PDF) |
| 149 | Copper-Catalyzed Aerobic Oxidations of Organic Molecules: Pathways for Two-Electron Oxidation with a Four-Electron Oxidant and a One-Electron Redox-Active Catalyst | 17.0 | 537 | Citations (PDF) |
| 150 | Palladium-Catalyzed Aerobic Oxidative Dehydrogenation of Cyclohexenes to Substituted Arene Derivatives | 15.0 | 99 | Citations (PDF) |
| 151 | PTFE-Membrane Flow Reactor for Aerobic Oxidation Reactions and Its Application to Alcohol Oxidation | 3.4 | 58 | Citations (PDF) |
| 152 | Regioselective aerobic oxidative Heck reactions with electronically unbiased alkenes: efficient access to α-alkyl vinylarenes | 3.4 | 39 | Citations (PDF) |
| 153 | Process Development of CuI/ABNO/NMI-Catalyzed Aerobic Alcohol Oxidation | 3.4 | 88 | Citations (PDF) |
| 154 | High-Potential Electrocatalytic O2Reduction with Nitroxyl/NOxMediators: Implications for Fuel Cells and Aerobic Oxidation Catalysis | 9.2 | 114 | Citations (PDF) |
| 155 | The “Best Catalyst” for Water Oxidation Depends on the Oxidation Method Employed: A Case Study of Manganese Oxides | 15.0 | 158 | Citations (PDF) |
| 156 | Efficient and Selective Cu/Nitroxyl-Catalyzed Methods for Aerobic Oxidative Lactonization of Diols | 15.0 | 155 | Citations (PDF) |
| 157 | Electrocatalytic Alcohol Oxidation with TEMPO and Bicyclic Nitroxyl Derivatives: Driving Force Trumps Steric Effects | 15.0 | 297 | Citations (PDF) |
| 158 | Catalytic Aerobic Dehydrogenation of Nitrogen Heterocycles Using Heterogeneous Cobalt Oxide Supported on Nitrogen-Doped Carbon | 4.8 | 149 | Citations (PDF) |
| 159 | Operando Analysis of NiFe and Fe Oxyhydroxide Electrocatalysts for Water Oxidation: Detection of Fe4+ by Mössbauer Spectroscopy | 15.0 | 865 | Citations (PDF) |
| 160 | Experimental Limiting Oxygen Concentrations for Nine Organic Solvents at Temperatures and Pressures Relevant to Aerobic Oxidations in the Pharmaceutical Industry | 3.4 | 206 | Citations (PDF) |
| 161 | Continuous Flow Aerobic Alcohol Oxidation Reactions Using a Heterogeneous Ru(OH)x/Al2O3 Catalyst | 3.4 | 55 | Citations (PDF) |
| 162 | Praktische aerobe Oxidationen von Alkoholen und Aminen mit dem homogenen Kupfer/TEMPO‐ und verwandten Katalysatorsystemen | 1.4 | 97 | Citations (PDF) |
| 163 | Inverse spinel NiFeAlO4 as a highly active oxygen evolution electrocatalyst: promotion of activity by a redox-inert metal ion | 30.8 | 181 | Citations (PDF) |
| 164 | Bioinspired Aerobic Oxidation of Secondary Amines and Nitrogen Heterocycles with a Bifunctional Quinone Catalyst | 15.0 | 235 | Citations (PDF) |
| 165 | Formic-acid-induced depolymerization of oxidized lignin to aromatics | 37.9 | 1,136 | Citations (PDF) |
| 166 | Speciation Behavior of Copper(II) Acetate in Simple Organic Solvents – Revealing the Effect of Trace Water | 1.8 | 26 | Citations (PDF) |
| 167 | O 2 -promoted allylic acetoxylation of alkenes: Assessment of “push” versus “pull” mechanisms and comparison between O 2 and benzoquinone | 2.4 | 27 | Citations (PDF) |
| 168 | Palladium catalyzed aryl C–H amination with O2via in situ formation of peroxide-based oxidant(s) from dioxane | 4.0 | 58 | Citations (PDF) |
| 169 | Ammonolysis of anilides promoted by ethylene glycol and phosphoric acid | 4.4 | 10 | Citations (PDF) |
| 170 | Modular o-Quinone Catalyst System for Dehydrogenation of Tetrahydroquinolines under Ambient Conditions | 15.0 | 187 | Citations (PDF) |
