| 1 | Metal decoration of Si particles
via
high-energy milling for lithium-ion battery anodes | 3.0 | 3 | Citations (PDF) |
| 2 | Irreversible Multielement Diffusion and the Resulting Compositional and Processing Flexibility in the Synthesis and Densification of Lithium Aluminum Lanthanum Zirconium Oxide | 3.9 | 5 | Citations (PDF) |
| 3 | Direct Prelithiation of Silicon-Based Composite Electrodes via Island-like Thermal Evaporation | 4.3 | 12 | Citations (PDF) |
| 4 | Operando
APXPS for direct probing of Li ion battery LCO electrode/electrolyte interface chemistry during lithiation/delithiation | 6.7 | 11 | Citations (PDF) |
| 5 | Solvent-Free Melt-Processed Cathode Mitigates Li Anode Instability in Polymer-Based Solid-State Batteries | 12.4 | 2 | Citations (PDF) |
| 6 | Surprising Relationship between Silicon Anode Calendar Aging and Electrolyte Components in a Localized High-Concentration Electrolyte System | 5.5 | 5 | Citations (PDF) |
| 7 | Memory Effect on the Synthesis of Perovskite-Type Li-Ion Conductor LixLa2/3–x/3TiO3 (LLTO) | 4.6 | 13 | Citations (PDF) |
| 8 | Elucidating the Role of Carbon Conductive Additive in the Processing and Electrochemical Behavior of Surface-Modified Si Anodes | 4.3 | 19 | Citations (PDF) |
| 9 | Boron–Silicon Alloy Nanoparticles as a Promising New Material in Lithium-Ion Battery Anodes | 12.4 | 27 | Citations (PDF) |
| 10 | Solubilities of Ethylene and Carbon Dioxide Gases in Lithium-Ion Battery Electrolyte | 1.8 | 5 | Citations (PDF) |
| 11 | Blended 1D carbon nanostructures synergistically enhance electron and ion transport in silicon nanoparticle electrodes | 2.9 | 8 | Citations (PDF) |
| 12 | Corrosion and Enhanced Hydrogen Evolution in Electrochemical Reduction of Ammonium Carbamate on Transition Metal Surfaces | 2.9 | 24 | Citations (PDF) |
| 13 | Accelerating Measurement Times by Correlating Electrode/Electrolyte Interface Properties with Cycle and Calendar Lifetimes | 0.0 | 0 | Citations (PDF) |
| 14 | Effects of Al concentration on the structure and conductivity of lithium lanthanum zirconium oxide | 6.7 | 13 | Citations (PDF) |
| 15 | Elucidating the local structure of Li1+xAlxTi2−x(PO4)3 and Li3AlxTi2−x(PO4)3 (x = 0, 0.3) via total scattering | 4.5 | 3 | Citations (PDF) |
| 16 | Chemo-mechanical instabilities in lithium cobalt oxide at higher state-of-charge in Li-Ion batteries | 4.1 | 6 | Citations (PDF) |
| 17 | Mitigating Calendar Aging in Si-NMC Batteries with Advanced Dual-Salt Glyme Electrolytes | 4.6 | 1 | Citations (PDF) |
| 18 | Direct Mechanochemical Synthesis, Phase Stability, and Electrochemical Performance of α-NaFeO2 | 3.4 | 18 | Citations (PDF) |
| 19 | Functionalized Silicon Particles for Enhanced Half- and Full-Cell Cycling of Si-Based Li-Ion Batteries | 5.5 | 36 | Citations (PDF) |
| 20 | Phase-field modeling of solid-state metathesis reactions with the charge neutrality constraint | 2.6 | 3 | Citations (PDF) |
| 21 | In Situ Measurement of Buried Electrolyte–Electrode Interfaces for Solid State Batteries with Nanometer Level Precision | 12.4 | 25 | Citations (PDF) |
| 22 | Understanding Interfacial Electrochemical Reactions through <i>in situ</i> ec-STEM and IL-Cryo-STEM | 0.3 | 0 | Citations (PDF) |
| 23 | Origin of rate limitations in solid-state polymer batteries from constrained segmental dynamics within the cathode | 2.9 | 4 | Citations (PDF) |
| 24 | Critical Contribution of Imbalanced Charge Loss to Performance Deterioration of Si-Based Lithium-Ion Cells during Calendar Aging | 5.5 | 17 | Citations (PDF) |
| 25 | Carbon Coating Influence on the Formation of Percolating Electrode Networks for Silicon Anodes | 3.9 | 32 | Citations (PDF) |
| 26 | Hermetically sealed porous-wall hollow microspheres enabled by monolithic glass coatings: Potential for thermal insulation applications | 3.1 | 13 | Citations (PDF) |
| 27 | Role of silicon-graphite homogeneity as promoted by low molecular weight dispersants | 6.1 | 21 | Citations (PDF) |
| 28 | Competitive adsorption within electrode slurries and impact on cell fabrication and performance | 6.1 | 15 | Citations (PDF) |
| 29 | Study of Chromium Migration in a Nickel-Based Alloy Using Polarized Neutron Reflectometry and Rutherford Backscattering Spectrometry | 2.3 | 0 | Citations (PDF) |
| 30 | Evaluating the roles of electrolyte components on the passivation of silicon anodes | 6.1 | 25 | Citations (PDF) |
| 31 | Polyacrylonitrile-based electrolytes: How processing and residual solvent affect ion transport and stability | 6.1 | 41 | Citations (PDF) |
| 32 | Digestion processes and elemental analysis of oxide and sulfide solid electrolytes | 2.2 | 9 | Citations (PDF) |
| 33 | Critical Evaluation of Potentiostatic Holds as Accelerated Predictors of Capacity Fade during Calendar Aging | 2.2 | 53 | Citations (PDF) |
| 34 | Understanding the Solution Dynamics and Binding of a PVDF Binder with Silicon, Graphite, and NMC Materials and the Influence on Cycling Performance | 5.5 | 25 | Citations (PDF) |
| 35 | Relative Kinetics of Solid-State Reactions: The Role of Architecture in Controlling Reactivity | 11.7 | 25 | Citations (PDF) |
| 36 | Thin-Film Paradigm to Probe Interfacial Diffusion during Solid-State Metathesis Reactions | 4.6 | 3 | Citations (PDF) |
| 37 | Understanding the Origin of the Nonpassivating Behavior of Si-Based Anodes during the Initial Cycles | 2.3 | 13 | Citations (PDF) |
