3975 - 3980 |
Simulation in electrochemistry using the finite element method part 2: scanning electrochemical microscopy Nann T, Heinze Y |
3981 - 3989 |
Electrochemical noise analysis of O-2 evolution on PbO2 and PbO2-matrix composites containing Co or Ru oxides Huet F, Musiani M, Nogueira RP |
3991 - 3998 |
Preparation of porous PbO2 electrodes by electrochemical deposition of composites Casellato U, Cattarin S, Musiani M |
3999 - 4011 |
Anodisation of a Nb-Zr alloy Olsson COA, Landolt D |
4013 - 4019 |
Dissolution of hydrogen and the ratio of the dissolved hydrogen content to the produced hydrogen in electrolyzed water using SPE water electrolyzer Tanaka Y, Uchinashi S, Saihara Y, Kikuchi K, Okaya T, Ogumi Z |
4021 - 4031 |
A nonelectrochemical reductive deposition of ruthenium adatoms onto nanoparticle platinum: anode catalysts for a series of direct methanol fuel cells Cao DX, Bergens SH |
4033 - 4037 |
Possible use of ferrocyanide as a redox additive for prevention of electrolyte decomposition in overcharged nickel batteries Zhu XM, Yang HX, Ai XP |
4039 - 4048 |
Study by EQCM on the voltammetric electrogeneration of poly(neutral red). The effect of the pH and the nature of cations and anions on the electrochemistry of the films Benito D, Gabrielli C, Garcia-Jareno JJ, Keddam M, Perrot H, Vicente F |
4049 - 4060 |
The interaction of water-soluble iron porphyrins with DNA films and the electrocatalytic properties for inorganic and organic nitro compounds Chen SM, Chen SV |
4061 - 4067 |
Electrodeposition of Lu-Ni alloy thin films Li GR, Tong YX, Wang Y, Liu GK |
4069 - 4075 |
AC complex impedance measurement of comb-like type polyether electrolytes under high-pressure carbon dioxide Kwak GH, Tominaga Y, Asai S, Sumita M |
4077 - 4082 |
Electrocatalytic four-electron reductions of O-2 to H2O with cytochrome c oxidase model compounds Shin H, Lee DH, Kang C, Karlin KD |
4083 - 4088 |
Optimization of new voltammetric method for the determination of metallothionein El Hourch M, Dudoit A, Amiard JC |
4089 - 4095 |
Modeling current density distribution in electrochemical systems Georgiadou M |