All Stories

  1. Sodium-ion batteries: New opportunities beyond energy storage by lithium
  2. High-Energy Aqueous Lithium Batteries
  3. On the Theoretical Capacity/Energy of Lithium Batteries and Their Counterparts
  4. Graphene oxide membranes for electrochemical energy storage and conversion
  5. The mechanism of ultrafast supercapacitors
  6. Room-Temperature Performance of Poly(Ethylene Ether Carbonate)-Based Solid Polymer Electrolytes for All-Solid-State Lithium Batteries
  7. Electrochemical hydrogen storage: Opportunities for fuel storage, batteries, fuel cells, and supercapacitors
  8. Molybdenum diselenide (MoSe 2 ) for energy storage, catalysis, and optoelectronics
  9. The necessity of structural irregularities for the chemical applications of graphene
  10. Ordered mesoporous materials for lithium-ion batteries
  11. Synthesis and properties of polymerized ionic liquids
  12. Polyaniline supercapacitors
  13. Electrocatalysts for hydrogen evolution reaction
  14. Low voltage anode materials for lithium-ion batteries
  15. Lithium-Ion Batteries with High Rate Capabilities
  16. LiFePO 4 /C nanocomposites for lithium-ion batteries
  17. Ordered mesoporous carbon and its applications for electrochemical energy storage and conversion
  18. Cathode materials for lithium–sulfur batteries: a practical perspective
  19. Electrochemical energy storage by aluminum as a lightweight and cheap anode/charge carrier
  20. In pursuit of catalytic cathodes for lithium–oxygen batteries
  21. The rise of lithium–selenium batteries
  22. Tungsten dichalcogenides (WS2, WSe2, and WTe2): materials chemistry and applications
  23. Energy efficiency: a critically important but neglected factor in battery research
  24. Different roles of ionic liquids in lithium batteries
  25. Potassium Secondary Batteries
  26. Carbon nanotube-assisted electrodeposition. Part I: Battery performance of manganese oxide films electrodeposited at low current densities
  27. Carbon nanotube-assisted electrodeposition. Part II: Superior pseudo-capacitive behavior of manganese oxide film electrodeposited at high current densities
  28. Galvanodynamic synthesis of polyaniline: A flexible method for the deposition of electroactive materials
  29. Curly Graphene with Specious Interlayers Displaying Superior Capacity for Hydrogen Storage
  30. Morphological effects of Ni nanostructures on electropolymerization of aniline
  31. Nanostructured Conductive Polymers
  32. Initiating electropolymerization on graphene sheets in graphite oxide structure
  33. Comment on “A Linear Actuation of Polymeric Nanofibrous Bundle for Artificial Muscles”
  34. Comment on “Carbon nanowalls as material for electrochemical transducers” [Appl. Phys. Lett. 95, 014104 (2009)]
  35. Comments on “Li diffusion in LiNi0.5Mn0.5O2 thin film electrodes prepared by pulsed laser deposition” by Xia et al.
  36. Nanostructured Materials in Electrochemistry
  37. Inspecting plastic deformation of Pd by means of fractal geometry
  38. Effects of metal source in metal substitution of lithium manganese oxide spinel
  39. EFFECTS OF NANOSCALE SURFACE DEFECTS ON ELECTROPOLYMERIZATION
  40. Electrodeposition of smooth and adherent film of polypyrrole on lead electrode
  41. LIMITATIONS OF ELECTROCHEMICAL METHODS FOR SURFACE ANALYSIS AT SMALL FRACTALITY SCALES
  42. Bundled nanofibers of V-doped LiMn2O4 spinel
  43. Electrochemical properties of LiMn2O4 cathode material doped with an actinide
  44. Flower-like bundles of ZnO nanosheets as an intermediate between hollow nanosphere and nanoparticles
  45. Fractal geometry of texts: An initial application to the works of Shakespeare
  46. Significant Effect of Dopant Size on Nanoscale Fractal Structure of Polypyrrole Film
  47. Complicated surface structure of flower-like bunches of LiV0.1Mn1.9O4nanofibers
  48. High-yield synthesis of carbon nanotubes using a water-soluble catalyst support in catalytic chemical vapor deposition
  49. Polymerization of Aniline through Simultaneous Chemical and Electrochemical Routes
  50. Electrochemical synthesis of polypyrrole macro-tubes on aluminum substrate
  51. Electropolymerization of Aniline on Plastically Deformed Pd Surface: Structure at Micro- and Nano-Scale
  52. Catalytic Chemical Vapor Deposition Preparation of Multi-wall Carbon Nanotubes with Cone-like Heads
  53. Electrochemical polymerization of aniline in phosphoric acid
  54. Synthesis of nanostructured large particles of polyaniline
  55. Effect of Na diffusion on the formation of fibrous microcrystals of manganese oxide
  56. Rectangular structure of manganese oxide nanowires
  57. Auto-Release of Fe(CN)6 4- from Conductive Polymer at a Sensing System
  58. Comments on ‘Spurious potential dependence of diffusion coefficients in Li+ insertion electrodes measured with PITT’
