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Influence of distributed reduced graphene oxide clusters on methanol sensing performance of TiO_2 nanotube based device

机译:分布还原氧化石墨烯簇对TiO_2纳米管基器件甲醇感测性能的影响

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Present paper aims to improve the methanol sensing performance of TiO_2NT based devices by incorporating to RGO clusters on top of the TiO_2NT matrix in a distributed format. The binary hybrid structure of RGO/ TiO_2 was found to offer dramatic improvement in terms of response magnitude (34% at 700 ppm), response time (24 s) and recovery time (116 s) compared to its bare TiO_2 counterpart. The possible cause for such improvement may be due to availability of additional adsorption sites on RGO layer and high electron mobility of the same. Thus, future developments may rely on a synergistic hybridization approach of these two categories of materials as sensing elements. In the present endeavour, a systematic comparison of the bare TiO_2 nanotube based sensor and reduced graphene oxide-TiO2 based sensor was carried out with methanol vapor as the test species. The later was found to offer remarkably superior performance concerning the sensor parameters like response magnitude, response time and recovery time.
机译:本文旨在通过将TiO_2NT矩阵顶部的RGO簇以分布式形式并入RGO簇中,从而提高基于TiO_2NT的器件的甲醇感测性能。发现RGO / TiO_2的二元杂化结构与裸露的TiO_2相比,在响应幅度(在700 ppm时为34%),响应时间(24 s)和恢复时间(116 s)方面有显着改善。进行这种改进的可能原因可能是由于RGO层上有更多的吸附位点,以及RGO层的高电子迁移率。因此,未来的发展可能依赖于这两类材料作为感测元件的协同杂交方法。在目前的努力中,以甲醇蒸气为测试物质,对裸露的TiO_2纳米管基传感器和还原型氧化石墨烯-TiO2基传感器进行了系统比较。发现后者在传感器参数(例如响应幅度,响应时间和恢复时间)方面提供了非常优越的性能。

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