1 - 6 |
Pre-concentration and in situ electrochemical sensing of 1-hydroxypyrene on an electrodeposited poly(3-methylthiophene) film modified electrode Shen XF, Cui Y, Pang YH, Qian H |
7 - 10 |
Atomic force microscopy of the dissolution of cubic Pt nanoparticle on a carbon substrate Hoshi N, Nakamura M, Goto C, Kikuchi H |
11 - 18 |
Activation of laccase bioelectrocatalysis of O-2 reduction to H2O by carbon nanoparticles Jensen UB, Vagin M, Koroleva O, Sutherland DS, Besenbacher F, Ferapontova EE |
19 - 23 |
Coumaric acid degradation by electro-Fenton process Elaoud SC, Panizza M, Cerisola G, Mhiri T |
24 - 29 |
The electrochemical characteristics of Ag2S and its nanocomposite anodes for Li-ion batteries Hwa Y, Park CM, Sohn HJ |
30 - 37 |
Simultaneous electrochemical detection of the catecholamines and ascorbic acid at PEDOT/S-beta-CD modified gold electrodes Colleran JJ, Breslin CB |
38 - 47 |
LSV/CV modelling of electrochemical reactions with interfacial CPE behaviour, using the generalised Mittag-Leffler function Montella C |
48 - 53 |
Asymmetric Marcus theory: Application to electrode kinetics Laborda E, Henstridge MC, Compton RG |
54 - 58 |
Perovskite nanoparticles LaNi0.5Ti0.5O3 modified carbon paste electrode as a sensor for electrooxidation and detection of amino acids Wang YL, Luo LQ, Ding YP, Zhang X, Xu YH, Liu X |
59 - 65 |
Kinetics of Sn(II) reduction in acid sulphate solutions containing gluconic acid Survila A, Mockus Z, Kanapeckaite S, Stalnionis G |
66 - 75 |
Electrochemical behavior of poly (naphthol green B)-film modified carbon paste electrode and its application for the determination of dopamine and uric acid Chitravathi S, Swamy BEK, Mamatha GP, Sherigara BS |
76 - 84 |
Specific adsorption of Cl-, Br-, and I- ions on liquid Ga electrode from N-methylformamide solutions Emets VV, Damaskin BB |