| 171 | A survey of diverse earth abundant oxygen evolution electrocatalysts showing enhanced activity from Ni–Fe oxides containing a third metal | 30.8 | 241 | Citations (PDF) |
| 172 | Practical Aerobic Oxidations of Alcohols and Amines with Homogeneous Copper/TEMPO and Related Catalyst Systems | 14.4 | 573 | Citations (PDF) |
| 173 | Mechanism of Alcohol Oxidation Mediated by Copper(II) and Nitroxyl Radicals | 15.0 | 210 | Citations (PDF) |
| 174 | Pd-Catalyzed Aerobic Oxidative Coupling of Arenes: Evidence for Transmetalation between Two Pd(II)-Aryl Intermediates | 15.0 | 115 | Citations (PDF) |
| 175 | Integration of Anodic and Cathodic Catalysts of Earth-Abundant Materials for Efficient, Scalable CO2 Reduction | 2.5 | 20 | Citations (PDF) |
| 176 | Pd-Catalyzed Semmler–Wolff Reactions for the Conversion of Substituted Cyclohexenone Oximes to Primary Anilines | 15.0 | 146 | Citations (PDF) |
| 177 | Efficient Aerobic Oxidation of Secondary Alcohols at Ambient Temperature with an ABNO/NOx Catalyst System | 12.4 | 146 | Citations (PDF) |
| 178 | Copper/TEMPO-Catalyzed Aerobic Alcohol Oxidation: Mechanistic Assessment of Different Catalyst Systems | 12.4 | 237 | Citations (PDF) |
| 179 | Copper(I)/ABNO-Catalyzed Aerobic Alcohol Oxidation: Alleviating Steric and Electronic Constraints of Cu/TEMPO Catalyst Systems | 15.0 | 372 | Citations (PDF) |
| 180 | Synthesis of Vicinal Aminoalcohols by Stereoselective Aza‐Wacker Cyclizations: Access to (−)‐Acosamine by Redox Relay | 14.4 | 73 | Citations (PDF) |
| 181 | Aerobic Oxidation of Diverse Primary Alcohols to Methyl Esters with a Readily Accessible Heterogeneous Pd/Bi/Te Catalyst | 4.8 | 73 | Citations (PDF) |
| 182 | Continuous-Flow Aerobic Oxidation of Primary Alcohols with a Copper(I)/TEMPO Catalyst | 3.4 | 112 | Citations (PDF) |
| 183 | Aerobic Alcohol Oxidation Using a Copper(I)/TEMPO Catalyst System: A Green, Catalytic Oxidation Reaction for the Undergraduate Organic Chemistry Laboratory | 2.8 | 87 | Citations (PDF) |
| 184 | Mechanistic Studies of Wacker-Type Amidocyclization of Alkenes Catalyzed by (IMes)Pd(TFA)2(H2O): Kinetic and Stereochemical Implications of Proton Transfer | 3.5 | 23 | Citations (PDF) |
| 185 | Aerobic Oxidative Heck/Dehydrogenation Reactions of Cyclohexenones: Efficient Access to meta‐Substituted Phenols | 14.4 | 148 | Citations (PDF) |
| 186 | Mechanism of Copper(I)/TEMPO-Catalyzed Aerobic Alcohol Oxidation | 15.0 | 556 | Citations (PDF) |
| 187 | Chemoselective Metal-Free Aerobic Alcohol Oxidation in Lignin | 15.0 | 639 | Citations (PDF) |
| 188 | Modular Synthesis of Alkyne-Substituted Ruthenium Polypyridyl Complexes Suitable for “Click” Coupling | 4.6 | 22 | Citations (PDF) |
| 189 | Divergence between Organometallic and Single-Electron-Transfer Mechanisms in Copper(II)-Mediated Aerobic C–H Oxidation | 15.0 | 429 | Citations (PDF) |
| 190 | Cu/Nitroxyl-Catalyzed Aerobic Oxidation of Primary Amines into Nitriles at Room Temperature | 12.4 | 190 | Citations (PDF) |
| 191 | Aerobic Dehydrogenation of Cyclohexanone to Cyclohexenone Catalyzed by Pd(DMSO)2(TFA)2: Evidence for Ligand-Controlled Chemoselectivity | 15.0 | 182 | Citations (PDF) |
| 192 | Aerobic Dehydrogenation of Cyclohexanone to Phenol Catalyzed by Pd(TFA)2/2-Dimethylaminopyridine: Evidence for the Role of Pd Nanoparticles | 15.0 | 215 | Citations (PDF) |