| 38 | Elucidating Interfacial Stability between Lithium Metal Anode and Li Phosphorus Oxynitride via In Situ Electron Microscopy | 6.2 | 64 | Citations (PDF) |
| 39 | Structure and dynamics of small polyimide oligomers with silicon as a function of aging | 1.9 | 4 | Citations (PDF) |
| 40 | Quantification of the ion transport mechanism in protective polymer coatings on lithium metal anodes | 5.3 | 17 | Citations (PDF) |
| 41 | Examining CO
2
as an Additive for Solid Electrolyte Interphase Formation on Silicon Anodes | 2.2 | 34 | Citations (PDF) |
| 42 | XPCS Microrheology and Rheology of Sterically Stabilized Nanoparticle Dispersions in Aprotic Solvents | 5.5 | 16 | Citations (PDF) |
| 43 | Probing Clustering Dynamics between Silicon and PAA or LiPAA Slurries under Processing Conditions | 3.5 | 15 | Citations (PDF) |
| 44 | An anode-free Li metal cell with replenishable Li designed for long cycle life | 9.0 | 27 | Citations (PDF) |
| 45 | Robust Solid/Electrolyte Interphase (SEI) Formation on Si Anodes Using Glyme-Based Electrolytes | 12.4 | 177 | Citations (PDF) |
| 46 | Role of Low Molecular Weight Polymers on the Dynamics of Silicon Anodes During Casting | 1.5 | 9 | Citations (PDF) |
| 47 | La2Zr2O7 Nanoparticle-Mediated Synthesis of Porous Al-Doped Li7La3Zr2O12 Garnet | 3.4 | 14 | Citations (PDF) |
| 48 | Solid Electrolyte Interphase Architecture Determined through In Situ Neutron Scattering | 2.2 | 14 | Citations (PDF) |
| 49 | Multifunctional approaches for safe structural batteries | 6.8 | 61 | Citations (PDF) |
| 50 | Synthesis of model sodium sulfide films | 1.5 | 8 | Citations (PDF) |
| 51 | Role of Pairwise Reactions on the Synthesis of Li0.3La0.57TiO3 and the Resulting Structure–Property Correlations | 3.4 | 10 | Citations (PDF) |
| 52 | Nanostructured ligament and fiber Al–doped Li7La3Zr2O12 scaffolds to mediate cathode-electrolyte interface chemistry | 6.1 | 12 | Citations (PDF) |
| 53 | Distilling nanoscale heterogeneity of amorphous silicon using tip-enhanced Raman spectroscopy (TERS) via multiresolution manifold learning | 10.8 | 53 | Citations (PDF) |
| 54 | Stable SEI Formation on Al-Si-Mn Metallic Glass Li-Ion Anode | 2.2 | 8 | Citations (PDF) |
| 55 | Bifunctional Ionic Covalent Organic Networks for Enhanced Simultaneous Removal of Chromium(VI) and Arsenic(V) Oxoanions via Synergetic Ion Exchange and Redox Process | 7.3 | 18 | Citations (PDF) |
| 56 | Stable SEI Formation on Al-Si-Mn Metallic Glass Li-Ion Anode | 0.0 | 0 | Citations (PDF) |
| 57 | Probing Slurry and Electrode Architecture of Silicon Anodes Processed with Oligomeric Polyimide Binder Under Electrode Coating Conditions | 0.0 | 0 | Citations (PDF) |
| 58 | A high temperature cell for investigating interfacial structure on the molecular scale in molten salt/alloy systems | 1.1 | 1 | Citations (PDF) |
| 59 | Li2O-Based Cathode Additives Enabling Prelithiation of Si Anodes | 1.6 | 23 | Citations (PDF) |
| 60 | Solid-State Batteries and the Critical Role of Interfaces | 0.0 | 0 | Citations (PDF) |
| 61 | Ru supported on micro and mesoporous carbons as catalysts for biomass-derived molecules hydrogenation | 3.8 | 21 | Citations (PDF) |
| 62 | Direct Measure of Electrode Spatial Heterogeneity: Influence of Processing Conditions on Anode Architecture and Performance | 5.5 | 25 | Citations (PDF) |
| 63 | Electrochemical Reactivity and Passivation of Silicon Thin-Film Electrodes in Organic Carbonate Electrolytes | 5.5 | 71 | Citations (PDF) |
| 64 | Catalytic Activity of Ti‐based MXenes for the Hydrogenation of Furfural | 2.7 | 42 | Citations (PDF) |
| 65 | Active Reaction Control of Cu Redox State Based on Real-Time Feedback from In Situ Synchrotron Measurements | 11.7 | 12 | Citations (PDF) |
| 66 | Ending the Chase for a Perfect Binder: Role of Surface Chemistry Variation and its Influence on Silicon Anodes | 3.2 | 14 | Citations (PDF) |
| 67 | Defect-Accommodating Intermediates Yield Selective Low-Temperature Synthesis of YMnO3 Polymorphs | 3.4 | 29 | Citations (PDF) |
| 68 | Ambient Temperature Graphitization Based on Mechanochemical Synthesis | 0.9 | 3 | Citations (PDF) |
| 69 | Ambient Temperature Graphitization Based on Mechanochemical Synthesis | 11.6 | 52 | Citations (PDF) |
| 70 | Understanding Binder–Silicon Interactions during Slurry Processing | 2.3 | 39 | Citations (PDF) |
| 71 | Investigation on capacity loss mechanisms of lithium-ion pouch cells under mechanical indentation conditions | 6.1 | 59 | Citations (PDF) |
| 72 | Role of Surface Acidity in the Surface Stabilization of the High-Voltage Cathode LiNi0.6Mn0.2Co0.2O2 | 3.4 | 14 | Citations (PDF) |
| 73 | Intrinsic Chemical Reactivity of Silicon Electrode Materials: Gas Evolution | 4.6 | 43 | Citations (PDF) |
| 74 | Influence of Binder Coverage on Interfacial Chemistry of Thin Film LiNi0.6Mn0.2Co0.2O2 Cathodes | 2.2 | 34 | Citations (PDF) |
| 75 | Intrinsic chemical reactivity of solid-electrolyte interphase components in silicon–lithium alloy anode batteries probed by FTIR spectroscopy | 6.7 | 92 | Citations (PDF) |
| 76 | Toward quantifying capacity losses due to solid electrolyte interphase evolution in silicon thin film batteries | 2.2 | 38 | Citations (PDF) |
| 77 | The Study of the Binder Poly(acrylic acid) and Its Role in Concomitant Solid–Electrolyte Interphase Formation on Si Anodes | 5.5 | 77 | Citations (PDF) |
