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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Gas adsorption efficacy of graphene sheets functionalised with carboxyl, hydroxyl and epoxy groups in conjunction with Stone-Thrower-Wales (STW) and inverse Stone-Thrower-Wales (ISTW) defects
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Gas adsorption efficacy of graphene sheets functionalised with carboxyl, hydroxyl and epoxy groups in conjunction with Stone-Thrower-Wales (STW) and inverse Stone-Thrower-Wales (ISTW) defects

机译:用羧基,羟基和环氧树脂官能化的石墨烯片的气体吸附疗效与石头调鼓 - 威尔士(STW)和逆石投掷 - 威尔士(ISTW)缺陷相结合

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摘要

The complete reduction of graphene oxide is difficult to achieve, and hence oxygen-containing functional groups do exist in graphene, along with structural defects. On the other hand, efficient gas sensor materials have been a subject of relentless interest. This instigates the need to explore the gas adsorption on STW and ISTW defective graphene sheets functionalised by -COOH, -OH and C-O-C groups, using density functional theory calculations. Both defects are experimentally feasible as evident through their formation energies. Furthermore mono-functionalisation induces significant buckling of the sheet; in contrast, bi-functionalisation of the sheet restores the planarity of the sheet. We found that the ISTW defective sheet is more reactive than the STW defective sheet to all the functional groups considered, and in particular -COOH is the most adsorptive group to both the defects, while epoxy has consistent adsorptivity towards the defects. Gas molecules such as CO2, H-2, N-2, CH4 and O-2 are physisorbed, whereas HF and H2O are chemisorbed on the functionalised sheets. The sensitivity of the gas molecules towards the functionalised sheets is obtained by Lambda E-g, which is pronounced for pristine + OH and STW + epoxy and bare ISTW defective sheets. However, the functionalised sheets exhibit improved sensing properties for O-2; specifically, mono-epoxy functionalised and bi-carboxylated defective sheets show high sensitivity towards O-2. Furthermore, the surface functionalisation enhances the selectivity of the sensor. From the TDOS plot, the functionalised sheet exhibits p-type behaviour. Thus, the results of this study reveal that the functionalised defective sheets can be utilized as O-2 sensors.
机译:难以实现石墨烯氧化物的完全降低,因此含氧官能团确实存在于石墨烯中,以及结构缺陷。另一方面,有效的气体传感器材料是一个无情的兴趣的主题。这煽动使用密度泛函理论计算,促进探讨由-COOH,-OH和C-C组官能化的STW和ISTW缺陷石墨烯片上的气体吸附。通过其形成能量,这两种缺陷都是明确的。此外,单官能化诱导纸张的显着屈曲;相反,纸张的双函数恢复了片材的平面。我们发现ISTW缺陷片材与所考虑的所有官能团的STW缺陷片更具反应性,特别是-COOH是缺陷的最吸附组,而环氧树脂对缺陷具有一致的吸附性。诸如CO 2,H-2,N-2,CH 4和O-2的气体分子被物质吸收,而HF和H 2 O在官能化板上化学吸附。通过Lambda E-G获得气体分子朝向官能化片的敏感性,其对原始+ OH和STW +环氧树脂和裸istw缺陷板具有发音。然而,官能化板材表现出改善O-2的感测性;具体地,单环氧官能化和双羧化缺陷片显示出对O-2的高敏感性。此外,表面官能化增强了传感器的选择性。从TDOS绘图,功能化表呈现p型行为。因此,该研究的结果表明,官能化的缺陷板可以用作O-2传感器。

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