Department of Thermodynamic and Molecular Simulation, IFP 1 et 4, Avenue de Bois-Préau, 2852 Rueil-Malmaison Cedex, France.
Chemistry. 2010 Feb 1;16(5):1560-71. doi: 10.1002/chem.200902144.
Experimental measurements and molecular simulations were conducted for two zeolitic imidazolate frameworks, ZIF-8 and ZIF-76. The transferability of the force field was tested by comparing molecular simulation results of gas adsorption with experimental data available in the literature for other ZIF materials (ZIF-69). Owing to the good agreement observed between simulation and experimental data, the simulation results can be used to identify preferential adsorption sites, which are located close to the organic linkers. Topological mapping of the potential-energy surfaces makes it possible to relate the preferential adsorption sites, Henry constant, and isosteric heats of adsorption at zero coverage to the nature of the host-guest interactions and the chemical nature of the organic linker. The role played by the topology of the solid and the organic linkers, instead of the metal sites, upon gas adsorption on zeolite-like metal-organic frameworks is discussed.
实验测量和分子模拟研究了两种沸石咪唑酯骨架材料,ZIF-8 和 ZIF-76。通过比较气体吸附的分子模拟结果与文献中其他 ZIF 材料(ZIF-69)的实验数据,测试了力场的可转移性。由于模拟和实验数据之间观察到的良好一致性,模拟结果可用于识别优先吸附位点,这些吸附位点位于靠近有机连接体的位置。势能表面的拓扑映射使得能够将优先吸附位点、亨利常数和零覆盖度下的吸附等焓与主客体相互作用的性质和有机连接体的化学性质联系起来。讨论了拓扑结构和有机连接体而非金属位点在沸石类似的金属有机骨架上气体吸附中的作用。