| 78 | Physical vapor deposition process for engineering Pt based oxygen reduction reaction catalysts on NbOx templated carbon support | 6.1 | 33 | Citations (PDF) |
| 79 | Structural Degradation of High Voltage Lithium Nickel Manganese Cobalt Oxide (NMC) Cathodes in Solid-State Batteries and Implications for Next Generation Energy Storage | 3.9 | 44 | Citations (PDF) |
| 80 | Investigating the Chemical Reactivity of Lithium Silicate Model SEI Layers | 2.3 | 34 | Citations (PDF) |
| 81 | High‐Voltage Performance of Ni‐Rich NCA Cathodes: Linking Operating Voltage with Cathode Degradation | 3.2 | 22 | Citations (PDF) |
| 82 | Role of conductive binder to direct solid–electrolyte interphase formation over silicon anodes | 2.0 | 19 | Citations (PDF) |
| 83 | Unraveling the Nanoscale Heterogeneity of Solid Electrolyte Interphase Using Tip-Enhanced Raman SpectroscopyJoule, 2019, 3, 2001-2019 | 22.6 | 155 | Citations (PDF) |
| 84 | Dynamic Lithium Distribution upon Dendrite Growth and Shorting Revealed by Operando Neutron Imaging | 12.4 | 109 | Citations (PDF) |
| 85 | Synthesis of metal chloride films: Influence of growth conditions on crystallinity | 1.6 | 4 | Citations (PDF) |
| 86 | Synthesis of Ni-Rich Thin-Film Cathode as Model System for Lithium Ion Batteries | 3.9 | 43 | Citations (PDF) |
| 87 | Probing microstructure and electrolyte concentration dependent cell chemistry via operando small angle neutron scattering | 22.1 | 51 | Citations (PDF) |
| 88 | AuPd-nNiO as an effective catalyst for the base-free oxidation of HMF under mild reaction conditions | 7.6 | 101 | Citations (PDF) |
| 89 | Interpreting Electrochemical and Chemical Sodiation Mechanisms and Kinetics in Tin Antimony Battery Anodes Using in Situ Transmission Electron Microscopy and Computational Methods | 3.9 | 16 | Citations (PDF) |
| 90 | Understanding the Low-Voltage Hysteresis of Anionic Redox in Na2Mn3O7 | 4.6 | 156 | Citations (PDF) |
| 91 | Probing Electrolyte Solvents at Solid/Liquid Interface Using Gap-Mode Surface-Enhanced Raman Spectroscopy | 2.2 | 48 | Citations (PDF) |
| 92 | Guanidinium-Based Ionic Covalent Organic Framework for Rapid and Selective Removal of Toxic Cr(VI) Oxoanions from Water | 8.5 | 154 | Citations (PDF) |
| 93 | Metastable Li1+δMn2O4 (0 ≤ δ ≤ 1) Spinel Phases Revealed by in Operando Neutron Diffraction and First-Principles Calculations | 4.6 | 36 | Citations (PDF) |
| 94 | (Invited) Unravelling Solvation Phenomena in Glyme-Based Electrolytes for Na-O2 Batteries | 0.0 | 0 | Citations (PDF) |
| 95 | (Invited) Solid-Electrolyte Interface and Interphase Depicted By Plasmon-Enhanced Raman Spectroscopy | 0.0 | 0 | Citations (PDF) |
| 96 | (Invited) In-Operando Neutron Scattering Studies of Interfacial Electrolyte Chemistry | 0.0 | 0 | Citations (PDF) |
| 97 | Understanding the Silicon/Binder Interaction and Influence on Anode Properties | 0.0 | 0 | Citations (PDF) |
| 98 | Influence of Binder Coverage on Interfacial Chemistry of Thin Film LiNi0.6Mn0.2Co0.2O2 Cathodes | 0.0 | 0 | Citations (PDF) |
| 99 | Shear Thickening Electrolyte Built from Sterically Stabilized Colloidal Particles | 5.5 | 36 | Citations (PDF) |
| 100 | Si Oxidation and H2 Gassing During Aqueous Slurry Preparation for Li-Ion Battery Anodes | 2.3 | 35 | Citations (PDF) |
| 101 | Aromatic Polyimide/Graphene Composite Organic Cathodes for Fast and Sustainable Lithium‐Ion Batteries | 4.3 | 76 | Citations (PDF) |
| 102 | Accelerating Membrane‐based CO2 Separation by Soluble Nanoporous Polymer Networks Produced by Mechanochemical Oxidative Coupling | 11.6 | 52 | Citations (PDF) |
| 103 | Accelerating Membrane‐based CO2 Separation by Soluble Nanoporous Polymer Networks Produced by Mechanochemical Oxidative Coupling | 0.9 | 10 | Citations (PDF) |
| 104 | Influence of Nonstoichiometry on Proton Conductivity in Thin-Film Yttrium-Doped Barium Zirconate | 5.5 | 28 | Citations (PDF) |
| 105 | Impact of Fluorination on Phase Stability, Crystal Chemistry, and Capacity of LiCoMnO4 High Voltage Spinels | 3.9 | 13 | Citations (PDF) |
| 106 | Vacuum-Assisted Low-Temperature Synthesis of Reduced Graphene Oxide Thin-Film Electrodes for High-Performance Transparent and Flexible All-Solid-State Supercapacitors | 5.5 | 66 | Citations (PDF) |
| 107 | The Influence of Local Distortions on Proton Mobility in Acceptor Doped Perovskites | 4.6 | 59 | Citations (PDF) |
| 108 | Synthesis and Electrochemical and Structural Investigations of Oxidatively Stable Li2MoO3 and xLi2MoO3·(1 – x)LiMO2 Composite Cathodes | 4.6 | 28 | Citations (PDF) |
| 109 | Silicon Surface Tethered Polymer as Artificial Solid Electrolyte Interface | 2.7 | 28 | Citations (PDF) |
| 110 | Resolving the Amorphous Structure of Lithium Phosphorus Oxynitride (Lipon) | 11.7 | 140 | Citations (PDF) |
| 111 | Isolating Surface Reactivity of High Energy Cathode Materials through Model Thin Films | 0.0 | 0 | Citations (PDF) |
| 112 | (Invited) Investigation of Solid Electrolyte Interphase on Amorphous Siox/Si Films Using Tip Enhanced Raman Spectroscopy | 0.0 | 0 | Citations (PDF) |
| 113 | Understanding Silicon Electrode Surface Reactivity through Model Silicate Thin Film Layers | 0.0 | 0 | Citations (PDF) |
| 114 | Advances in Solid Acid Fuel Cells | 0.0 | 0 | Citations (PDF) |
| 115 | Shear-Thickening Electrolytes for Li-Ion Batteries | 0.0 | 0 | Citations (PDF) |
| 116 | Energetics of Na+Transport through the Electrode/Cathode Interface in Single Solvent Electrolytes | 2.2 | 25 | Citations (PDF) |
