力场(虚构)
粒度
材料科学
桥接(联网)
量子
中尺度气象学
纳米
势能
统计物理学
纳米技术
计算机科学
物理
经典力学
复合材料
量子力学
计算机网络
气象学
操作系统
作者
Johannes P. Dürholt,Raimondas Galvelis,Rochus Schmid
出处
期刊:Dalton Transactions
[Royal Society of Chemistry]
日期:2015-12-21
卷期号:45 (10): 4370-4379
被引量:43
摘要
We have adapted our genetic algorithm based optimization approach, originally developed to generate force field parameters from quantum mechanic reference data, to derive a first coarse grained force field for a MOF, taking the atomistic MOF-FF as a reference. On the example of the copper paddle-wheel based HKUST-1, a maximally coarse grained model, using a single bead for each three and four coordinated vertex, was developed as a proof of concept. By adding non-bonded interactions with a modified Buckingham potential, the resulting MOF-FF-CGNB is able to predict local deformation energies of the building blocks as well as bulk properties like the tbovs.pto energy difference or elastic constants in a semi-quantitative way. As expected, the negative thermal expansion of HKUST-1 is not reproduced by the maximally coarse grained model. At the expense of atomic resolution, substantially larger systems (up to tens of nanometers in size) can be simulated with respect to structural and mechanical properties, bridging the gap to the mesoscale. As an example the deformation of the [111] surface of HKUST-1 by a "tip" could be computed without artifacts from periodic images.
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