All Stories

  1. A review of the rational interfacial designs and characterizations for solid‐state lithium/sulfur cells
  2. Effects of Photochemical Oxidation of the Carbonaceous Additives on Li–S Cell Performance
  3. Nitrogen-Doped Graphene Quantum Dots: Sulfiphilic Additives for the High-Performance Li–S Cells
  4. Nanostructured Sulfur and Sulfides for Advanced Lithium/Sulfur Cells
  5. Direct Visualization of Lithium Polysulfides and Their Suppression in Liquid Electrolyte
  6. A sustainable sulfur–carbonaceous composite electrode toward high specific energy rechargeable cells
  7. Three-Dimensionally Aligned Sulfur Electrodes by Directional Freeze Tape Casting
  8. Tracking the Chemical and Structural Evolution of the TiS2 Electrode in the Lithium-Ion Cell Using Operando X-ray Absorption Spectroscopy
  9. Aqueous-Processable Redox-Active Supramolecular Polymer Binders for Advanced Lithium/Sulfur Cells
  10. Electrochemical Reaction Mechanism of the MoS2 Electrode in a Lithium-Ion Cell Revealed by in Situ and Operando X-ray Absorption Spectroscopy
  11. Sulfur deposition process for sulfur-graphene oxide composites in Li/S Cells
  12. Method for Creation of Fine Sulfur Particles with Graphene Oxide for Lithium/Sulfur Cells
  13. Freeze-Dried Sulfur–Graphene Oxide–Carbon Nanotube Nanocomposite for High Sulfur-Loading Lithium/Sulfur Cells
  14. (Invited) High Lithium Sulfide-Loading Electrode for Practical Li/S Cells
  15. Revealing the Electrochemical Charging Mechanism of Nanosized Li2S by in Situ and Operando X-ray Absorption Spectroscopy
  16. Understanding the function of cetyltrimethyl ammonium bromide in lithium/sulfur cells
  17. Effects of Solvents on the Electrochemical Performance of LiFePO4 /C Composite Electrodes
  18. Redox-Active Supramolecular Polymer Binders for Lithium–Sulfur Batteries That Adapt Their Transport Properties in Operando
  19. Polypyrrole/TiO2 nanotube arrays with coaxial heterogeneous structure as sulfur hosts for lithium sulfur batteries
  20. Numerical and Experimental Investigation of Performance Characteristics of Lithium/Sulfur Cells
  21. Li2S nano spheres anchored to single-layered graphene as a high-performance cathode material for lithium/sulfur cells
  22. Correction to “X-ray Absorption Spectroscopic Characterization of the Synthesis Process: Revealing the Interactions in Cetyltrimethylammonium Bromide-Modified Sulfur–Graphene Oxide Nanocomposites”
  23. X-ray Absorption Spectroscopic Characterization of the Synthesis Process: Revealing the Interactions in Cetyltrimethylammonium Bromide-Modified Sulfur–Graphene Oxide Nanocomposites
  24. Electrochemical and Structural Investigation of the Mechanism of Irreversibility in Li3V2(PO4)3Cathodes
  25. A singular flexible cathode for room temperature sodium/sulfur battery
  26. X-ray Absorption Spectroscopy Characterization of a Li/S Cell
  27. Effects of cell construction parameters on the performance of lithium/sulfur cells
  28. A Conversation with Adam Heller
  29. Lithium Sulfide (Li2S)/Graphene Oxide Nanospheres with Conformal Carbon Coating as a High-Rate, Long-Life Cathode for Li/S Cells
  30. Review—Recent Progress in Electrocatalysts for Oxygen Reduction Suitable for Alkaline Anion Exchange Membrane Fuel Cells
  31. High-performance lithium/sulfur cells with a bi-functionally immobilized sulfur cathode
  32. Anodic Oxidation of COads Derived from Methanol on Pt Electrocatalysts Linked to the Bonding Type and Adsorption Site
