| Literature DB >> 29545655 |
Shuai Zhang1, Qinfu Liu1, Hongfei Cheng1, Feng Gao2, Cun Liu3, Brian J Teppen2.
Abstract
Intercalation is the promising strategy to expand the interlayer region of kaolinite for their further applications. Herein, the adaptive biasing force (ABF) accelerated molecular dynamics simulations were performed to calculate the free energies involved in the kaolinite intercalation by dimethyl sulfoxide (DMSO). Additionally, the classical all atom molecular dynamics simulations were carried out to calculate the interfacial interactions between kaolinite interlayer surfaces and DMSO with the aim at exploring the underlying force that drives the DMSO to enter the interlayer space. The results showed that the favorable interaction of DMSO with both kaolinite interlayer octahedral surface and tetrahedral surface can help in introducing DMSO enter kaolinite interlayer. The hydroxyl groups on octahedral surface functioned as H-donors attracting the S=O groups of DMSO through hydrogen bonding interaction. The tetrahedral surface featuring hydrophobic property attracted the methyl groups of DMSO through hydrophobic interaction. The results provided a detailed picture of the energetics and interlayer structure of kaolinite-DMSO intercalate.Entities:
Keywords: DMSO; Intercalation; Kaolinite; Molecular dynamics simulations
Year: 2017 PMID: 29545655 PMCID: PMC5846688 DOI: 10.1016/j.clay.2017.10.022
Source DB: PubMed Journal: Appl Clay Sci ISSN: 0169-1317 Impact factor: 5.467