| 193 | Aerobic Oxidative Heck/Dehydrogenation Reactions of Cyclohexenones: Efficient Access to meta‐Substituted Phenols | 1.4 | 38 | Citations (PDF) |
| 194 | Synthesis of Vicinal Aminoalcohols by Stereoselective Aza‐Wacker Cyclizations: Access to (−)‐Acosamine by Redox Relay | 1.4 | 20 | Citations (PDF) |
| 195 | Well-Defined NiFeAlO4 Inverse Spinel As Efficient Alkaline Water Oxidation Catalyst | 0.0 | 0 | Citations (PDF) |
| 196 | Kinetic and Spectroscopic Studies of Aerobic Copper(II)-Catalyzed Methoxylation of Arylboronic Esters and Insights into Aryl Transmetalation to Copper(II) | 2.9 | 144 | Citations (PDF) |
| 197 | Characterization of DMSO Coordination to Palladium(II) in Solution and Insights into the Aerobic Oxidation Catalyst, Pd(DMSO)2(TFA)2 | 4.6 | 133 | Citations (PDF) |
| 198 | Reconciling the Stereochemical Course of Nucleopalladation with the Development of Enantioselective Wacker‐Type Cyclizations | 1.4 | 24 | Citations (PDF) |
| 199 | Reconciling the Stereochemical Course of Nucleopalladation with the Development of Enantioselective Wacker‐Type Cyclizations | 14.4 | 92 | Citations (PDF) |
| 200 | Copper(ii)-mediated oxidative cyclization of enamides to oxazoles | 2.6 | 68 | Citations (PDF) |
| 201 | Functionally Diverse Nylon-3 Copolymers from Readily Accessible β-Lactams | 5.0 | 20 | Citations (PDF) |
| 202 | C-Terminal Functionalization of Nylon-3 Polymers: Effects of C-Terminal Groups on Antibacterial and Hemolytic Activities | 5.1 | 37 | Citations (PDF) |
| 203 | Cobalt analogs of Ru-based water oxidation catalysts: overcoming thermodynamic instability and kinetic lability to achieve electrocatalytic O2 evolution | 7.1 | 154 | Citations (PDF) |
| 204 | Catalyst-Controlled Regioselectivity in the Synthesis of Branched Conjugated Dienes via Aerobic Oxidative Heck Reactions | 15.0 | 154 | Citations (PDF) |
| 205 | Intramolecular Pd(II)-Catalyzed Aerobic Oxidative Amination of Alkenes: Synthesis of Six-Membered N-Heterocycles | 4.8 | 99 | Citations (PDF) |
| 206 | Direct aerobic α,β-dehydrogenation of aldehydes and ketones with a Pd(TFA)2/4,5-diazafluorenone catalyst | 7.1 | 172 | Citations (PDF) |
| 207 | Overcoming the “Oxidant Problem”: Strategies to Use O2 as the Oxidant in Organometallic C–H Oxidation Reactions Catalyzed by Pd (and Cu) | 17.0 | 796 | Citations (PDF) |
| 208 | Stereoselective Synthesis of cis-2,5-Disubstituted Pyrrolidines via Wacker-Type Aerobic Oxidative Cyclization of Alkenes with tert-Butanesulfinamide Nucleophiles | 4.8 | 48 | Citations (PDF) |
| 209 | Chemoselective Organocatalytic Aerobic Oxidation of Primary Amines to Secondary Imines | 4.8 | 156 | Citations (PDF) |
| 210 | Development of an O2‐Sensitive Fluorescence‐Quenching Assay for the Combinatorial Discovery of Electrocatalysts for Water Oxidation | 1.4 | 16 | Citations (PDF) |
| 211 | Development of an O2‐Sensitive Fluorescence‐Quenching Assay for the Combinatorial Discovery of Electrocatalysts for Water Oxidation | 14.4 | 66 | Citations (PDF) |
| 212 | O2insertion into a palladium(ii)-hydride bond: Observation of mechanistic crossover between HX-reductive-elimination and hydrogen-atom-abstraction pathways | 7.1 | 78 | Citations (PDF) |
| 213 | Benzoquinone-Promoted Reaction of O2 with a PdII−Hydride | 15.0 | 58 | Citations (PDF) |
