首页> 外文期刊>Journal of chemical theory and computation: JCTC >Transferable Force Field for Metal-Organic Frameworks from First-Principles: BTW-FF
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Transferable Force Field for Metal-Organic Frameworks from First-Principles: BTW-FF

机译:第一性原理的金属有机框架的可传递力场:BTW-FF

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摘要

We present an ab-initio derived force field to describe the structural and mechanical properties of metal-organic frameworks (or coordination polymers). The aim is a transferable interatomic potential that can be applied to MOFs regardless of metal or ligand identity. The initial para-metrization set includes MOF-5, IRMOF-10, IRMOF-14, UiO-66, UiO-67, and HKUST-1. The force field describes the periodic crystal and considers effective atomic charges based on topological analysis of the Bloch states of the extended materials. Transferable potentials were developed for the four organic ligands comprising the test set and for the associated Cu, Zn, and Zr metal nodes. The predicted materials properties, including bulk moduli and vibrational frequencies, are in agreement with explicit density functional theory calculations. The modal heat capacity and lattice thermal expansion are also predicted.
机译:我们提出了一个从头开始的力场来描述金属-有机骨架(或配位聚合物)的结构和力学性能。目的是可转移的原子间电势,无论金属或配体的身份如何,均可应用于MOF。初始参数化集包括MOF-5,IRMOF-10,IRMOF-14,UiO-66,UiO-67和HKUST-1。力场描述了周期性晶体,并基于对扩展材料的布洛赫状态的拓扑分析来考虑有效的原子电荷。为构成测试集的四种有机配体以及相关的Cu,Zn和Zr金属节点开发了可转移的电势。预测的材料特性(包括体积模量和振动频率)与显式密度泛函理论计算一致。还预测了模态热容和晶格热膨胀。

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