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功能化石墨烯片上甲醇共溶剂和邻苯二甲酸二辛酯的竞争吸附:分子动力学模拟和量子化学计算的综合研究。

Competitive adsorption of methanol co-solvent and dioctyl phthalate on functionalized graphene sheet: Integrated investigation by molecular dynamics simulations and quantum chemical calculations.

机构信息

Yunnan Provincial Key Lab of Soil Carbon Sequestration and Pollution Control, Faculty of Environmental Science & Engineering, Kunming University of Science & Technology, Kunming 650500, Yunnan, China.

Yunnan Provincial Key Lab of Soil Carbon Sequestration and Pollution Control, Faculty of Environmental Science & Engineering, Kunming University of Science & Technology, Kunming 650500, Yunnan, China.

出版信息

J Colloid Interface Sci. 2022 Jan;605:354-363. doi: 10.1016/j.jcis.2021.07.086. Epub 2021 Jul 24.

Abstract

HYPOTHESIS

Organic co-solvents, which are universally employed in adsorption studies of hydrophobic organic chemicals (HOCs), can inhibit HOC adsorption by competing for active sites on the adsorbent. The adsorbent structure can influence co-solvent interference of HOC adsorption; however, this effect remains unclear, leading to an incomplete understanding of the adsorption mechanism.

EXPERIMENTS

In this study, dioctyl phthalate (DOP) was used to investigate competitive adsorption on functionalized graphene sheet in a water-methanol co-solvent system through molecular dynamics simulations and quantum chemical calculations.

FINDINGS

The simulations showed that the functional groups in the graphene defects had a strong adsorption affinity for methanol. The adsorbed methanol occupied a large number of active sites at the graphene center, thereby weakening DOP adsorption. However, the methanol adsorbed at the graphene edges could not compete with DOP for the active sites. -COOH had the strongest binding affinity for methanol among the functional groups and thus predominantly controlled the interaction between graphene and methanol. This study makes an innovative contribution toward understanding the competitive adsorption of methanol and DOP on functionalized graphene sheet, especially in visualizing the competition for active sites, and provides theoretical guidance for the removal of HOCs and practical application of graphene.

摘要

假设

有机共溶剂普遍用于疏水性有机化学品(HOCs)的吸附研究,它们可以通过与吸附剂上的活性位点竞争来抑制 HOC 的吸附。吸附剂结构会影响 HOC 吸附的共溶剂干扰,但这种影响尚不清楚,导致对吸附机制的理解不完整。

实验

在这项研究中,邻苯二甲酸二辛酯(DOP)被用于通过分子动力学模拟和量子化学计算研究在水-甲醇共溶剂体系中对功能化石墨烯片的竞争吸附。

发现

模拟表明,石墨烯缺陷中的官能团对甲醇具有很强的吸附亲和力。吸附的甲醇占据了石墨烯中心的大量活性位点,从而削弱了 DOP 的吸附。然而,吸附在石墨烯边缘的甲醇无法与 DOP 竞争活性位点。在官能团中,-COOH 对甲醇的结合亲和力最强,因此主要控制着石墨烯和甲醇之间的相互作用。这项研究为理解甲醇和 DOP 在功能化石墨烯片上的竞争吸附做出了创新性贡献,特别是在可视化活性位点的竞争方面,为 HOC 的去除和石墨烯的实际应用提供了理论指导。

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