| 214 | Highly Stable Redox-Active Molecular Layers by Covalent Grafting to Conductive Diamond | 15.0 | 54 | Citations (PDF) |
| 215 | Reaction of O2with [(−)-Sparteine]Pd(H)Cl: Evidence for an Intramolecular [H–L]+“Reductive Elimination” Pathway | 15.0 | 55 | Citations (PDF) |
| 216 | Mechanistic analysis of trans C–N reductive elimination from a square-planar macrocyclic aryl-copper(iii) complex | 3.0 | 46 | Citations (PDF) |
| 217 | Reversible Alkene Insertion into the Pd–N Bond of Pd(II)-Sulfonamidates and Implications for Catalytic Amidation Reactions | 15.0 | 91 | Citations (PDF) |
| 218 | Modular “Click” Chemistry for Electrochemically and Photoelectrochemically Active Molecular Interfaces to Tin Oxide Surfaces | 8.0 | 41 | Citations (PDF) |
| 219 | Palladium(II)-Catalyzed Alkene Functionalization via Nucleopalladation: Stereochemical Pathways and Enantioselective Catalytic Applications | 52.5 | 1,385 | Citations (PDF) |
| 220 | Enantioselective Pd(II)-Catalyzed Aerobic Oxidative Amidation of Alkenes and Insights into the Role of Electronic Asymmetry in Pyridine-Oxazoline Ligands | 4.8 | 119 | Citations (PDF) |
| 221 | Synthesis of Cyclic Enones via Direct Palladium-Catalyzed Aerobic Dehydrogenation of Ketones | 15.0 | 396 | Citations (PDF) |
| 222 | Regiocontrolled aerobic oxidative coupling of indoles and benzene using Pd catalysts with 4,5-diazafluorene ligands | 3.4 | 138 | Citations (PDF) |
| 223 | Highly Practical Copper(I)/TEMPO Catalyst System for Chemoselective Aerobic Oxidation of Primary Alcohols | 15.0 | 771 | Citations (PDF) |
| 224 | Electrochemical Water Oxidation with Cobalt-Based Electrocatalysts from pH 0–14: The Thermodynamic Basis for Catalyst Structure, Stability, and Activity | 15.0 | 799 | Citations (PDF) |
| 225 | Kupferkatalysierte aerobe oxidative C‐H‐Funktionalisierungen: Trends und Erkenntnisse zum Mechanismus | 1.4 | 297 | Citations (PDF) |
| 226 | Copper‐Catalyzed Aerobic Oxidative CH Functionalizations: Trends and Mechanistic Insights | 14.4 | 1,274 | Citations (PDF) |
| 227 | Observation and Mechanistic Study of Facile CO Bond Formation between a Well‐Defined Aryl–Copper(III) Complex and Oxygen Nucleophiles | 3.4 | 128 | Citations (PDF) |
| 228 | Copper-Catalyzed Aerobic Oxidative Functionalization of an Arene C−H Bond: Evidence for an Aryl-Copper(III) Intermediate | 15.0 | 447 | Citations (PDF) |
| 229 | Aerobic Oxidative Coupling of o‐Xylene: Discovery of 2‐Fluoropyridine as a Ligand to Support Selective Pd‐Catalyzed CH Functionalization | 3.8 | 105 | Citations (PDF) |
| 230 | Modular Synthesis of 1,2‐Diamine Derivatives by Palladium‐Catalyzed Aerobic Oxidative Cyclization of Allylic Sulfamides | 1.4 | 39 | Citations (PDF) |
| 231 | Modular Synthesis of 1,2‐Diamine Derivatives by Palladium‐Catalyzed Aerobic Oxidative Cyclization of Allylic Sulfamides | 14.4 | 105 | Citations (PDF) |
| 232 | Development of safe and scalable continuous-flow methods for palladium-catalyzed aerobic oxidation reactions | 9.1 | 162 | Citations (PDF) |
| 233 | Direct observation of CuI/CuIII redox steps relevant to Ullmann-type coupling reactions | 7.1 | 270 | Citations (PDF) |
| 234 | Allylic C−H Acetoxylation with a 4,5-Diazafluorenone-Ligated Palladium Catalyst: A Ligand-Based Strategy To Achieve Aerobic Catalytic Turnover | 15.0 | 269 | Citations (PDF) |