  59. Quantitative surface analysis of plastic deformation of Pd electrodes in nanoscale
  60. Template-free preparation of bunches of aligned manganese oxide nanowires
  61. A simple synthesis of manganese oxide nanowires
  62. Influence of atomic-scale irregularities in fractal analysis of electrode surfaces
  63. Time-dependency of impedance spectroscopic studies of oscillatory systems
  64. Corrigendum to “Potassium secondary cell based on Prussian blue cathode” [J. Power Sources 126 (2004) 221–228]
  65. Electropolymerization of aniline onto passivated substrate and its application for preparation of enzyme-modified electrode
  66. Pulsed electrodeposition of soft magnetic CoNiFe films under centrifugal forces
  67. Electrochemical Properties of Lanthanum Hexacyanoferrate Particles Immobilized onto Electrode Surface by Au-Codeposition Method
  68. Fabrication of 5 V lithium rechargeable micro-battery
  69. Fabrication of all-solid-state thin-film secondary cells using hexacyanometallate-based electrode materials
  70. Improving Cyclability of 5 V Cathodes by Electrochemical Surface Modification
  71. LiMn2O4 electrode prepared by gold–titanium codeposition with improved cyclability
  72. Enhanced stability and conductivity of polypyrrole film prepared electrochemically in the presence of centrifugal forces
  73. Fractal studies of Au films deposited on liquid|liquid and liquid|gas interfaces
  74. Aluminum oxide as a multi-function agent for improving battery performance of LiMn2O4 cathode
  75. Potassium secondary cell based on Prussian blue cathode
  76. Electrochemical Behavior of Gallium Hexacyanoferrate Film Directly Modified Electrode in a Cool Environment
  77. Electrochemical Deposition and Modification of LiFePO[sub 4] for the Preparation of Cathode with Enhanced Battery Performance
  78. Fractal Dimension of Electrochemical Reactions
  79. Surface Modification of Thin-Film Based LiCoPO[sub 4] 5 V Cathode with Metal Oxide
  80. Electrochemical technique for the determination of fractal dimension of dental surfaces
  81. Erratum to “On the fractal study of LiMn2O4 electrode surface”
  82. Fractal study of Ni–Cr–Mo alloy for dental applications: effect of beryllium
  83. Diffusion of electrolytes in solution under gravitational forces
  84. Electrochemical Behavior and Enhanced Stability of a Thin Film of Prussian Blue Deposited under Magnetic Field
  85. Deposition of stable electroactive films of polynuclear cyanides onto silicon surface
  86. Electrochemical performance and cyclability of LiFe0.5Mn1.5O4 as a 5 V cathode material for lithium batteries
  87. Improving Cu metallization of Si by electrodeposition under centrifugal fields
  88. On the fractal study of LiMn2O4 electrode surface
  89. Variations of phenomenological coefficient of an electrochemical redox system in the course of cycling and aging
  90. 3D Deposition of LiMn2O4: enhancement of lithium battery performance
  91. On the Onsager’s phenomenological coefficient of Prussian blue electrochemical redox system
  92. A high-voltage solid-state secondary cell based on chromium hexacyanometallates
  93. Soft magnetic CoNiFe films electrodeposited under centrifugal forces
  94. pH sensor based on deposited film of lead oxide on aluminum substrate electrode
  95. Silver Hexacyanoferrate Film Directly Modified Electrode as a Potentiometric Sensor for Potassium Ion
  96. Electrocatalysis and Amperometric Detection of Hydrogen Peroxide at an Aluminum Microelectrode Modified with Cobalt Hexacyanoferrate Film
  97. Mixed-Metals Codeposition as a Novel Method for the Preparation of LiMn[sub 2]O[sub 4] Electrodes with Reduced Capacity Fades
  98. Erratum to “Fractal study of LiMn2O4 film electrode surface for lithium batteries application”
  99. Electrochemical behavior and electrocatalytic activity of a zinc hexacyanoferrate film directly modified electrode
  100. Fractal study of LiMn2O4 film electrode surface for lithium batteries application
  101. Effect of centrifugal fields on the solid-state film formation as applied to gold electrodeposits
  102. Enhanced stability of hexacyanoferrate-based modified electrodes prepared under centrifugal fields
  103. Aluminum as a suitable substrate for the deposition of conducting polymers: application to polyaniline and enzyme-modified electrode
  104. Glycerol biosensor based on glycerol dehydrogenase incorporated into polyaniline modified aluminum electrode using hexacyanoferrate as mediator
  105. Electrochemical behavior of thin-film LiMn2O4 electrode in aqueous media
  106. Aluminum electrode modified with manganese hexacyanoferrate as a chemical sensor for hydrogen peroxide
  107. CHEMICAL SENSOR BASED ON SILVER/SILVER SULFIDE MICROELECTRODE
  108. SILVER HEXACYANOFERRATE(II) FILM DIRECT MODIFIED ELECTRODE AS AMPEROMETRIC SENSOR FOR THE DETERMINATION OF SILVER