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Simple lattice model of surface-confined metal–organic networks consisting of linear nitrogen-bearing molecules and transition metals

机译:Simple lattice model of surface-confined metal–organic networks consisting of linear nitrogen-bearing molecules and transition metals

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摘要

We propose a generalized lattice model that enables prediction of the phase behavior and thermal stability of surface-confined metal–organic layers consisting of molecules with nitrogen-bearing functional groups (–CN, –Py, (NH)2) of various sizes and transition metal atoms (copper and iron). The coordination energy per molecule is revealed to be a nearly linear function of the coordination number. In the case of three-fold coordination and higher, steric repulsions between the coordinated functional groups play an important role. The lattice model has been parametrized using DFT methods. The ground state phase diagrams have been calculated and verified by GCMC simulation at non-zero temperatures. An increase in the size of the functional group and/or decrease of the coordination capacity of the metal center leads to a greater phase diversity. There are linear metal–organic structures and metal–organic networks consisting of different coordination motifs. Otherwise, close-packed structures with high coordination motifs predominate. The relative thermal stability of the linear and 2D porous metal–organic structures is proportional to the average coordination number of the structure. Thermal destruction of the porous metal–organic structures occurs through breaking the coordination bonds and compacting the layer at the first stage forming the motifs with higher coordination numbers.
机译:我们提出一个广义格点模型使行为和预测的阶段热稳定性的surface-confined有机层组成的分子含氮官能团(py - cn,(NH) 2)各种尺寸和过渡金属铜和铁原子()。每个分子透露是几乎线性的配位数的函数。三倍的协调和更高,空间斥力之间的协调功能组织发挥着重要的作用。用DFT方法参数化。基态相图计算在非零GCMC仿真验证了温度。官能团和/或减少的金属中心的领导协调能力多阶段的多样性。有机结构和有机配合网络组成不同的协调图案。高协调图案为主。相对热稳定性的线性和2 d多孔有机结构成正比的平均配位数结构。有机结构发生破坏协调债券和压实层在第一阶段形成了较高的图案协调数字。

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