Rozas Sara, Atilhan Mert, Aparicio Santiago
Department of Chemistry , University of Burgos , 09001 Burgos , Spain.
Department of Chemical Engineering , Texas A&M University at Qatar , Doha , Qatar.
J Phys Chem B. 2020 Feb 20;124(7):1197-1206. doi: 10.1021/acs.jpcb.9b08873. Epub 2020 Feb 6.
The behavior of reline (choline chloride mixed with urea at a 1-to-2 mole ratio) deep eutectic solvent at the interfaces of 2D nanomaterials was studied by using molecular simulation methods. Graphene, boron nitride, silicene, germanene, and molybdenum disulfide were studied for considering the most relevant features of available 2D nanomaterials. The reline-nanomaterial interactions were analyzed, and the mechanism of reline adsorption with the properties at the interfaces was studied. Likewise, the behavior of the deep eutectic solvent upon confinement between parallel nanosheets was considered as a model of properties when placed in slit nanopores. The results provide a nanoscopic vision of the adsorption and confinement of reline regarding 2D nanomaterials, thus advancing the development of new materials based on deep eutectics.
采用分子模拟方法研究了再生纤维素(氯化胆碱与尿素以1:2摩尔比混合)深共熔溶剂在二维纳米材料界面处的行为。研究了石墨烯、氮化硼、硅烯、锗烯和二硫化钼,以考虑现有二维纳米材料的最相关特性。分析了再生纤维素与纳米材料之间的相互作用,并研究了再生纤维素在界面处的吸附机理及其性质。同样,将深共熔溶剂在平行纳米片之间受限的行为视为置于狭缝纳米孔中的性质模型。这些结果提供了关于再生纤维素在二维纳米材料上的吸附和受限的纳米尺度视角,从而推动了基于深共熔物的新材料的开发。