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首页> 外文期刊>Journal of chemical theory and computation: JCTC >A Molecular Dynamics Technique to Extract Forces in Soft Matter Systems Under Compression With Constant Solvent Chemical Potential
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A Molecular Dynamics Technique to Extract Forces in Soft Matter Systems Under Compression With Constant Solvent Chemical Potential

机译:具有恒定溶剂化学势的压缩条件下提取软物质系统中力的分子动力学技术

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摘要

Molecular dynamics simulations of opposing polymer brushes at varying surface separation distances were performed to develop a method for conducting a static compression of soft matter. As all separation distances were represented by independent simulations, the proper solvent density for every level of compression needed to be determined to acquire realistic data. This was accomplished by maintaining a constant solvent chemical potential for each separation distance. In doing so, each independent simulation is equilibrated with all others, reproducing conditions encountered experimentally in force spectroscopy measurements. Chemical potential was determined using the Widom test particle insertion method. Force information was extracted from pressure profiles, such that unphysical forces occurring within the surface layers were not accounted for in the calculation. Each individual simulation was a canonical ensemble molecular dynamics simulation, but taken together they approximate a grand canonical ensemble for the solvent particles by holding their chemical potential constant.
机译:进行了相对的聚合物刷在不同的表面分离距离下的分子动力学模拟,以开发一种进行软质静态压缩的方法。由于所有分离距离均由独立模拟表示,因此需要确定每种压缩水平的合适溶剂密度,以获取实际数据。这是通过在每个分离距离上保持恒定的溶剂化学势来实现的。这样,每个独立的模拟都与其他所有模拟保持平衡,从而再现了在力谱测量中实验遇到的条件。使用Widom测试颗粒插入方法确定化学势。力信息是从压力曲线中提取的,因此在计算中未考虑表层中出现的非物理力。每个单独的模拟都是一个规范的集成分子动力学仿真,但是通过将它们的化学势保持恒定,它们合在一起就可以为溶剂颗粒近似一个完整的规范集成。

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