  33. Comparisons of heat treatment on the electrochemical performance of different carbons for lithium-oxygen cells
  34. Durable Carbon-Coated Li2S Core–Shell Spheres for High Performance Lithium/Sulfur Cells
  35. Understanding the degradation mechanism of rechargeable lithium/sulfur cells: a comprehensive study of the sulfur–graphene oxide cathode after discharge–charge cycling
  36. A Long-Life, High-Rate Lithium/Sulfur Cell: A Multifaceted Approach to Enhancing Cell Performance
  37. Electrochemical Oxygen Reduction Behavior of Selectively Deposited Platinum Atoms on Gold Nanoparticles
  38. Lithium/sulfur batteries with high specific energy: old challenges and new opportunities
  39. Nanostructured Li2S–C Composites as Cathode Material for High-Energy Lithium/Sulfur Batteries
  40. Foreword
  41. Investigation into Electrochemical Oxygen Reduction on Platinum in Tetraethylammonium Hydroxide and Effect of Addition of Imidazole and 1,2,4-Triazole
  42. Nano-carbon/sulfur composite cathode materials with carbon nanofiber as electrical conductor for advanced secondary lithium/sulfur cells
  43. Porous carbon-sulfur composite cathode for lithium/sulfur cells
  44. Carbon nanofiber–sulfur composite cathode materials with different binders for secondary Li/S cells
  45. SnS2 nanoparticle loaded graphene nanocomposites for superior energy storage
  46. Nanoconic TiO2 hollow spheres: novel buffers architectured for high-capacity anode materials
  47. Graphene Oxide as a Sulfur Immobilizer in High Performance Lithium/Sulfur Cells
  48. Porous carbon nanofiber–sulfur composite electrodes for lithium/sulfur cells
  49. Electrochemical performance of TiO2 and NiO as fuel cell electrode additives
  50. Depth profile analysis of a cycled lithium ion manganese oxide battery electrode via the valence state of manganese, with soft X-ray emission spectroscopy
  51. Batteries for Electric and Hybrid-Electric Vehicles
  52. Structural and Electrochemical Investigation of Li(Ni[sub 0.4]Co[sub 0.15]Al[sub 0.05]Mn[sub 0.4])O[sub 2] Cathode Material
  53. Electro-oxidation kinetics of adsorbed CO on platinum electrocatalysts
  54. Rechargeable Li/LiFePO4 cells using N-methyl-N-butyl pyrrolidinium bis(trifluoromethane sulfonyl)imide–LiTFSI electrolyte incorporating polymer additives
  55. Site-Dependent 13C Chemical Shifts of CO Adsorbed on Pt Electrocatalysts
  56. N-Methyl-(n-butyl)pyrrolidinium bis(trifluoromethanesulfonyl)imide-LiTFSI–poly(ethylene glycol) dimethyl ether mixture as a Li/S cell electrolyte
  57. Characterization of N-Methyl-N-Butylpyrrolidinium Bis(trifluoromethanesulfonyl)imide-LiTFSI-Tetra(ethylene glycol) Dimethyl Ether Mixtures as a Li Metal Cell Electrolyte
  58. Characterizing electrocatalytic surfaces: Electrochemical and NMR studies of methanol and carbon monoxide on Pt/C
  59. Covalency Measurements via NMR in Lithium Metal Phosphates
  60. Structure and electrochemical characterization of LiNi0.3Co0.3Mn0.3Fe0.1O2 cathode for lithium secondary battery
  61. Lithium K(1s) synchrotron NEXAFS spectra of lithium-ion battery cathode, anode and electrolyte materials
  62. Characterization of LiCoO2 coated Li1.05Ni0.35Co0.25Mn0.4O2 cathode material for lithium secondary cells
  63. High-rate capable organic radical cathodes for lithium rechargeable batteries
  64. Cell properties for modified PTMA cathodes of organic radical batteries
  65. Al-laminated film packaged organic radical battery for high-power applications
