论文标题

无定形金属有机框架的原子模型

Atomistic Models of Amorphous Metal-Organic Frameworks

论文作者

Castel, Nicolas, Coudert, François-Xavier

论文摘要

对金属有机框架(MOF)和多孔配位聚合物的无定形状态的兴趣越来越大,可以通过压力引起的非晶化,温度诱导的非形态化,熔化的抑制,磨碎,磨碎,辐射等与这些敏感的物理性和化学效果相同,并且与晶体相关,并且与晶体相关,并且与晶体相关,这些均可产生,这些材料可以与这些状态相同。在晶体和粉末上,例如高透明度和机械鲁棒性。但是,这些无定形状态在表征上特别具有挑战性,并且在微观尺度上确定其框架结构很困难,只有间接结构信息可从衍射实验中获得。从这个角度来看,我们根据实验数据和仿真方法来审查和比较可用于确定无定形MOF的微观模型的现有方法。特别是,我们提出了可以使用反向蒙特卡洛(RMC)方法,连续的随机网络(CRN),经典和\ emph {ab intio}分子动力学,反应力场以及模拟的汇编/聚合算法获得的原子模型。

There is an increasing interest in the amorphous states of metal-organic frameworks (MOFs) and porous coordination polymers, which can be produced by pressure-induced amorphization, temperature-induced amorphization, melt-quenching, ball-milling, irradiation, etc. They can exhibit useful physical and chemical properties, distinct from those achievable in the crystalline states, along with greater ease of processing, and intrinsic advantages over crystals and powders, such as high transparency and mechanical robustness. However, these amorphous states are particularly challenging to characterize, and the determination of their framework structure at the microscopic scale is difficult, with only indirect structural information available from diffraction experiments. In this Perspective, we review and compare the existing methodologies available for the determination of microscopic models of amorphous MOFs, based on both experimental data and simulation methods. In particular, we present the atomistic models that can be obtained using Reverse Monte Carlo (RMC) methods, Continuous Random Networks (CRN), classical and \emph{ab initio} molecular dynamics, reactive force fields, and simulated assembly/polymerization algorithms.

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