| 117 | A sodium–aluminum hybrid battery | 6.7 | 37 | Citations (PDF) |
| 118 | Lithium Transport in an Amorphous LixSi Anode Investigated by Quasi-elastic Neutron Scattering | 2.3 | 24 | Citations (PDF) |
| 119 | Superacid-promoted synthesis of highly porous hypercrosslinked polycarbazoles for efficient CO2 capture | 2.4 | 42 | Citations (PDF) |
| 120 | Rational Design of Lithium–Sulfur Battery Cathodes Based on Experimentally Determined Maximum Active Material Thickness | 11.7 | 48 | Citations (PDF) |
| 121 | Taming interfacial electronic properties of platinum nanoparticles on vacancy-abundant boron nitride nanosheets for enhanced catalysis | 10.8 | 245 | Citations (PDF) |
| 122 | Lithium Vanadium Oxide (Li1.1V3O8) Coated with Amorphous Lithium Phosphorous Oxynitride (LiPON): Role of Material Morphology and Interfacial Structure on Resulting Electrochemistry | 2.2 | 10 | Citations (PDF) |
| 123 | Nanostructured carbon electrocatalyst supports for intermediate-temperature fuel cells: Single-walled versus multi-walled structures | 6.1 | 14 | Citations (PDF) |
| 124 | Shear Thickening Electrolytes for High Impact Resistant Batteries | 12.4 | 55 | Citations (PDF) |
| 125 | Predictive Design of Shear-Thickening Electrolytes for Safety Considerations | 2.2 | 18 | Citations (PDF) |
| 126 | Solid-State Synthesis of Conjugated Nanoporous Polycarbazoles | 3.2 | 44 | Citations (PDF) |
| 127 | Chemistry of Sputter-Deposited Lithium Sulfide Films | 11.7 | 31 | Citations (PDF) |
| 128 | Determination of the Solid Electrolyte Interphase Structure Grown on a Silicon Electrode Using a Fluoroethylene Carbonate Additive | 2.7 | 217 | Citations (PDF) |
| 129 | Lithium malonatoborate additives enabled stable cycling of 5 V lithium metal and lithium ion batteries | 11.9 | 95 | Citations (PDF) |
| 130 | Neutron vibrational spectroscopic studies of novel tire-derived carbon materials | 2.0 | 9 | Citations (PDF) |
| 131 | Bottom up synthesis of boron-doped graphene for stable intermediate temperature fuel cell electrodes | 8.6 | 30 | Citations (PDF) |
| 132 | 2Flux growth and characterization of Ce-substituted Nd2Fe14B single crystals | 2.1 | 48 | Citations (PDF) |
| 133 | A Novel Electrolyte Salt Additive for Lithium‐Ion Batteries with Voltages Greater than 4.7 V | 16.3 | 126 | Citations (PDF) |
| 134 | Lithium Malonatoborate Additives Enabled Long Cycling Stability of 5 V Lithium Metal and Lithium Ion Batteries | 0.0 | 0 | Citations (PDF) |
| 135 | Capturing Solid Solutions during a First-Order Phase Transition of Li1+XMn2O4 | 0.0 | 0 | Citations (PDF) |
| 136 | (Invited) In Situ Electrochemical STEM As a Platform for Interpreting Electrochemical Phenomena | 0.0 | 0 | Citations (PDF) |
| 137 | Oxygen Stability of Disordered, Multi-Lithium Oxide Cathodes for Li-Ion Batteries | 0.0 | 0 | Citations (PDF) |
| 138 | A Sodium-Aluminum Hybrid Battery | 0.0 | 1 | Citations (PDF) |
| 139 | Amorphous alumina thin films deposited on titanium: Interfacial chemistry and thermal oxidation barrier properties | 1.2 | 8 | Citations (PDF) |
| 140 | Evaluating the solid electrolyte interphase formed on silicon electrodes: a comparison of ex situ X-ray photoelectron spectroscopy and in situ neutron reflectometry | 2.0 | 95 | Citations (PDF) |
| 141 | Rational Design of Bi Nanoparticles for Efficient Electrochemical CO2 Reduction: The Elucidation of Size and Surface Condition Effects | 9.8 | 254 | Citations (PDF) |
| 142 | In Situ Doping Strategy for the Preparation of Conjugated Triazine Frameworks Displaying Efficient CO2 Capture Performance | 11.7 | 240 | Citations (PDF) |
| 143 | Characterisation of gold catalysts | 32.1 | 165 | Citations (PDF) |
| 144 | The confinement effect on the activity of Au NPs in polyol oxidation | 2.9 | 20 | Citations (PDF) |
| 145 | XAFS investigation of polyamidoxime-bound uranyl contests the paradigm from small molecule studies | 22.1 | 154 | Citations (PDF) |
| 146 | The Cell-in-Series Method: A Technique for Accelerated Electrode Degradation in Redox Flow Batteries | 2.2 | 62 | Citations (PDF) |
| 147 | Elucidating the Phase Transformation of Li4Ti5O12 Lithiation at the Nanoscale | 11.5 | 172 | Citations (PDF) |
| 148 | Depressing the hydrogenation and decomposition reaction in H2O2 synthesis by supporting AuPd on oxygen functionalized carbon nanofibers | 2.9 | 24 | Citations (PDF) |
| 149 | Low-Thermal-Budget Photonic Processing of Highly Conductive Cu Interconnects Based on CuO Nanoinks: Potential for Flexible Printed Electronics | 5.5 | 93 | Citations (PDF) |
| 150 | Preparation and CO2 adsorption properties of soft-templated mesoporous carbons derived from chestnut tannin precursors | 3.6 | 115 | Citations (PDF) |
| 151 | Type I Clathrates as Novel Silicon Anodes: An Electrochemical and Structural Investigation | 7.7 | 32 | Citations (PDF) |
| 152 | Polymerized Ionic Networks with High Charge Density: Quasi‐Solid Electrolytes in Lithium‐Metal Batteries | 17.5 | 118 | Citations (PDF) |
| 153 | Acid‐Functionalized Mesoporous Carbon: An Efficient Support for Ruthenium‐Catalyzed γ‐Valerolactone Production | 4.3 | 66 | Citations (PDF) |
| 154 | PdHx Entrapped in a Covalent Triazine Framework Modulates Selectivity in Glycerol Oxidation | 2.7 | 34 | Citations (PDF) |
| 155 | Structure of Spontaneously Formed Solid-Electrolyte Interphase on Lithiated Graphite Determined Using Small-Angle Neutron Scattering | 2.3 | 37 | Citations (PDF) |
