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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Building Blocks for Two-Dimensional Metal-Organic Frameworks Confined at the Air-Water Interface: An Ab Initio Molecular Dynamics Study
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Building Blocks for Two-Dimensional Metal-Organic Frameworks Confined at the Air-Water Interface: An Ab Initio Molecular Dynamics Study

机译:局限于空气-水界面的二维金属有机框架的构建基块:从头算分子动力学研究

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摘要

Two-dimensional molecular sheets are of prime interest in nanoscience and technology. A promising class of such materials is 2D metalorganic frameworks (MOFs), assembled by cross-linking precursors with metal ions. It was recently demonstrated that such MOFs can be synthesized from monomers confined at an airwater interface. In order to elucidate this process at the atomic scale, we study a large flat tris-terpyridine-derived molecule (TTPB) on a water surface using ab initio molecular dynamics. We investigate the properties of the molecule and examine its reaction with Zn ions from the liquid phase. The fluid substrate significantly stabilizes the adsorbate while maintaining sufficient conformational flexibility to allow dynamic rearrangement and chemical reactions. The successful uptake and binding of ions is the first step toward linking TTPB molecules to dimers and large 2D MOFs.
机译:二维分子片是纳米科学和技术领域的首要关注。这类材料中很有前途的一类是2D金属有机骨架(MOF),它是通过将前体与金属离子交联组装而成的。最近证实,这种MOF可以由限制在空气-水界面处的单体合成。为了从原子尺度上阐明这一过程,我们使用从头算分子动力学方法研究了水表面上的大平面三萜类吡啶衍生分子(TTPB)。我们研究了分子的性质,并研究了其与液相中锌离子的反应。流体基质在保持足够的构象柔韧性以允许动态重排和化学反应的同时,显着稳定了被吸附物。离子的成功吸收和结合是将TTPB分子连接至二聚体和大型2D MOF的第一步。

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