  66. In Situ X-Ray Absorption Spectroscopic Study of Li[sub 1.05]Ni[sub 0.35]Co[sub 0.25]Mn[sub 0.4]O[sub 2] Cathode Material Coated with LiCoO[sub 2]
  67. Characterization of Electrospun PVdF Fiber-Based Polymer Electrolytes
  68. Electrochemical and spectroscopic measurements for stable nitroxyl radicals
  69. Characterization of La 0.8 Sr 0.2 Fe O 3 − δ and La 0.7 Sr 0.2 Fe O 3 − δ as a function of temperature by x-ray absorption spectroscopy
  70. Local structure of LiNi0.5Mn0.5O2 cathode material probed by in situ x-ray absorption spectroscopy
  71. In situ X-ray absorption spectroscopy—A probe of cathode materials for Li-ion cells
  72. An effective stochastic excitation strategy for finding elusive NMR signals from solids
  73. Lanthanide–Platinum Intermetallic Compounds as Anode Electrocatalysts for Direct Ethanol PEM Fuel Cells
  74. Lanthanide–Platinum Intermetallic Compounds as Anode Electrocatalysts for Direct Ethanol PEM Fuel Cells
  75. Preparation and Characterization of Li[sub 1.05][Ni[sub 0.35]Co[sub 025]Mn[sub 0.4]]O[sub 2] as a Cathode Material for Rechargeable Lithium Cells
  76. Investigation of particle isolation in Li-ion battery electrodes using 7Li NMR spectroscopy
  77. Structural investigations of LiFePO4 electrodes and in situ studies by Fe X-ray absorption spectroscopy
  78. In situ x-ray absorption spectroscopic study of the Li[Ni1∕3Co1∕3Mn1∕3]O2 cathode material
  79. Self-discharge of lithium–sulfur cells using stainless-steel current-collectors
  80. Layered Nickel Oxide-Based Cathodes for Lithium Cells: Analysis of Performance Loss Mechanisms
  81. Synchrotron X-Ray Absorption Study of LiFePO[sub 4] Electrodes
  82. X-ray absorption spectroscopy study of the LixFePO4cathode during cycling using a novel electrochemicalin situreaction cell
  83. Structural Investigations of LiFePO4 Electrodes by Fe X-ray Absorption Spectroscopy
  84. Batteries, Overview
  85. Cu[sub 2]Sb Thin-Film Electrodes Prepared by Pulsed Laser Deposition for Lithium Batteries
  86. Diagnostic Analysis of Electrodes from High-Power Lithium-Ion Cells Cycled under Different Conditions
  87. Mechanism of Lithium Insertion into Magnesium Silicide
  88. Influence of Substitution on the Structure and Electrochemistry of Layered Manganese Oxides
  89. Electrochemicalin situreaction cell for X-ray scattering, diffraction and spectroscopy
  90. Amorphous and nanocrystalline Mg2Si thin-film electrodes
  91. Sulfur-Doped Aluminum-Substituted Manganese Oxide Spinels for Lithium-Ion Battery Applications
  92. Electrochemical Studies of Nanoncrystalline Mg[sub 2]Si Thin Film Electrodes Prepared by Pulsed Laser Deposition
  93. An Electrochemical and XRD Study of Lithium Insertion into Mechanically Alloyed Magnesium Stannide
  94. Origin of chemical shift of manganese in lithium battery electrode materials—a comparison of hard and soft X-ray techniques
  95. Direct Electroplating of Lithium Cobalt Oxide Film on Platinum Substrate in 100°–200°C Aqueous Solution
  96. Magnesium silicide as a negative electrode material for lithium-ion batteries
  97. 7Li NMR Studies of Chemically-Delithiated Li1-xCoO2
  98. Hyperfine Fields at the Li Site in LiFePO4-Type Olivine Materials for Lithium Rechargeable Batteries:  A 7Li MAS NMR and SQUID Study
  99. The Lithium/Sulfur Rechargeable Cell
  100. The Influence of Covalence on Capacity Retention in Metal-Substituted Spinels