| 156 | Vapor Synthesis and Thermal Modification of Supportless Platinum–Ruthenium Nanotubes and Application as Methanol Electrooxidation Catalysts | 5.5 | 17 | Citations (PDF) |
| 157 | The electrochemical reactions of SnO2 with Li and Na: A study using thin films and mesoporous carbons | 6.1 | 27 | Citations (PDF) |
| 158 | Lithium salts for advanced lithium batteries: Li–metal, Li–O2, and Li–S | 22.1 | 581 | Citations (PDF) |
| 159 | Role of precursor chemistry in the direct fluorination to form titanium based conversion anodes for lithium ion batteries | 4.0 | 17 | Citations (PDF) |
| 160 | Evaluation of the physi- and chemisorption of hydrogen in alkali (Na, Li) doped fullerenes | 6.6 | 31 | Citations (PDF) |
| 161 | Nanoporous Ionic Organic Networks: Stabilizing and Supporting Gold Nanoparticles for Catalysis | 6.2 | 151 | Citations (PDF) |
| 162 | Correlating Local Structure with Electrochemical Activity in Li2MnO3 | 2.3 | 32 | Citations (PDF) |
| 163 | Constructing Hierarchical Interfaces: TiO2-Supported PtFe–FeOx Nanowires for Room Temperature CO Oxidation | 11.7 | 98 | Citations (PDF) |
| 164 | High performance electrodes in vanadium redox flow batteries through oxygen-enriched thermal activation | 6.1 | 238 | Citations (PDF) |
| 165 | Water desalination using nanoporous single-layer graphene | 23.4 | 1,651 | Citations (PDF) |
| 166 | Superior Conductive Solid-like Electrolytes: Nanoconfining Liquids within the Hollow Structures | 6.2 | 122 | Citations (PDF) |
| 167 | Identifying the Role of N‐Heteroatom Location in the Activity of Metal Catalysts for Alcohol Oxidation | 2.7 | 23 | Citations (PDF) |
| 168 | A study of perfluorocarboxylate ester solvents for lithium ion battery electrolytes | 6.1 | 9 | Citations (PDF) |
| 169 | An efficient low-temperature route to nitrogen-doping and activation of mesoporous carbons for CO2 capture | 2.4 | 53 | Citations (PDF) |
| 170 | A POM–organic framework anode for Li-ion battery | 6.7 | 66 | Citations (PDF) |
| 171 | Direct Determination of Solid-Electrolyte Interphase Thickness and Composition as a Function of State of Charge on a Silicon Anode | 2.3 | 171 | Citations (PDF) |
| 172 | Understanding the Role of NH4F and Al2O3 Surface Co-modification on Lithium-Excess Layered Oxide Li1.2Ni0.2Mn0.6O2 | 5.5 | 96 | Citations (PDF) |
| 173 | Probing battery chemistry with liquid cell electron energy loss spectroscopy | 2.4 | 27 | Citations (PDF) |
| 174 | Soluble Porous Coordination Polymers by Mechanochemistry: From Metal‐Containing Films/Membranes to Active Catalysts for Aerobic Oxidation | 17.5 | 96 | Citations (PDF) |
| 175 | Conduction below 100 °C in nominal Li6ZnNb4O14 | 2.8 | 5 | Citations (PDF) |
| 176 | Measuring Dynamic Changes in Si SEI Chemistry | 0.0 | 0 | Citations (PDF) |
| 177 | Nanostructured Carbon As Electrocatalyst Supports for Solid Acid Fuel Cells | 0.0 | 0 | Citations (PDF) |
| 178 | Ambient Lithium–SO2 Batteries with Ionic Liquids as Electrolytes | 11.6 | 70 | Citations (PDF) |
| 179 | Ambient Lithium–SO2 Batteries with Ionic Liquids as Electrolytes | 0.9 | 21 | Citations (PDF) |
| 180 | Synthesis and Characterization of Lithium Bis(fluoromalonato)borate for Lithium‐Ion Battery Applications | 16.3 | 49 | Citations (PDF) |
| 181 | Dry Synthesis of Lithium Intercalated Graphite Powder and Fiber | 2.2 | 16 | Citations (PDF) |
| 182 | The electrochemical reactions of pure indium with Li and Na: Anomalous electrolyte decomposition, benefits of FEC additive, phase transitions and electrode performance | 6.1 | 112 | Citations (PDF) |
| 183 | Hydrogen evolution at the negative electrode of the all-vanadium redox flow batteries | 6.1 | 138 | Citations (PDF) |
| 184 | Thin-Film and Bulk Investigations of LiCoBO3 as a Li-Ion Battery Cathode | 5.5 | 15 | Citations (PDF) |
| 185 | Mixed Polyanion Glass Cathodes: Iron Phosphate Vanadate Glasses | 2.2 | 17 | Citations (PDF) |
| 186 | The reaction mechanism of FeSb2 as anode for sodium-ion batteries | 2.0 | 72 | Citations (PDF) |
| 187 | The local atomic structure and chemical bonding in sodium tin phases | 6.7 | 35 | Citations (PDF) |
| 188 | Bis(fluoromalonato)borate (BFMB) anion based ionic liquid as an additive for lithium-ion battery electrolytes | 6.7 | 37 | Citations (PDF) |
| 189 | Directed Synthesis of Nanoporous Carbons from Task‐Specific Ionic Liquid Precursors for the Adsorption of CO2 | 4.3 | 27 | Citations (PDF) |
| 190 | In Situ Determination of the Liquid/Solid Interface Thickness and Composition for the Li Ion Cathode LiMn1.5Ni0.5O4 | 5.5 | 80 | Citations (PDF) |
| 191 | Direct measurement of the chemical reactivity of silicon electrodes with LiPF6-based battery electrolytes | 2.4 | 68 | Citations (PDF) |
| 192 | Ionic liquid derived carbons as highly efficient oxygen reduction catalysts: first elucidation of pore size distribution dependent kinetics | 2.4 | 51 | Citations (PDF) |
| 193 | Unraveling manganese dissolution/deposition mechanisms on the negative electrode in lithium ion batteries | 2.0 | 88 | Citations (PDF) |
| 194 | Lab-in-a-Shell: Encapsulating Metal Clusters for Size Sieving Catalysis | 11.7 | 158 | Citations (PDF) |
| 195 | Probing the Mechanism of Sodium Ion Insertion into Copper Antimony Cu2Sb Anodes | 2.3 | 69 | Citations (PDF) |
