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Ab initio Molecular Dynamics Study of Adsorption of Hydroxyl Groups on Graphene Surface

基于芯-电子结合能偏移的碱金属中的表面、尺寸和热效应
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摘要 Reduced graphene oxide is the precursor to produce graphene in a large scale;however,to date,there has been no consensus on the electronic structure of reduced graphene oxide.In this study,we carried out an ab initio molecular dynamics simulation to investigate the adsorption process of hydroxyl groups on graphene surface.During the adsorption process,the OH group needs to firstly pass through a physical adsorption complex with the OH above the bridge site of two carbon atoms,next to surmount a transition state,then to be adsorbed at the atop site of a carbon atom.With a 5×5 graphene surface,up to 6 hydroxyl groups can be adsorbed on the graphene surface,indicating the concentration coverage of the hydroxyl groups on graphene surface is about 12%.The simulation results show that the negative adsorption energy increases linearly as the number of adsorbed hydroxyl groups increases,and the band gap also increases linearly with the number of adsorbed hydroxyl groups.
作者 Hong-de Liu Nai-gui Liu Dun-you Wang Jun-feng Ren 刘洪德;刘乃贵;王敦友;任俊峰(山东师范大学物理与电子科学学院,济南250014)
出处 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2021年第6期777-784,I0003,I0056-I0060,共14页 化学物理学报(英文)
基金 supported by the National Natural Science Foundation of China(No.11774206) Taishan Scholarship Fund from Shandong Province。
关键词 Ab initio molecular dynamics Reaction profile Transition state Adsorption energy Band gap Hydroxyl group 从头算分子动力学 反应路径 过渡态 吸附能 带隙 羟基
作者简介 Author to whom correspondence should be addressed:王敦友,E-mail:dywang@sdnu.edu.cn。
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