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首页> 外文期刊>IEEE transactions on device and materials reliability >Selectivity Tuning of Graphene Oxide Based Reliable Gas Sensor Devices by Tailoring the Oxygen Functional Groups: A DFT Study Based Approach
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Selectivity Tuning of Graphene Oxide Based Reliable Gas Sensor Devices by Tailoring the Oxygen Functional Groups: A DFT Study Based Approach

机译:通过定制氧官能团选择性调节基于氧化石墨烯的可靠气体传感器设备:基于DFT研究的方法

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摘要

This paper concerns the selectivity tuning of graphene oxide based gas sensor devices, where the role of oxygen functional groups like, carboxyl, carbonyl, hydroxyl (sp2), epoxy, and hydroxyl (sp3) were investigated for physisorption of NO2, NH3, CO, and H2O using first principle calculation (density functional theory) incorporating Atomistix Toolkit (v2015.1). Among the five functional groups under consideration, carboxyl, carbonyl, and hydroxyl (sp2) were considered at the edges on the basal plane, while epoxy and hydroxyl (sp3) groups were considered in the plane perpendicular to that. For all the species, the optimum positions for adsorption, adsorption energy and charge transfer efficiency were investigated for the above two planes. It was found that edge carboxyl group is the most favorable in terms of adsorption energy and charge transfer efficiency targeting NH3, CO, and H2O. On the contrary, for NO2, hydroxyl functionalization was found to be the most efficient one.
机译:本文关注基于氧化石墨烯的气体传感器设备的选择性调整,其中氧官能团(如羧基,羰基,羟基(sp 2 ),环氧和羟基(sp 3)的作用)使用第一原理计算(密度泛函,对NO 2 ,NH 3 ,CO和H 2 O的物理吸附)理论上)并结合了Atomistix工具包(v2015.1)。在考虑的五个官能团中,羧基,羰基和羟基(sp 2 )被认为在基面的边缘,而环氧和羟基(sp 3 )被认为是在垂直于该平面的平面中考虑了各个组。对于所有物种,在上述两个平面上研究了最佳的吸附位置,吸附能和电荷转移效率。发现边缘羧基在针对NH 3 ,CO和H 2 O的吸附能和电荷转移效率方面是最有利的。相反,对于NO 2 ,羟基官能化被认为是最有效的。

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