| 196 | Catalytic CO Oxidation Over Gold Nanoparticles: Support Modification by Monolayer- and Submonolayer-Dispersed Sb2O3 | 1.8 | 4 | Citations (PDF) |
| 197 | Sodium Manganese Oxide Thin Films as Cathodes for Na-Ion Batteries | 0.5 | 11 | Citations (PDF) |
| 198 | Effect of Morphology and Manganese Valence on the Voltage Fade and Capacity Retention of Li[Li2/12Ni3/12Mn7/12]O2 | 5.5 | 80 | Citations (PDF) |
| 199 | Gold nanocatalysts supported on heterostructured PbSO4-MCF mesoporous materials for CO oxidation | 3.8 | 5 | Citations (PDF) |
| 200 | Degradation mechanisms of lithium-rich nickel manganese cobalt oxide cathode thin films | 4.0 | 54 | Citations (PDF) |
| 201 | The reaction mechanism of SnSb and Sb thin film anodes for Na-ion batteries studied by X-ray diffraction, 119Sn and 121Sb Mössbauer spectroscopies | 6.1 | 116 | Citations (PDF) |
| 202 | Sovent-Free Synthesis of Lithium Intercalated Graphites Using Thermal or Mechanical Reactors | 0.0 | 0 | Citations (PDF) |
| 203 | Influence of Hydrocarbon and CO2 on the Reversibility of Li-O2 Chemistry: An in Situ Ambient Pressure X-Ray Photoelectron Spectroscopy Study | 0.0 | 0 | Citations (PDF) |
| 204 | An Artificial Solid Electrolyte Interphase Enables the Use of a LiNi0.5 Mn1.5 O4 5 V Cathode with Conventional Electrolytes | 16.3 | 80 | Citations (PDF) |
| 205 | Mo3Sb7 as a very fast anode material for lithium-ion and sodium-ion batteries | 6.7 | 128 | Citations (PDF) |
| 206 | A new family of fluidic precursors for the self-templated synthesis of hierarchical nanoporous carbons | 2.4 | 29 | Citations (PDF) |
| 207 | Toward Quantitative Electrochemical Measurements on the Nanoscale by Scanning Probe Microscopy: Environmental and Current Spreading Effects | 11.5 | 21 | Citations (PDF) |
| 208 | CO Oxidation on Supported Single Pt Atoms: Experimental and ab Initio Density Functional Studies of CO Interaction with Pt Atom on θ-Al2O3(010) Surface | 11.7 | 602 | Citations (PDF) |
| 209 | Sol immobilization technique: a delicate balance between activity, selectivity and stability of gold catalysts | 2.9 | 125 | Citations (PDF) |
| 210 | Cobalt Molybdenum Oxynitrides: Synthesis, Structural Characterization, and Catalytic Activity for the Oxygen Reduction Reaction | 0.9 | 37 | Citations (PDF) |
| 211 | Formation of Iron Oxyfluoride Phase on the Surface of Nano-Fe3O4 Conversion Compound for Electrochemical Energy Storage | 2.9 | 29 | Citations (PDF) |
| 212 | Influence of Hydrocarbon and CO2 on the Reversibility of Li–O2 Chemistry Using In Situ Ambient Pressure X-ray Photoelectron Spectroscopy | 2.3 | 63 | Citations (PDF) |
| 213 | Mixed Close-Packed Cobalt Molybdenum Nitrides as Non-noble Metal Electrocatalysts for the Hydrogen Evolution Reaction | 11.7 | 1,006 | Citations (PDF) |
| 214 | Deposition–Precipitation and Stabilization of a Silica-Supported Au Catalyst by Surface Modification with Carbon Nitride | 1.8 | 11 | Citations (PDF) |
| 215 | AlSb thin films as negative electrodes for Li-ion and Na-ion batteries | 6.1 | 90 | Citations (PDF) |
| 216 | Intrinsic thermodynamic and kinetic properties of Sb electrodes for Li-ion and Na-ion batteries: experiment and theory | 6.7 | 250 | Citations (PDF) |
| 217 | Probing the electrode/electrolyte interface in the lithium excess layered oxide Li1.2Ni0.2Mn0.6O2 | 2.0 | 123 | Citations (PDF) |
| 218 | Predictions of particle size and lattice diffusion pathway requirements for sodium-ion anodes using η-Cu6Sn5 thin films as a model system | 2.0 | 40 | Citations (PDF) |
| 219 | Fluorination of “brick and mortar” soft-templated graphitic ordered mesoporous carbons for high power lithium-ion battery | 6.7 | 27 | Citations (PDF) |
| 220 | Controlled Synthesis of Mesoporous Carbon Nanostructures via a “Silica-Assisted” Strategy | 6.2 | 263 | Citations (PDF) |
| 221 | Surface chemistry of metal oxide coated lithium manganese nickel oxide thin film cathodes studied by XPS | 4.1 | 165 | Citations (PDF) |
| 222 | Gas evolution from cathode materials: A pathway to solvent decomposition concomitant to SEI formation | 6.1 | 42 | Citations (PDF) |
| 223 | Sonochemical functionalization of mesoporous carbon for uranium extraction from seawater | 6.7 | 141 | Citations (PDF) |
| 224 | Cu2Sb thin films as anode for Na-ion batteries | 2.9 | 116 | Citations (PDF) |
| 225 | Synthesis of Porous, Nitrogen‐Doped Adsorption/Diffusion Carbonaceous Membranes for Efficient CO2 Separation | 2.8 | 48 | Citations (PDF) |
| 226 | Nitrogen‐Enriched Carbons from Alkali Salts with High Coulombic Efficiency for Energy Storage Applications | 16.3 | 54 | Citations (PDF) |
| 227 | Characterization of sodium ion electrochemical reaction with tin anodes: Experiment and theory | 6.1 | 210 | Citations (PDF) |
| 228 | Pd‐modified Au on Carbon as an Effective and Durable Catalyst for the Direct Oxidation of HMF to 2,5‐Furandicarboxylic Acid | 4.3 | 240 | Citations (PDF) |
| 229 | Highly dispersed sulfur in a porous aromatic framework as a cathode for lithium–sulfur batteries | 2.4 | 111 | Citations (PDF) |
| 230 | New Tricks for Old Molecules: Development and Application of Porous N‐doped, Carbonaceous Membranes for CO2 Separation | 17.5 | 74 | Citations (PDF) |
| 231 | Electrochemical and Solid-State Lithiation of Graphitic C3N4 | 4.6 | 152 | Citations (PDF) |
| 232 | Germanium as negative electrode material for sodium-ion batteries | 2.9 | 224 | Citations (PDF) |