  101. A [sup 7]Li NMR Study of Capacity Fade in Metal-Substituted Lithium Manganese Oxide Spinels
  102. [sup 7]Li and [sup 31]P Magic Angle Spinning Nuclear Magnetic Resonance of LiFePO[sub 4]-Type Materials
  103. Impedance Studies of the Thin Film LiMn[sub 2]O[sub 4]/Electrolyte Interface
  104. Electrochemical characteristics of Pt–WO3/C and Pt–TiO2/C electrocatalysts in a polymer electrolyte fuel cell
  105. In situ anomalous small angle X-ray scattering and absorption on an operating rechargeable lithium ion battery cell
  106. A [sup 7]Li Nuclear Magnetic Resonance Study of Metal-Substituted Lithium Manganese Oxide Spinels
  107. Nuclear Magnetic Resonance and Voltammetry Studies of Carbon Monoxide Adsorption and Oxidation on a Carbon-Supported Platinum Fuel Cell Electrocatalyst
  108. A [sup 7]Li Nuclear Magnetic Resonance Study of Metal-Substituted Lithium Manganese Oxide Spinels [Journal of The Electrochemical Society, 148, A951 (2001)]
  109. Diagnostic Characterization of High Power Lithium-Ion Batteries for Use in Hybrid Electric Vehicles
  110. Fuel Cells
  111. Electronic Structure of Chemically-Prepared LixMn2O4 Determined by Mn X-ray Absorption and Emission Spectroscopies
  112. Electrochemical performance of lithium/sulfur cells with three different polymer electrolytes
  113. Correlating Electronic Structure with Cycling Performance of Substituted LiMn2O4Electrode Materials:  A Study Using the Techniques of Soft X-ray Absorption and Emission
  114. Investigation of anion adsorption on platinum electrodes in aqueous media by probe beam deflection
  115. Structural Investigations of Li[sub 1.5+x]Na[sub 0.5]MnO[sub 2.85]I[sub 0.12] Electrodes by Mn X-Ray Absorption Near Edge Spectroscopy
  116. Chapter 6. Electrochemical energy storage
  117. Electrochemical Studies of Substituted Spinel Thin Films
  118. Supertransferred Hyperfine Fields at7Li:  Variable Temperature7Li NMR Studies of LiMn2O4-Based Spinels
  119. Characterization of pulsed laser-deposited LiMn2O4 thin films for rechargeable lithium batteries
  120. Investigations of a New Family of Alkaline−Fluoride−Carbonate Electrolytes for Zinc/Nickel Oxide Cells
  121. Cyclic Voltammetry of Pulsed Laser Deposited Li[sub x]Mn[sub 2]O[sub 4] Thin Films
  122. Mass Transport in Gas-Diffusion Electrodes: A Diagnostic Tool for Fuel-Cell Cathodes
  123. FTIR spectroscopy of metal oxide insertion materials: Analysis of LixMn2O4 spinel electrodes
  124. Announcement—Refereeing policy
  125. Announcement—refereeing policy
  126. Novel Nanodisperse Composite Cathode for Rechargeable Lithium/Polymer Batteries
  127. Thermal Treatment of La[sub 0.6]Ca[sub 0.4]CoO[sub 3] Perovskites for Bifunctional Air Electrodes
  128. Corrigendum to “ftir characterization of peo + lin( cf3so2) 2 electrolytes”
  129. Energy conversion & storage program. 1995 annual report
  130. FTIR characterization of PEO + LiN(CF3SO2)2 electrolytes
  131. Development of lightweight nickel electrodes for zinc/nickel oxide cells
  132. Quantitative Solid-State NMR Spectra of CO Adsorbed from Aqueous Solution onto a Commercial Electrode
  133. Electrochemical Behavior of LiMn[sub 2]O[sub 4] and LiCoO[sub 2] Thin Films Produced with Pulsed Laser Deposition
  134. FTIR Spectroscopy of Metal Oxide Insertion Electrodes
  135. Infrared Photothermal Deflection Spectroscopy: A New Probe for the Investigation of Electrochemical Interfaces
  136. Sodium/Phosphorus-Sulfur Cells
  137. Sodium/Phosphorus-Sulfur Cells
