183 - 185 |
Brian Evans Conway Bockris JOM |
186 - 192 |
Linear sweep voltammetry at the tubular electrode: Theory of EC mechanisms Thompson M, Compton RG |
193 - 202 |
Deposition of mixed zinc oxide/lanthanide films by electrochemical precipitation: The ZnO/Er system Goux A, Pauporte T, Lincot D |
203 - 212 |
Hydrodynamic cryoelectrochemical ESR: The reduction of ortho-bromonitrobenzene in acetonitrile Wain AJ, Compton RG |
213 - 219 |
Electrochemical properties of organo-titanium substituted heteropolytungstate and its electrocatalytic reduction of nitrite Liu L, Tian L, Xu HD, Lu N |
220 - 225 |
Adsorption of tetraethylammonium ions on Bi(111) single crystal plane from solutions in ethanol Vaartnou M, Lust E |
226 - 234 |
Simultaneous voltammetric detection of dopamine and ascorbic acid using didodecyldimethylammonium bromide (DDAB) film-modified electrodes Chen SM, Chzo WY |
235 - 246 |
Synthesis and electrochromic properties of conducting copolymers of dioxocino- and dithiocino-quinoxalines with bithiophene Beyazyidirim S, Camurlu P, Yilmaz D, Gullu M, Toppare L |
247 - 253 |
The electrochemical reaction mechanism of arsenic deposition on an Au(111) electrode Jia Z, Simm AO, Dai X, Compton RG |
254 - 262 |
Mathematical modelling and numerical simulation of cyclic voltammetry at an electrode covered with an insulating film containing cylindrical micropores Chevallier FG, Jiang L, Jones TGJ, Compton RG |
263 - 268 |
Effect of potential cycling in basic solutions on the structure of Ni-Al layered double hydroxide films Roto R, Yu L, Villemure G |
269 - 275 |
Immobilization and electro-oxidation of calf thymus deoxyribonucleic acid at alkylamine modified carbon nanotube electrode and its interaction with promethazine hydrochloride Tang H, Chen JH, Cui KZ, Nie LH, Kuang YF, Yao SZ |
276 - 283 |
Label-free detection of DNA hybridization based on EIS investigation of conducting properties of functionalized polythiophene matrix Gautier C, Cougnon C, Pilard JF, Casse N |
284 - 292 |
Metal speciation dynamics in colloidal ligand dispersions. Part 2: Electrochemical lability Pinheiro JP, Minor M, van Leeuwen HP |
293 - 298 |
Reversible one-electron electro-reduction of O-2 to produce a stable superoxide (O-2(-)) catalyzed by adsorbed Co(II) hexadecafluoro-phthalocyanine in aqueous alkaline solution Song CJ, Zhang L, Zhang JJ |
299 - 307 |
In situ infrared spectroscopic and electrochemical study of hydrogen electro-oxidation on Pt electrode in sulfuric acid Kunimatsu K, Uchida H, Osawa M, Watanabe M |
308 - 313 |
Electrosynthesis of soluble polythiophene derivatives with high thermal stability Zhang Z, Tang H, Liang X, Shi GQ |
314 - 322 |
Electrochemical reduction of Rh(bpy)(3+)(3) at Hg/phosphate electrolyte interface Mandic Z, Gasparovic B, Weitner Z |
323 - 328 |
Calculation of the space charge in electrodeposition from a binary electrolyte Rosso M, Chazalviel JN, Chassaing E |
329 - 330 |
Comments on the paper by H. Shiroishi, Y. Ayato, K. Kunimatsu and T. Okada entitled "Study of adsorbed water on Pt during methanol oxidation by ATR-SEIRAS (surface-enhanced infrared absorption spectroscopy)" [J. Electroanal. Chem. 581 (2005) 132] Cuesta A |
331 - 332 |
Reply to the comments on the paper by H. Shiroishi, Y. Ayato, K. Kunimatsu and T. Okada entitled "Study of adsorbed water on Pt during methanol oxidation by ATR-SEIRAS (surface-enhanced infrared absorption spectroscopy)" [J. Electroanal. Chem. 581. (2005) 132] made by A Cuesta, Instituto de Quimica Fisica "Rocasolano", CSIC, C. Serrano, 119, E-28006, Madrid Shiroishi H, Ayato Y, Kunimatsu K, Okada T |
333 - 339 |
Multianalyte microphysiometry as a tool in metabolomics and systems biology Eklund SE, Snider RM, Wikswo J, Baudenbacher F, Prokop A, Cliffel DE |