| 233 | A Perspective on Coatings to Stabilize High-Voltage Cathodes: LiMn1.5Ni0.5O4with Sub-Nanometer Lipon Cycled with LiPF6Electrolyte | 2.2 | 58 | Citations (PDF) |
| 234 | Evidence for the Formation of Nitrogen-Rich Platinum and Palladium Nitride Nanoparticles | 4.6 | 45 | Citations (PDF) |
| 235 | NiO as a peculiar support for metal nanoparticles in polyols oxidation | 2.9 | 44 | Citations (PDF) |
| 236 | Composition Dependence of the Pore Structure and Water Transport of Composite Catalyst Layers for Polymer Electrolyte Fuel Cells | 2.2 | 28 | Citations (PDF) |
| 237 | Activity and Evolution of Vapor Deposited Pt-Pd Oxygen Reduction Catalysts for Solid Acid Fuel Cells | 2.2 | 24 | Citations (PDF) |
| 238 | Cobalt Molybdenum Oxynitrides: Synthesis, Structural Characterization, and Catalytic Activity for the Oxygen Reduction Reaction | 11.6 | 145 | Citations (PDF) |
| 239 | Direct Fluorination of Iron (II, III) Oxide Conversion Electrodes | 0.0 | 0 | Citations (PDF) |
| 240 | Investigation of the Hydrogen Evolution in All-Vanadium Redox Flow Battery | 0.0 | 1 | Citations (PDF) |
| 241 | The Reaction of Sb-Based (inter)Metallics As Na-Ion Negative Electrode Materials | 0.0 | 0 | Citations (PDF) |
| 242 | Intrinsic Surface Stability in LiMn2–xNixO4–δ (x = 0.45, 0.5) High Voltage Spinel Materials for Lithium Ion Batteries | 2.3 | 31 | Citations (PDF) |
| 243 | Bismuth as a modifier of Au–Pd catalyst: Enhancing selectivity in alcohol oxidation by suppressing parallel reaction | 4.4 | 46 | Citations (PDF) |
| 244 | Surface studies of high voltage lithium rich composition: Li1.2Mn0.525Ni0.175Co0.1O2 | 6.1 | 141 | Citations (PDF) |
| 245 | A “Ship‐In‐A‐Bottle” Approach to Synthesis of Polymer Dots@Silica or Polymer Dots@Carbon Core‐Shell Nanospheres | 17.5 | 99 | Citations (PDF) |
| 246 | Efficient CO2 Capture by Porous, Nitrogen‐Doped Carbonaceous Adsorbents Derived from Task‐Specific Ionic Liquids | 4.3 | 103 | Citations (PDF) |
| 247 | Silica-Supported Au–CuOx Hybrid Nanocrystals as Active and Selective Catalysts for the Formation of Acetaldehyde from the Oxidation of Ethanol | 9.8 | 113 | Citations (PDF) |
| 248 | In Situ Ambient Pressure X-ray Photoelectron Spectroscopy Studies of Lithium-Oxygen Redox Reactions | 2.7 | 208 | Citations (PDF) |
| 249 | In situ growth synthesis of heterostructured LnPO4–SiO2 (Ln = La, Ce, and Eu) mesoporous materials as supports for small gold particles used in catalytic CO oxidation | 7.3 | 19 | Citations (PDF) |
| 250 | Anomalous Discharge Product Distribution in Lithium-Air Cathodes | 2.3 | 85 | Citations (PDF) |
| 251 | Direct Determination of the Thickness and Composition of Electrode-Electrolyte Interface during Electrochemical Reaction | 0.0 | 0 | Citations (PDF) |
| 252 | Investigation of the Solid Electrolyte Interphase (SEI) with Pre-Lithiated Graphite | 0.0 | 0 | Citations (PDF) |
| 253 | Gold Nanoparticles Supported on Carbon Nitride: Influence of Surface Hydroxyls on Low Temperature Carbon Monoxide Oxidation | 9.8 | 141 | Citations (PDF) |
| 254 | Influence of Lithium Salts on the Discharge Chemistry of Li–Air Cells | 2.9 | 127 | Citations (PDF) |
| 255 | A Superacid-Catalyzed Synthesis of Porous Membranes Based on Triazine Frameworks for CO2 Separation | 11.7 | 490 | Citations (PDF) |
| 256 | A Topotactic Synthetic Methodology for Highly Fluorine‐Doped Mesoporous Metal Oxides | 0.9 | 7 | Citations (PDF) |
| 257 | A Topotactic Synthetic Methodology for Highly Fluorine‐Doped Mesoporous Metal Oxides | 11.6 | 16 | Citations (PDF) |
| 258 | Influence of Periodic Nitrogen Functionality on the Selective Oxidation of Alcohols | 2.1 | 59 | Citations (PDF) |
| 259 | “One-pot” synthesis of phosphorylated mesoporous carbon heterogeneous catalysts with tailored surface acidity | 3.8 | 27 | Citations (PDF) |
| 260 | Electrochemical and rate performance study of high-voltage lithium-rich composition: Li1.2Mn0.525Ni0.175Co0.1O2 | 6.1 | 218 | Citations (PDF) |
| 261 | Fabrication and characterization of Li–Mn–Ni–O sputtered thin film high voltage cathodes for Li-ion batteries | 6.1 | 74 | Citations (PDF) |
| 262 | Probing Reaction Mechanisms of Li-O2 Batteries via In Situ Ambient Pressure X-ray Photoelectron Spectroscopy | 0.0 | 0 | Citations (PDF) |
| 263 | Properties of lithium phosphorus oxynitride (Lipon) for 3D solid-state lithium batteries | 1.9 | 43 | Citations (PDF) |
| 264 | Current Collectors for Rechargeable Li-Air Batteries | 2.2 | 60 | Citations (PDF) |
| 265 | Role of Hydroxyl Groups on the Stability and Catalytic Activity of Au Clusters on a Rutile Surface | 2.9 | 36 | Citations (PDF) |
| 266 | Spectroscopic Characterization of Solid Discharge Products in Li–Air Cells with Aprotic Carbonate Electrolytes | 2.3 | 118 | Citations (PDF) |
| 267 | Low-Temperature Fluorination of Soft-Templated Mesoporous Carbons for a High-Power Lithium/Carbon Fluoride Battery | 4.6 | 117 | Citations (PDF) |
| 268 | Understanding Changes to the Cathode-Electrolyte Interface of High Voltage Spinels with Neutron Reflectometry and Surface Spectroscopy | 0.0 | 0 | Citations (PDF) |
| 269 | Au on Nanosized NiO: A Cooperative Effect between Au and Nanosized NiO in the Base‐Free Alcohol Oxidation | 2.7 | 61 | Citations (PDF) |
| 270 | High voltage stability of LiCoO2 particles with a nano-scale Lipon coating | 4.1 | 95 | Citations (PDF) |