  138. Steady-state model for an oxygen fuel cell electrode with an aqueous carbonate electrolyte
  139. Application of probe beam deflection to study the electrooxidation of copper in alkaline media
  140. Degradation mechanisms of nickel oxide electrodes in zinc/nickel oxide cells with low-zinc-solubility electrolytes
  141. Energy conversion & storage program. 1994 annual report
  142. Direct Anodic Oxidation of Methanol on Supported Platinum/Ruthenium Catalyst in Aqueous Cesium Carbonate
  143. Visual Observations of Early Shape Changes in a Zinc/Nickel Oxide Cell
  144. Electro-oxidation of small organic molecules on well-characterized PtRu alloys
  145. Energy Conversion & Storage Program, 1993 annual report
  146. Laboratory-scale evaluation of secondary alkaline zinc batteries for electric vehicles
  147. The effect of zinc ions on the platinum electrode in alkaline solutions
  148. Carbon monoxide electrooxidation on well-characterized platinum-ruthenium alloys
  149. Temperature-Dependent Methanol Electro-Oxidation on Well-Characterized Pt-Ru Alloys
  150. THE PLANARITY PROBLEM FOR SIGNED GAUSS WORDS
  151. Effect of the supporting electrolyte and beam diameter on probe beam deflection experiments
  152. Methanol electrooxidation on well-characterized platinum-ruthenium bulk alloys
  153. LEIS and AES on sputtered and annealed polycrystalline Pt-Ru bulk alloys
  154. Low-Zinc-Solubility Electrolytes for Use in Zinc/Nickel Oxide Cells
  155. The Dependence of Aqueous Sulfur-Polysulfide Redox Potential on Electrolyte Composition and Temperature
  156. Development of long-lived high-performance zinc-calcium/nickel oxide cells
  157. Aqueous polysulphide flow-through electrodes: Effects of electrocatalyst and electrolyte composition on performance
  158. Energy Conversion and Storage Program
  159. Investigation of low-zinc-solubility electrodes and electrolytes in zinc/silver oxide cells
  160. Mechanistic investigations of redox polymer-coated electrodes using probe-beam deflection and cyclic voltammetry
  161. Experimental and Theoretical Study of Concentration Distributions in a Model Pore Electrode
  162. Experimental and Theoretical Study of Concentration Distributions in a Model Pore Electrode
  163. The Secondary Alkaline Zinc Electrode
  164. Current Density and ZnO Precipitation-Dissolution Distributions in Zn-ZnO Porous Electrodes and Their Effect on Material Redistribution: A Two-Dimensional Mathematical Model
  165. Fuel Cell Cathode Studies in Aqueous K[sub 2]CO[sub 3] and KOH
  166. Oxygen Reduction on Pt in Aqueous K[sub 2]CO[sub 3] and KOH
  167. Zinc Electrode Rest Potentials in Concentrated KOH-K[sub 2]Zn(OH)[sub 4] Electrolytes
  168. Solution processes in photoelectrochemical cells
  169. Response to “Comment on ‘Licht's Comment on Kinetics of Aqueous Polysulfide Solutions, Part I’” [J. Electrochem. Soc., 133, 2510]
  170. The corrosion of some metals in sulfur-polysulfide melts
  171. The effect of pulse charging on the cycle-life performance of zinc/nickel oxide cells
  172. The reaction order for oxygen reduction in TFMSA on Pt
  173. Kinetics of Aqueous Polysulfide Solutions
  174. Probe Beam Deflection for in situ Measurements of Concentration and Spectroscopic Behavior during Copper Oxidation and Reduction
  175. Kinetics of Aqueous Polysulfide Solutions
  176. Kinetics of Aqueous Polysulfide Solutions
  177. Voltammetry of Lithium Polysulfides at Metal Electrodes