| 235 | Kinetics of Anionic Ring-Opening Polymerization of Variously Substituted β-Lactams: Homopolymerization and Copolymerization | 5.0 | 23 | Citations (PDF) |
| 236 | Biophysical Mimicry of Lung Surfactant Protein B by Random Nylon-3 Copolymers | 15.0 | 33 | Citations (PDF) |
| 237 | Electronic Structural Comparison of the Reactions of Dioxygen and Alkenes with Nitrogen-Chelated Palladium(0) | 4.6 | 23 | Citations (PDF) |
| 238 | Fluoride‐Modulated Cobalt Catalysts for Electrochemical Oxidation of Water under Non‐Alkaline Conditions | 6.2 | 62 | Citations (PDF) |
| 239 | Enantioselective Hydroformylation of N-Vinyl Carboxamides, Allyl Carbamates, and Allyl Ethers Using Chiral Diazaphospholane Ligands | 15.0 | 141 | Citations (PDF) |
| 240 | Molecular mechanism of acid-triggered aryl–halide reductive elimination in well-defined aryl–CuIII–halide species | 3.0 | 42 | Citations (PDF) |
| 241 | Mechanism of Pd(OAc)2/Pyridine Catalyst Reoxidation by O2: Influence of Labile Monodentate Ligands and Identification of a Biomimetic Mechanism for O2 Activation | 3.4 | 106 | Citations (PDF) |
| 242 | Synthesis of PdII complexes bearing an enantiomerically resolved seven-membered N-heterocyclic carbene ligand and initial studies of their use in asymmetric Wacker-type oxidative cyclization reactions | 2.0 | 90 | Citations (PDF) |
| 243 | Mechanistic Study of Copper-Catalyzed Aerobic Oxidative Coupling of Arylboronic Esters and Methanol: Insights into an Organometallic Oxidase Reaction | 15.0 | 383 | Citations (PDF) |
| 244 | Structure−activity Relationships among Random Nylon-3 Copolymers That Mimic Antibacterial Host-Defense Peptides | 15.0 | 251 | Citations (PDF) |
| 245 | Nylon-3 Copolymers that Generate Cell-Adhesive Surfaces Identified by Library Screening | 15.0 | 53 | Citations (PDF) |
| 246 | Catalytic Transamidation Reactions Compatible with Tertiary Amide Metathesis under Ambient Conditions | 15.0 | 205 | Citations (PDF) |
| 247 | Access to Poly-β-Peptides with Functionalized Side Chains and End Groups via Controlled Ring-Opening Polymerization of β-Lactams | 15.0 | 87 | Citations (PDF) |
| 248 | Regioselective copper-catalyzed chlorination and bromination of arenes with O2 as the oxidant | 3.4 | 187 | Citations (PDF) |
| 249 | Synthesis and isolation of a stable, axially-chiral seven-membered N-heterocyclic carbene | 3.0 | 49 | Citations (PDF) |
| 250 | Carbon−Nitrogen Bond Formation Involving Well-Defined Aryl−Copper(III) Complexes | 15.0 | 361 | Citations (PDF) |
| 251 | Organometallic Chemistry: Development and Study of Catalytic Activity | 2.8 | 0 | Citations (PDF) |
| 252 | Copper-Catalyzed Aerobic Oxidative Amidation of Terminal Alkynes: Efficient Synthesis of Ynamides | 15.0 | 478 | Citations (PDF) |
| 253 | Mechanistic Study of Asymmetric Oxidative Biaryl Coupling: Evidence for Self-Processing of the Copper Catalyst to Achieve Control of Oxidase vs Oxygenase Activity | 15.0 | 136 | Citations (PDF) |
| 254 | Dual Mechanism of Bacterial Lethality for a Cationic Sequence-Random Copolymer that Mimics Host-Defense Antimicrobial Peptides | 4.1 | 168 | Citations (PDF) |
| 255 | Reaction of Molecular Oxygen with a PdII-Hydride To Produce a PdII-Hydroperoxide: Experimental Evidence for an HX-Reductive-Elimination Pathway | 15.0 | 172 | Citations (PDF) |
