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Electrochemical Behaviour of Europium-Ferrocene Derivative Complex Chemi cally Modified Electrodes
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作者 YANG Qing-hua, YE Xianzeng, HUANG Chun-hui (College of Chemical and Molecular Engineering, Peking University, Beijing 100871, China) 《Journal of Rare Earths》 SCIE EI CAS CSCD 2000年第1期13-13,共1页
Electrochemical behaviours of Europium-ferrocene derivative complex chemically modified electrodes were studied in the paper. Various factors which affect the voltammetry of the thin film modified electrodes, and the... Electrochemical behaviours of Europium-ferrocene derivative complex chemically modified electrodes were studied in the paper. Various factors which affect the voltammetry of the thin film modified electrodes, and the charge transport process of the thin film electrode were discussed. Size of the hydrated anion (counter ion), concentration of the electrolyte, swelling property of the film in the solvent and thickness of the film have significant effects on the voltammetry of the thin film electrode. Electrochemical behaviours of europium-ferrocene derivative compelx chemically modified electrode were studied in an aqueous solution. When scan ning between 0-0.8 V (vs. SCE), experimental results indicate that the chemically modified electrode has good stability and reproducibility. The apparent rate constant of electrode reaction is deteminedd to be 6.7×10-1 s-1. 展开更多
关键词 rare earths europium. ferrocene derivative coordination. chemically modified electrode thin film electrode
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Chemical Self-Assembly of Graphene Sheets 被引量:4
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作者 Hailiang Wang Xinran Wang +1 位作者 Xiaolin Li Hongjie Dai 《Nano Research》 SCIE EI CSCD 2009年第4期336-342,共7页
Chemically derived and noncovalently functionalized graphene sheets(GS)were found to self-assemble onto patterned gold structures via electrostatic interactions between the functional groups and the gold surfaces.This... Chemically derived and noncovalently functionalized graphene sheets(GS)were found to self-assemble onto patterned gold structures via electrostatic interactions between the functional groups and the gold surfaces.This afforded regular arrays of single graphene sheets on large substrates,which were characterized by scanning electron microscopy(SEM),Auger microscopy imaging,and Raman spectroscopy.This represents the fi rst time that self-assembly has been used to produce on-substrate and fully-suspended graphene electrical devices.Molecular coatings on the GS were removed by high current“electrical annealing”,which restored the high electrical conductance and Dirac point of the GS.Molecular sensors for highly sensitive gas detection using the self-assembled GS devices are demonstrated. 展开更多
关键词 chemically derived graphene sheets SELF-ASSEMBLY graphene devices electrical annealing
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