  178. Voltammetry of Sodium Polysulfides at Metal Electrodes
  179. ZINC ELECTRODE CYCLE-LIFE PERFORMANCE IN ALKALINE ELECTROLYTES HAVING REDUCED ZINC SPECIES SOLUBILITY
  180. ZINC ELECTRODE CYCLE-LIFE PERFORMANCE IN ALKALINE ELECTROLYTES HAVING REDUCED ZINC SPECIES SOLUBILITY
  181. Oxygen Reduction in Tetrafluoroethane-1,2-Disulfonic Acid
  182. Computer-controlled multiple-channel system for electrochemical experiments
  183. Batteries
  184. Batteries of the Future for Vehicle Applications
  185. Future Trends in Advanced Batteries for Automobile Propulsion
  186. Secondary Batteries—New Batteries: High Temperature
  187. Electrochemical Power for Transportation
  188. ENERGY& ENVIRONMENT DIVISION ANNUAL REPORT 1979
  189. Requirements of Battery Systems
  190. Compatibility of Aluminum Nitride in Environments Representative of High Temperature Cells
  191. An Evaluation of Alternative Power Sources for Low-Emission Automobiles
  192. Physics Opportunities in Electrochemical Energy Conversion
  193. Phase Equilibria in Lithium-Chalcogen Systems
  194. Phase Diagram of the Pseudoternary System Li[sub 2]Se-Se-(LiBr-RbBr Eutectic)
  195. Thermodynamic Studies of the Lithium-Selenium System by an EMF Method
  196. Phase Equilibria in Lithium-Chalcogen Systems
  197. Structural studies of magnesium halide-potassium halide melts by Raman spectroscopy
  198. Phase Equilibria in Lithium-Chalcogen Systems
  199. Raman Spectra of Fused Carbonates
  200. Phase diagrams of the systems LiI-KI and LiI-RbI
  201. Raman spectrum and vibrational analysis for gaseous aluminum chloride
  202. High-Temperature Batteries
  203. Increased irreversibility caused by composition changes in fuel cells
  204. The Performance of Direct Ammonia Fuel Cells
  205. Secondary Cells with Lithium Anodes and Immobilized Fused-Salt Electrolytes
  206. Ammonia–Oxygen Fuel Cell
  207. Electrocatalysts for the Direct Electrochemical Oxidation of n-Octane in Fuel Cells
  208. The Kinetics of Adsorption, Surface Reaction, and Electrochemical Oxidation of Propane on Platinum in Hydrofluoric Acid
  209. Molten and Solid Lithium Hydride as an Ionized Solvent for Other Ionic Salts
  210. Anodic Oxidation and Molecular Structure: Influence on Performance of Normal Saturated Hydrocarbons in Fuel Cells
  211. The Kinetics of Propane Adsorption on Platinum in Hydrofluoric Acid
  212. The Transport of Hydrogen to Cylindrical Anodes in Stirred Electrolytes
  213. High Activity Platinum Electrocatalysts for the Direct Anodic Oxidation of Saturated Hydrocarbons
  214. ``Hydrogen Overvoltage and Electrode Materials.'' Comments
  215. High-Performance Hydrocarbon Fuel Cells with Fluoride Electrolytes
  216. Purification and preparation of some caesium compounds
  217. Hydrocarbon Fuel Cells with Fluoride Electrolytes
  218. Sensitive Voltage Measurement and Recording System
  219. Carbon Deposition Boundaries in the CHO System at Several Pressures.
  220. A Methanol Fuel Cell with an Invariant Alkaline Electrolyte
  221. Thermodynamics of Hydrocarbon Fuel Cells
  222. Sensitive Thermal Analysis Establishing Formation of the Incongruently Melting Compound LiNaCO3
  223. Performance of fractional watt ion exchange membrane fuel cells
  224. Macroscopic mixing in fluidization
  225. Longitudinal mixing in fluidization
  226. Longitudinal mixing in packed beds
  227. Kinetics of the Hydrolysis of Acetyl Chloride
  228. Velocity Profiles in Packed and Fluidized Beds