| 256 | Discovery and Mechanistic Study of AlIII-Catalyzed Transamidation of Tertiary Amides | 15.0 | 133 | Citations (PDF) |
| 257 | Synthesis of β-Lactams Bearing Functionalized Side Chains from a Readily Available Precursor | 4.8 | 31 | Citations (PDF) |
| 258 | Mimicry of Antimicrobial Host-Defense Peptides by Random Copolymers | 15.0 | 438 | Citations (PDF) |
| 259 | Palladium-Catalyzed Oxidative Amination of Alkenes: Improved Catalyst Reoxidation Enables the Use of Alkene as the Limiting Reagent | 4.8 | 82 | Citations (PDF) |
| 260 | Palladium-Catalyzed Aerobic Oxidative Amination of Alkenes: Development of Intra- and Intermolecular Aza-Wacker Reactions | 4.6 | 313 | Citations (PDF) |
| 261 | Insertion of Molecular Oxygen into a Palladium−Hydride Bond: Computational Evidence for Two Nearly Isoenergetic Pathways | 15.0 | 139 | Citations (PDF) |
| 262 | Two-Faced Reactivity of Alkenes: cis- versustrans-Aminopalladation in Aerobic Pd-Catalyzed Intramolecular Aza-Wacker Reactions | 15.0 | 231 | Citations (PDF) |
| 263 | TiIV-Mediated Reactions between Primary Amines and Secondary Carboxamides: Amidine Formation Versus Transamidation | 15.0 | 85 | Citations (PDF) |
| 264 | Catalytic Metathesis of Simple Secondary Amides | 14.4 | 33 | Citations (PDF) |
| 265 | Reaction of Molecular Oxygen with an NHC-Coordinated Pd0 Complex: Computational Insights and Experimental Implications | 14.4 | 78 | Citations (PDF) |
| 266 | Catalytic Metathesis of Simple Secondary Amides | 1.4 | 5 | Citations (PDF) |
| 267 | Reaction of Molecular Oxygen with an NHC-Coordinated Pd0 Complex: Computational Insights and Experimental Implications | 1.4 | 20 | Citations (PDF) |
| 268 | Unexpected Roles of Molecular Sieves in Palladium-Catalyzed Aerobic Alcohol Oxidation | 3.5 | 125 | Citations (PDF) |
| 269 | Synthesis of Pyrrolidines via Palladium(II)-Catalyzed Aerobic Oxidative Carboamination of Butyl Vinyl Ether and Styrenes with Allyl Tosylamides | 4.8 | 108 | Citations (PDF) |
| 270 | Mechanism of AlIII-Catalyzed Transamidation of Unactivated Secondary Carboxamides | 15.0 | 101 | Citations (PDF) |
| 271 | Aerobic Intramolecular Oxidative Amination of Alkenes Catalyzed by NHC-Coordinated Palladium Complexes | 4.8 | 146 | Citations (PDF) |
| 272 | Highly Regioselective Pd-Catalyzed Intermolecular Aminoacetoxylation of Alkenes and Evidence forcis-Aminopalladation and SN2 C−O Bond Formation | 15.0 | 420 | Citations (PDF) |
| 273 | “Oxidatively Induced” Reductive Elimination of Dioxygen from an η2-Peroxopalladium(II) Complex Promoted by Electron-Deficient Alkenes | 15.0 | 25 | Citations (PDF) |
| 274 | Similarities between the reactions of dioxygen and alkenes with palladium(0): Relevance to the use of benzoquinone and molecular oxygen as stoichiometric oxidants in palladium-catalyzed oxidation reactions | 4.2 | 38 | Citations (PDF) |
| 275 | Mechanism of Pd(OAc)2/DMSO-Catalyzed Aerobic Alcohol Oxidation: Mass-Transfer-Limitation Effects and Catalyst Decomposition Pathways | 15.0 | 231 | Citations (PDF) |
| 276 | Reaction of Molecular Oxygen with a PdII– Hydride To Produce a PdII–Hydroperoxide: Acid Catalysis and Implications for Pd-Catalyzed Aerobic Oxidation Reactions | 14.4 | 147 | Citations (PDF) |
