Jin Wei, Chen Wen, Lu Yu, Zhao Chunxia, Dai Ying
State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, School of Materials Science and Engineering, Wuhan University of Technology, Wuhan 430070, PR China.
J Nanosci Nanotechnol. 2011 Dec;11(12):10834-8. doi: 10.1166/jnn.2011.4042.
V2O5/polypyrrole core-shell nanotubes have been synthesized through an in situ polymerization of pyrrole monomers in the presence of prepared vanadium oxide nanotubes. Formation of polypyrrole in core-shell structure was endorsed by FTIR spectral analyses. Transmission electron microscopy images revealed that one dimensional morphology of vanadium oxide nanotubes remained undisturbed upon coating of polypyrrole, and polypyrrole was uniformly coated on the surface of vanadium oxide nanotubes, with a thickness of 30 nm. XRD suggested certain synergetic interaction existed in the core-shell structure, probably resulting in the enhanced thermal stability of polypyrrole coatings. The gas tests showed that the core-shell structure exhibited a high response, good stability and a short response/recovery time in the detection of different concentrations of ethanol at room temperature, implying its potential application for gas sensors. The enhanced gas sensing properties due to the synergic interaction between intimately contacted polypyrrole and vanadium oxide nanotubes lead to the formation of a hetero p-n junction with a depletion region, which is similar to a field effect transistor. The gas effects a change of the depletion region and thus modulates the conductivity of the junction.
通过在制备好的钒氧化物纳米管存在的情况下使吡咯单体原位聚合,合成了V2O5/聚吡咯核壳纳米管。傅里叶变换红外光谱分析证实了核壳结构中聚吡咯的形成。透射电子显微镜图像显示,在包覆聚吡咯后,钒氧化物纳米管的一维形态未受干扰,聚吡咯均匀地包覆在钒氧化物纳米管表面,厚度为30纳米。X射线衍射表明核壳结构中存在一定的协同相互作用,这可能导致聚吡咯涂层的热稳定性增强。气体测试表明,该核壳结构在室温下检测不同浓度乙醇时表现出高响应、良好的稳定性和较短的响应/恢复时间,这意味着其在气体传感器方面具有潜在应用。紧密接触的聚吡咯与钒氧化物纳米管之间的协同相互作用导致增强的气敏性能,形成了具有耗尽区的异质p-n结,这类似于场效应晶体管。气体使耗尽区发生变化,从而调节结的电导率。