Sljukić Biljana, Banks Craig E, Salter Chris, Crossley Alison, Compton Richard G
Physical and Theoretical Chemistry Laboratory, University of Oxford, South Parks Road, Oxford, OX1 3QZ, United Kingdom.
Analyst. 2006 May;131(5):670-7. doi: 10.1039/b601299j. Epub 2006 Mar 21.
We report electrochemical composites of multi-walled carbon nanotubes (MWCNTs) with poly(vinylferrocene) (PVF). The polymeric architecture is prepared by first immobilising the MWCNTs onto a glassy carbon substrate, which acts to introduce electrical current into the composite, with the MWCNTs acting as 'molecular wires'. PVF films of varying surface coverages can be obtained by simply controlling the time a constant potential of +0.7 V (vs. Ag) wire is applied; with the characteristics of the derivatised MWCNTs examined by cyclic voltammetry and scanning electron microscopy. The application of the composite for glucose determination in aqueous solutions was investigated using linear sweep voltammetry, where it was found that the composites supported on glassy carbon substrates are superior to bare glassy carbon electrodes polymerised with PVF, likely due to the comparatively higher number of electrocatalytic centres in the former. This protocol was successfully transferred to prepare a PVF-MWCNT-paste electrode which was applied to glucose detection in diluted laked horse blood. The obtained results show potential and promising practical application for the polymer-derivatised MWCNT-modified electrodes in amperometric sensors for glucose determination.
我们报道了多壁碳纳米管(MWCNT)与聚(乙烯基二茂铁)(PVF)的电化学复合材料。通过首先将MWCNT固定在玻碳基底上制备聚合物结构,该玻碳基底用于将电流引入复合材料,MWCNT充当“分子导线”。通过简单地控制施加+0.7 V(相对于Ag)恒电位的时间,可以获得不同表面覆盖率的PVF膜;通过循环伏安法和扫描电子显微镜研究衍生化MWCNT的特性。使用线性扫描伏安法研究了该复合材料在水溶液中测定葡萄糖的应用,结果发现,负载在玻碳基底上的复合材料优于用PVF聚合的裸玻碳电极,这可能是由于前者中电催化中心的数量相对较多。该方案成功地转移用于制备PVF-MWCNT糊电极,并将其应用于稀释的马血中葡萄糖的检测。所得结果表明,聚合物衍生化的MWCNT修饰电极在用于葡萄糖测定的电流型传感器中具有潜在的和有前景的实际应用。