| 277 | Reaction of Molecular Oxygen with a PdII– Hydride To Produce a PdII–Hydroperoxide: Acid Catalysis and Implications for Pd-Catalyzed Aerobic Oxidation Reactions | 1.4 | 152 | Citations (PDF) |
| 278 | Development of 7-membered N-heterocyclic carbene ligands for transition metals | 2.1 | 88 | Citations (PDF) |
| 279 | PdII Complexes Possessing a Seven-Membered N-Heterocyclic Carbene Ligand | 14.4 | 112 | Citations (PDF) |
| 280 | PdII Complexes Possessing a Seven-Membered N-Heterocyclic Carbene Ligand | 1.4 | 20 | Citations (PDF) |
| 281 | Brønsted Base-Modulated Regioselectivity in the Aerobic Oxidative Amination of Styrene Catalyzed by Palladium | 15.0 | 123 | Citations (PDF) |
| 282 | Titanium(IV)-Mediated Conversion of Carboxamides to Amidines and Implications for Catalytic Transamidation | 2.9 | 61 | Citations (PDF) |
| 283 | Effects of Side Chain Configuration and Backbone Spacing on the Gene Delivery Properties of Lysine-Derived Cationic Polymers | 3.8 | 33 | Citations (PDF) |
| 284 | Aerobic Oxidative Amination of Unactivated Alkenes Catalyzed by Palladium | 15.0 | 234 | Citations (PDF) |
| 285 | Mechanistic Characterization of Aerobic Alcohol Oxidation Catalyzed by Pd(OAc)2/Pyridine Including Identification of the Catalyst Resting State and the Origin of Nonlinear [Catalyst] Dependence | 15.0 | 202 | Citations (PDF) |
| 286 | Palladium Oxidase Catalysis: Selective Oxidation of Organic Chemicals by Direct Dioxygen-Coupled Turnover | 14.4 | 1,364 | Citations (PDF) |
| 287 | Palladiumoxidasekatalyse: selektive Oxidation durch direkte disauerstoffgekoppelte Umsetzung | 1.4 | 351 | Citations (PDF) |
| 288 | Titelbild: Palladiumoxidasekatalyse: selektive Oxidation durch direkte disauerstoffgekoppelte Umsetzung (Angew. Chem. 26/2004) | 1.4 | 5 | Citations (PDF) |
| 289 | “Inverse-Electron-Demand” Ligand Substitution: Experimental and Computational Insights into Olefin Exchange at Palladium(0) | 15.0 | 41 | Citations (PDF) |
| 290 | Formation of Enamides via Palladium(II)-Catalyzed Vinyl Transfer from Vinyl Ethers to Nitrogen Nucleophiles | 4.8 | 103 | Citations (PDF) |
| 291 | Characterization of Peroxo and Hydroperoxo Intermediates in the Aerobic Oxidation ofN-Heterocyclic-Carbene-Coordinated Palladium(0) | 15.0 | 203 | Citations (PDF) |
| 292 | Insights into the Spin-Forbidden Reaction between L2Pd0 and Molecular Oxygen | 15.0 | 107 | Citations (PDF) |
| 293 | “Inverse-Electron-Demand” Ligand Substitution in Palladium(0)−Olefin Complexes | 15.0 | 140 | Citations (PDF) |
| 294 | Catalytic Transamidation under Moderate Conditions | 15.0 | 224 | Citations (PDF) |
| 295 | Dioxygen-Coupled Oxidative Amination of Styrene | 15.0 | 154 | Citations (PDF) |
| 296 | Mechanistic Study of Alcohol Oxidation by the Pd(OAc)2/O2/DMSO Catalyst System and Implications for the Development of Improved Aerobic Oxidation Catalysts | 15.0 | 328 | Citations (PDF) |
| 297 | Ligand-Modulated Palladium Oxidation Catalysis: Mechanistic Insights into Aerobic Alcohol Oxidation with the Pd(OAc)2/Pyridine Catalyst System | 4.8 | 207 | Citations (PDF) |
| 298 | Efficient Intramolecular Oxidative Amination of Olefins through Direct Dioxygen-Coupled Palladium Catalysis | 1.4 | 46 | Citations (PDF) |
| 299 | Efficient Intramolecular Oxidative Amination of Olefins through Direct Dioxygen-Coupled Palladium Catalysis | 14.4 | 185 | Citations (PDF) |
