Sol−Gel-Derived Ceramic−Carbon Nanotube Nanocomposite Electrodes: Tunable Electrode Dimension and Potential Electrochemical Applications

Нанокомпозитные электроды керамика–углеродные нанотрубки, полученные методом золь-гель: регулируемая размерность электрода и потенциальные электрохимические приложения
Yi Chen, Lei Su, Kuanping Gong, Lanqun Mao, Yiming Yan, Meining Zhang, Shaoxiang Xiong
2004-10-05

ceramic-carbon nanotube nanocomposite electrodeselectrocatalytic detection of AA and GSH/GSSGmultiwalled carbon nanotubes (MWNTs)nanoelectrode ensemble (NEE)sol-gel-derived nanocomposite
Nanocomposite electrodes made of sol-gel-derived ceramic-carbon nanotube are fabricated by doping mutliwalled carbon nanotubes (MWNTs) into a silicate gel matrix. The electrochemical behavior and potential electrochemical applications of the ceramic-carbon nanotube nanocomposite electrodes (CCNNEs) are also studied. The as-prepared CCNNEs exhibit a tunable dimension ranging from conventional electrode to nanoelectrode ensemble (NEE), depending on the amount of the MWNT dispersed in the silica sol and finally doped within the gel matrix. A high content of the MWNT (i.e., higher than 1.5 mg/mL in the sol) leads to the formation of the CCNNE characteristic of an electrode of conventional dimension, while a low content (typically lower than 0.10 mg/mL) essentially yields the CCNNE like a nanoelectrode ensemble. The NEE is demonstrated to possess good electrocatalytic activity toward the oxidation of ascorbic acid (AA), and the CCNNE of conventional dimension is found to possess remarkable electrocatalytic activity toward the oxidation of glutathione (both reduced and oxidized forms, GSH and GSSG). These properties of the CCNNEs essentially offer a new electrochemical approach for the detection of AA, GSH, and GSSG. The possible essence of the tailor-made dimensions of the CCNNEs is also presented and discussed.
1
CCNNEs of conventional dimension (high MWNT content) exhibit remarkable electrocatalytic activity for oxidation of reduced and oxidized glutathione (GSH and GSSG).
2
NEEs (low MWNT content) show good electrocatalytic activity for oxidation of ascorbic acid (AA).
3
Sol-gel-derived ceramic-carbon nanotube nanocomposite electrodes (CCNNEs) are fabricated by doping multiwalled carbon nanotubes (MWNTs) into a silicate gel matrix.
4
The electrode dimensionality of CCNNEs is tunable: >1.5 mg/mL MWNT in the sol yields conventional-dimension electrodes, while <0.10 mg/mL yields nanoelectrode ensembles (NEEs).
5
The tunable CCNNE properties provide a new electrochemical approach for detection of AA, GSH, and GSSG, with discussed mechanisms for tailoring dimensions.

Sol-gel-derived ceramic–carbon nanotube nanocomposite electrodes (CCNNEs)

Tunable electrode dimension (from conventional electrode to nanoelectrode ensemble) and their electrocatalytic electrochemical behavior/applications for oxidation-based detection of ascorbic acid, reduced and oxidized glutathione

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2004-10-05
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Yi Chen
Lei Su
Kuanping Gong
Lanqun Mao
Yiming Yan
Meining Zhang
Shaoxiang Xiong
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