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Effects of functional group concentration, type, and configuration on their saturation of methanol adsorption on functionalized graphite

机译:官能团浓度,类型和构型对其官能化石墨上甲醇吸附饱和度的影响

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摘要

Adsorption of methanol on functionalized graphite at 298 K was studied using a grand canonical Monte Carlo simulation to investigate the effects of functional group (Fn) properties, such as concentration, type, and configuration, on their saturation. It was found that the initial methanol molecule was adsorbed on the strongest active site of the functional groups with multiple hydrogen bonds. The additional methanol molecules were then adsorbed on the weaker active sites until they became saturated. Once the Fns were saturated, the adsorption processes were followed by monolayer and multilayer processes, and they were no longer influenced by Fn properties when the loading increased. In this work, we determined the effects of surface chemistry properties on their saturation state by the following: (1) The difference in Fn concentration is insufficiently influenced on the value and trend of the isosteric heat along the loading; the only difference is that the higher concentration causes the isosteric heat to shift to higher loadings. (2) The Fn type and configuration are affected on both value and trend of the isosteric heat. Heat contributions (fluid-fluid, fluid-functional group, and fluid-graphene basal plane), snapshots, local densities, and orientation distributions are discussed in this work.
机译:使用宏规范的蒙特卡洛模拟研究了298 K下甲醇在官能化石墨上的吸附,以研究官能团(Fn)性质(例如浓度,类型和构型)对其饱和度的影响。发现初始甲醇分子被吸附在具有多个氢键的官能团的最强活性位点上。然后将其他甲醇分子吸附在较弱的活性位上,直到它们饱和为止。 Fns饱和后,吸附过程将继之以单层和多层过程,当负载增加时,它们不再受Fn性质的影响。在这项工作中,我们通过以下方法确定了表面化学性质对其饱和状态的影响:(1)Fn浓度的差异未充分影响沿负载的等构热的值和趋势;唯一的区别是,较高的浓度会导致等排热量转移至较高的载荷。 (2)Fn的类型和构型会影响等规热的值和趋势。在这项工作中讨论了热贡献(流体-流体,流体官能团和流体-石墨烯基面),快照,局部密度和方向分布。

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