| 300 | Oxygenation of Nitrogen-Coordinated Palladium(0): Synthetic, Structural, and Mechanistic Studies and Implications for Aerobic Oxidation Catalysis | 15.0 | 267 | Citations (PDF) |
| 301 | Oxygen Kinetic Isotope Effects in Soluble Methane Monooxygenase | 2.2 | 41 | Citations (PDF) |
| 302 | Mechanistic Studies of the Reaction of Reduced Methane Monooxygenase Hydroxylase with Dioxygen and Substrates | 15.0 | 247 | Citations (PDF) |
| 303 | Oxidation von Alkanen durch elektrophile späte Übergangsmetalle in homogener Lösung | 1.4 | 114 | Citations (PDF) |
| 304 | Homogeneous Oxidation of Alkanes by Electrophilic Late Transition Metals | 14.4 | 557 | Citations (PDF) |
| 305 | Investigations of the Factors Affecting the Stability of Dihydrogen Adducts of Platinum(II) | 4.6 | 63 | Citations (PDF) |
| 306 | Exploring the Mechanism of Aqueous C−H Activation by Pt(II) through Model Chemistry: Evidence for the Intermediacy of Alkylhydridoplatinum(IV) and Alkane σ-Adducts | 15.0 | 293 | Citations (PDF) |
| 307 | Formation and Reductive Elimination of a Hydridoalkylplatinum(IV) Intermediate upon Protonolysis of an Alkylplatinum(II) Complex | 15.0 | 127 | Citations (PDF) |
| 308 | Oxidation of Zeise's Salt by [PtCl6]2-: A Mechanistic Model for Hydrocarbon Oxidation | 2.9 | 56 | Citations (PDF) |
| 309 | Stable Tetrasubstituted Quinone Redox Reservoir for Enhancing Decoupled Hydrogen and Oxygen Evolution | 17.0 | 43 | Citations (PDF) |
| 310 | Sustainable Pd(OAc)2/Hydroquinone Cocatalyst System for Cis‐Selective Dibenzoyloxylation of 1,3‐Cyclohexadiene | 1.4 | 0 | Citations (PDF) |
| 311 | Rate Equations for Reversible Disproportionation Reactions and Fitting to Time-Course Data | 2.5 | 2 | Citations (PDF) |
| 312 | Conversion of Polystyrene to Terephthalic Acid via Sequential Acetylation and Mn/Br-Catalyzed Autoxidation | 12.4 | 3 | Citations (PDF) |
| 313 | Use of Electron-Transfer Mediators to Access Higher Electrochemical Current Densities in Ni-Catalyzed Cross-Electrophile Coupling | 15.0 | 4 | Citations (PDF) |
| 314 | Cu‐Catalyzed Aerobic Oxidative C─C Cleavage in Lignin‐Derived Oligomers and Biological Funneling of the Monomeric Products | 14.4 | 3 | Citations (PDF) |
| 315 | Cu‐Catalyzed Aerobic Oxidative C─C Cleavage in Lignin‐Derived Oligomers and Biological Funneling of the Monomeric Products | 1.4 | 0 | Citations (PDF) |
| 316 | Operando Analysis of Nickel Catalyst Speciation in Reductive Biaryl Synthesis Using Thin Layer Electrochemistry and a Microelectrode | 15.0 | 3 | Citations (PDF) |
| 317 | Redox‐Mediated Electrochemical Regeneration of Spent LiFePO
4
Battery Cathodes | 14.4 | 1 | Citations (PDF) |
| 318 | Heterobenzyl Chlorides as Linchpins for C–H Arylation via Sequential C–H Chlorination/Cross-Electrophile Coupling | 12.4 | 0 | Citations (PDF) |
| 319 | Electrochemical Oxygen-Atom Transfer to Alkenes and Pyridines with a Mn-Porphyrin Catalyst Using Water as the Source of Oxygen | 12.4 | 1 | Citations (PDF) |
| 320 | Mass transfer during HDPE autoxidation and the use of expanded bed reactor | 12.0 | 0 | Citations (PDF) |
| 321 | Fe(porphyrin)-Catalyzed Alkene Epoxidation with NaOCl: A Practical Small- and Large-Scale Alternative to
m
CPBA | 15.0 | 0 | Citations (PDF) |
| 322 | Development of Kilogram-Scale Electrochemical Ni-Catalyzed Cross Electrophile Coupling in Flow | 3.4 | 0 | Citations (PDF) |