| 271 | Understanding the Cathode Electrolyte Interface of (Un)Coated Lithium Manganese Nickel Oxide Cathodes Using Atom Probe and Transmission Electron Microscopies | 0.0 | 0 | Citations (PDF) |
| 272 | Improved Electrochemical Performance of High Energy Layered-Layered Mixed Oxide Lithium Rich Composition | 0.0 | 0 | Citations (PDF) |
| 273 | Influence of Support Hydroxides on the Catalytic Activity of Oxidized Gold Clusters | 2.7 | 35 | Citations (PDF) |
| 274 | Au on MgAl2O4 spinels: The effect of support surface properties in glycerol oxidation | 4.4 | 104 | Citations (PDF) |
| 275 | Selective Oxidation of Glycerol under Acidic Conditions Using Gold Catalysts | 0.9 | 51 | Citations (PDF) |
| 276 | Selective Oxidation of Glycerol under Acidic Conditions Using Gold Catalysts | 11.6 | 233 | Citations (PDF) |
| 277 | Atmospheric Pressure Scanning Transmission Electron Microscopy | 6.2 | 84 | Citations (PDF) |
| 278 | Direct exfoliation of natural graphite into micrometre size few layers graphene sheets using ionic liquids | 2.4 | 316 | Citations (PDF) |
| 279 | Oxygen and CO Adsorption on Au/SiO2 Catalysts Prepared by Magnetron Sputtering: The Role of Oxygen Storage | 2.9 | 27 | Citations (PDF) |
| 280 | Using supported Au nanoparticles as starting material for preparing uniform Au/Pd bimetallic catalysts | 2.0 | 54 | Citations (PDF) |
| 281 | Interfacial Coating Effects of Li-Ion Conductor for High Voltage Cycling of Rechargeable Lithium Batteries | 0.0 | 0 | Citations (PDF) |
| 282 | Lithium Phosphorous Oxynitride as an Artificial SEI on Graphite Anodes | 0.0 | 1 | Citations (PDF) |
| 283 | Nanoscale Imaging of Whole Cells Using a Liquid Enclosure and a Scanning Transmission Electron Microscope | 1.5 | 94 | Citations (PDF) |
| 284 | Thermal stability and catalytic activity of gold nanoparticles supported on silica | 4.4 | 182 | Citations (PDF) |
| 285 | Role of pH in the Formation of Structurally Stable and Catalytically Active TiO2-Supported Gold Catalysts | 2.3 | 70 | Citations (PDF) |
| 286 | Magnetron sputtering of gold nanoparticles onto WO3 and activated carbon | 3.8 | 72 | Citations (PDF) |
| 287 | Nanoparticles of gold on -AlO produced by dc magnetron sputtering | 4.4 | 100 | Citations (PDF) |
| 288 | Real space imaging of the microscopic origins of the ultrahigh dielectric constant in polycrystalline CaCu3Ti4O12 | 2.3 | 64 | Citations (PDF) |
| 289 | Synthesis and Characterization of Sr3FeMoO6.88: An Oxygen-Deficient 2D Analogue of the Double Perovskite Sr2FeMoO6 | 4.6 | 25 | Citations (PDF) |
| 290 | Magnetic, thermodynamic, and transport characterization ofNa0.75CoO2single crystals | 2.4 | 80 | Citations (PDF) |
| 291 | Synthesis and characterization of the new Ln2FeMoO7 (Ln = Y, Dy, Ho) compounds | 7.3 | 21 | Citations (PDF) |
| 292 | Preparation of Bi Nanowires from the Reaction between Ammonia and Bi1.7V8O16 | 4.6 | 8 | Citations (PDF) |
| 293 | Electronic, Magnetic, and Magnetoresistance Properties of the n=2 Ruddlesden–Popper Phases Sr3Fe2−xCoxO7−δ (0.25≤x≤1.75) | 2.4 | 28 | Citations (PDF) |
| 294 | Synthesis, Crystal Structure, and Physical Properties of Sr0.93(SixNb1−x)Nb10O19 (x=0.87) | 2.4 | 1 | Citations (PDF) |
| 295 | Properties of the n=3 Ruddlesden–Popper Phases Sr4Mn3−xFexO10−δ (x=1, 1.5, 2) | 2.4 | 23 | Citations (PDF) |
| 296 | Properties of the perovskites, SrMn1−xFexO3−δ (x=1/3, 1/2, 2/3) | 2.5 | 29 | Citations (PDF) |
| 297 | Investigations of Sr3Fe2−xMnxO7−δ the n=2 Ruddlesden–Popper phases with d3/d4 interactions | 0.9 | 37 | Citations (PDF) |
| 298 | Accelerating Discovery of Solid‐State Thin‐Film Metal Dealloying for 3D Nanoarchitecture Materials Design through Laser Thermal Gradient Treatment | 7.3 | 3 | Citations (PDF) |
| 299 | Amine Structure Governs Corrosion Rates of Copper Catalysts in Electrochemical Reactive Capture of CO2 | 2.3 | 7 | Citations (PDF) |
| 300 | Role of Salt Concentration on Interphase Dynamics and Chemistry of Silicon Anodes during Electrochemical Cycling | 3.9 | 0 | Citations (PDF) |
| 301 | Electrolytes that reduce electro-osmotic drag improve fast charging of lithium-ion batteries | 26.1 | 60 | Citations (PDF) |
| 302 | Effects of Microstructure on Li-Ion Dynamics in Twin Screw Extruded Cathodes | 0.0 | 0 | Citations (PDF) |
| 303 | Irreversible Multielement Diffusion and the Resulting Compositional Flexibility of Li
<sub>7-3x</sub>
Al
<sub>x</sub>
La
<sub>3</sub>
Zr
<sub>2</sub>
O
<sub>12</sub> | 0.0 | 0 | Citations (PDF) |
| 304 | Solid‐State Prealkylation of Electrode Architectures (SPEAR): Direct Control of Prelithiation Levels in Silicon Anodes and Electrochemical Cycling | 4.1 | 3 | Citations (PDF) |
| 305 | Demonstration of the Reproducibility Challenges in the Sintering Behavior of Lithium‐Stuffed Garnets in Scaling up Synthesis | 4.1 | 2 | Citations (PDF) |
| 306 | A Simple Approach for Operando Interface Probing for Batteries: Combining Scanning APXPS with Spectroscopic Recognition | 5.5 | 0 | Citations (PDF) |
| 307 | Mass spectral molecular mapping shows benefits of thermal evaporation in prelithiated silicon-based electrodes | 3.6 | 1 | Citations (PDF) |
| 308 | Accelerating battery materials discovery with an agentic AI for automated XPS analysis integrating physical constraints and chemometrics | 6.1 | 0 | Citations (PDF) |
| 309 | Solid-State Prealkylation of Electrode Architectures (SPEAR): Direct Control of Prelithiation Levels In Silicon Anodes and Electrochemical Cycling | 0.0 | 0 | Citations (PDF) |