1 - 5 |
Electrochemical reduction of 2,4-dichloro-1-(4-chloro-2-methoxyphenoxy)benzene (methyl triclosan) at glassy carbon cathodes in dimethylformamide Peverly AA, Dresbach TL, Knust KN, Koss TF, Longmire MK, Peters DG |
6 - 13 |
Electrochemical lithiation of Si modified TiO2 nanotube arrays, investigated in ionic liquid electrolyte Ivanov S, Grieseler R, Cheng L, Schaaf P, Bund A |
14 - 19 |
The fabrication of a Co (II) complex and multi-walled carbon nanotubes modified glass carbon electrode, and its application for the determination of dopamine Yang LL, Li X, Xiong Y, Liu X, Li XY, Wang MM, Yan SL, Alshahrani LAM, Liu P, Zhang CC |
20 - 27 |
Graphene nanosheets functionalized with 4-aminothiophenol as a stable support for the oxidation of formic acid based on self-supported Pd-nanoclusters via galvanic replacement from Cu2O nanocubes Ensafi AA, Jafari-Asl M, Rezaei B |
28 - 35 |
Electrochemical oxygen reduction at soft interfaces catalyzed by the transfer of hydrated lithium cations Deng HQ, Stockmann TJ, Peljo P, Opallo M, Girault HH |
36 - 42 |
Microwave-assisted hydrothermal synthesis of Au NPs-Graphene composites for H2O2 detection Liu H, Su X, Duan CY, Dong XN, Zhou SL, Zhu ZF |
43 - 48 |
Voltammetric behaviour of ferrocene in olive oils mixed with a phosphonium-based ionic liquid Baldo MA, Oliveri P, Simonetti R, Daniele S |
49 - 52 |
Determination of Fe(III) in wine samples using a ruthenium oxide hexacyanoferrate modified microelectrode Pena RC, de Souza APR, Bertotti M |
53 - 59 |
Comparison of electrochemical property between multiwalled carbon nanotubes and porous graphitized carbon monolith modified glassy carbon electrode for the simultaneous determination of ascorbic acid and uric acid Mukdasai S, Moore E, Glennon JD, He XY, Nesterenko EP, Nesterenko PN, Paull B, Pravda M, Srijaranai S |
60 - 66 |
Al-doped Li2ZnTi3O8 as an effective anode material for lithium-ion batteries with good rate capabilities Tang HQ, Zhu JT, Tang ZY, Ma CX |
67 - 71 |
A novel enzyme-free hydrogen peroxide sensor based on polyethylenimine-grafted graphene oxide-Pd particles modified electrode Xu CY, Zhang LP, Liu L, Shi YF, Wang HJ, Wang XB, Wang FF, Yuan BQ, Zhang DJ |
72 - 77 |
Electroanalysis of nitrobenzene derivatives and nitrite ions using silver nanoparticles deposited silica spheres modified electrode Rameshkumar P, Ramaraj R |
78 - 83 |
Ascorbic acid-triggered electrochemical-chemical-chemical redox cycling for design of enzyme-amplified electrochemical biosensors on self-assembled monolayer-covered gold electrodes Xia N, Liu L, Wu RJ, Liu HP, Li SJ, Hao YQ |
84 - 92 |
Efficient synthesis of graphene-multiwalled carbon nanotubes nanocomposite and its application in electrochemical sensing of diethylstilbestrol Zhu XF, Lu LM, Duan XM, Zhang KX, Xu JK, Hu DF, Sun H, Dong LQ, Gao YS, Wu Y |
93 - 99 |
Microstructure and composition of pulse plated Re-Ni alloys on a rotating cylinder electrode Rosen BA, Gileadi E, Eliaz N |
100 - 106 |
Chronopotentiometry of pure electrolytes with anion-exchange donnan exclusion membranes Crespo GA, Afshar MG, Bakker E |
107 - 111 |
Ion transfer kinetics at the micro-interface between two immiscible electrolyte solutions investigated by electrochemical impedance spectroscopy and steady-state voltammetry Silver BR, Holub K, Marecek V |
112 - 118 |
Rapid optimization of a lactate biosensor design using soft probes scanning electrochemical microscopy Pribil MM, Cortes-Salazar F, Andreyev EA, Lesch A, Karyakina EE, Voronin OG, Girault HH, Karyakin AA |
119 - 127 |
Dimethyl sulfite as an additive for lithium bis(oxalate)borate/gamma-Butyrolacton electrolyte to improve the performance of Li-ion battery Ping P, Wang QS, Kong DP, Zhang CP, Sun JH, Chen CH |
128 - 132 |
Comparison of morphology and electrochemical behavior between PbSbO2Cl and PbCl2/Sb4O5Cl2 Li P, Shu J, Shao LY, Lin XT, Wu KQ, Shui M, Wang DJ, Long NB, Ren YL |
133 - 138 |
Electrogenerated chemiluminescence biosensing method for methyltransferase activity using tris(1, 10-phenanthroline) ruthenium-assembled graphene oxide Yan Z, Li Y, Zheng JB, Zhou M |
139 - 144 |
DNA electrochemical biosensor for metallic drugs at physiological conditions Santiago-Lopez AJ, Vera JL, Melendez E |
145 - 152 |
Active chlorine species electrogenerated on Ti/Ru0.3Ti0.7O2 surface: Electrochemical behavior, concentration determination and their application de Moura DC, de Araujo CKC, Zanta CLPS, Salazar R, Martinez-Huitle CA |
153 - 156 |
The influence of surface crystallography on the interfacial behaviour of tetrabutylammonium cations at Au(100) and Au(111) electrodes Skoluda P |
157 - 162 |
In-situ transmittance measurement for characterization of organic additives in Cu electroless deposition Park KJ, Lim T, Kim MJ, Kim KH, Hwang SM, Kim JJ |
163 - 171 |
Determination of carbofuran and diuron in FIA system using electrochemical sensor modified with organometallic complexes and graphene oxide Wong A, Sotomayor MDT |
172 - 178 |
Graphite-castor oil polyurethane composite electrode surfaces - AFM morphological and electrochemical characterisation Chiorcea-Paquim AM, Diculescu VC, Cervini P, Cavalheiro ETG, Brett AMO |
179 - 183 |
A novel electrochemical and chromogenic guest-responsive anisidine-based chemosensor for transition metallic cations Hammami A, Rabti A, Raouafi N |