1 - 6 |
Choice of Experimental-Method Induced by Structural-Properties of Mechanisms Berthier F, Diard JP, Montella C, Pronzato L, Walter E |
7 - 12 |
Potential Oscillations During Methanol Oxidation at Pt-Electrodes .1. Experimental Conditions Krausa M, Vielstich W |
13 - 20 |
Amperometric Enzyme Electrodes .8. Enzyme Electrodes for Choline Plus Betaine Aldehyde and Hypoxanthine Plus Xanthine - A Kinetic-Model for a One-Enzyme Sequential Substrate System Albery WJ, Driscoll BJ, Kalia YN |
21 - 27 |
Specific Features of Hydrogen Sorption by Palladium Dispersed Forms at Alpha-Phase Potentials Podlovchenko BI, Kolyadko EA, Lu SG |
29 - 39 |
Iron/Sulphur Center Mediated Photoinduced Charge-Transfer at (100)-Oriented Pyrite Surfaces Elhalim AM, Alonsovante N, Tributsch H |
41 - 46 |
The Direct Electrochemistry of Cryo-Hydrogel Immobilized Myoglobin at a Glassy-Carbon Electrode Niu JJ, Guo YZ, Dong SJ |
47 - 52 |
Synthesis and Characterization of Oligonaphthylamines Schmitz BK, Euler WB |
53 - 60 |
Photoelectrochemical Study of Potentiodynamically Anodized H-2-Reduced Pbtio3+pbo Mixed-Oxide Electrode in 0.1-M-Naoh+0.1-M-Na2SO4 Krishna KM, Sharon M, Mishra MK |
61 - 70 |
Chemical Pretreatment of Platinum by Aromatic and Aliphatic Thiols - Effect on Polybithiophene Electrodeposition and Properties Mekhalif Z, Lang P, Garnier F |
71 - 77 |
Electrodeposition of Copper in Quasi-2 Dimensions from Solutions Containing Sodium-Sulfate Atchison SN, Burford RP, Whitby CP, Hibbert DB |
79 - 82 |
Study of Laser-Electrochemical Doping of Poly(N-Vinylcarbazole) Li YL, Yang JH, Xu JR |
83 - 89 |
STM Investigation of Hopg Superperiodic Features Caused by Electrochemical Pretreatment Zhang JD, Wang EK |
91 - 96 |
Effect of Lanthanide Ions on the Electrodeposition of Cobalt and Manganese Oxides Matsumoto Y, Ohmura H, Goto T |
97 - 103 |
Cyclic Voltammetry and Differential Cyclic Voltabsorptometry of Soluble Oligothiophenes - Evidence for a 4-Fold Charged Pi-Dimer in Duodecithiophene Nessakh B, Horowitz G, Garnier F, Deloffre F, Srivastava P, Yassar A |
105 - 113 |
Studies of Platinum Electroplating Baths .3. The Electrochemistry of Pt(NH3)(4-X)(H2O)(X)(2+) and Ptcl4-X(H2O)(X)((2-X)-) Gregory AJ, Levason W, Noftle RE, Lepenven R, Pletcher D |
115 - 120 |
Impedance Analysis of Graphite Plus Polyethylene and Graphite Plus Epoxy Composite Electrodes Navarrolaboulais J, Trijueque J, Garciajareno JJ, Vicente F |
121 - 125 |
Electrocatalytic Reduction of Some Imino Compounds on a Glassy-Carbon Electrode Electrochemically Modified with a New Copper-SALEN Complex Azzem MA, Mohamed ZF, Fahmy HM |
127 - 133 |
Oxygen Reduction on Iron .7. Temperature-Dependence of Oxygen Reduction on Passivated Iron in Alkaline-Solutions Gojkovic SL, Zecevic SK, Drazic DM |
135 - 139 |
Investigation of the Reduction-Mechanism of the NAD(+) Model-Compound N’-Methyl Nicotinamide on Mercury-Electrodes in Strongly Acidic Solutions Prieto I, Angulo M, Mellado JM |
141 - 146 |
Ed Mechanisms - Electrodimerization of N’-Methyl Nicotinamide on Mercury-Electrodes in Aqueous-Solutions Angulo M, Prieto I, Mellado JM |
147 - 155 |
Sonoelectrochemistry - Transient Cavitation in Acetonitrile in the Neighborhood of a Polarized Electrode Klima J, Bernard C, Degrand C |
157 - 162 |
Compared Selectivities of Redox-Catalyzed and Direct Electrochemical Processes .1. Reactions in Which Product Selection Involves Competition Between Dimerization and First-Order Reactions Saveant JM, Severin MG, Isse AA |
163 - 167 |
PH-Dependent Redox Behavior of Asymmetric Viologens Delacey AL, Fernandez VM |
169 - 178 |
Simple Redox Reactions Studied Below the Melting-Point of Congruently Melting Electrolyte - (C4H9)(4)NF-Center-Dot-32H(2)O Opallo M |
179 - 184 |
Electroreduction of NAD(+) to Enzymatically Active NADH at Poly(Neutral Red) Modified Electrodes Karyakin AA, Bobrova OA, Karyakina EE |
185 - 196 |
Experimental and Theoretical Description of Potentiostatic Current Oscillations During H-2 Oxidation Wolf W, Lubke M, Koper MT, Krischer K, Eiswirth M, Ertl G |
197 - 206 |
Kinetics of Chloride-Ion Adsorption and the Mechanism of AgCl Layer Formation on the (111)-Face, (100)-Face and (110)-Face of Silver Jovic BM, Jovic VD, Drazic DM |
207 - 212 |
Surface-Diffusion Limited Desorption of Iodine on a Platinum-Electrode Thomas AE, Wieckowski A |
213 - 221 |
Studies on Adsorption Behavior of Sulfonate Surfactants on a Lead Electrode in Sulfuric-Acid Shi Z, Zhou YH, Cha CS |
223 - 228 |
Chronopotentiometry at the Dropping Mercury-Electrode When the Current Is a Power and/or Exponential Function of Time - Study of the 2nd Step of an Ee Mechanism with Widely Separated Standard Potentials Serna C, Gonzalez J, Molina A |
229 - 233 |
Investigation of Reduction Reaction of 2-Aminocyclopentene-1-Dithiocarboxylic Acid and Its Derivatives at Mercury-Electrodes Fotouhi L, Maleki N, Safavi A |
235 - 238 |
Conductance Behavior of Pyridoxine Hydrochloride and Propranolol Hydrochloride in Dimethylsulfoxide Plus Water at 25-Degrees-C Srivastava AK, Shivdas R |
239 - 241 |
Experimental-Analysis of Water Behavior in Nafion(R) Electrolyte Under Fuel-Cell Operation Watanabe M, Igarashi H, Uchida H, Hirasawa F |
243 - 243 |
Can Current Fluctuations Account for the Excess Heat Claims of Fleischmann and Pons (Vol 388, Pg 11, 1995) Holsthansen P, Britz D |