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Adsorption and Diffusion of Benzene in Mg-MOF-74 with Open Metal Sites

机译:苯-MOF-74中苯的吸附和扩散与开放式金属位点

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We performed molecular simulations to investigate the adsorption and diffusion of benzene in metal-organic framework Mg-MOF-74. At 300 K and 20 Pa, the saturated loading of benzene reaches 8.2 mmol/g, almost twice of (12,12) single-walled carbon nanotube with a similar pore size, and 93% of the benzene molecules in Mg-MOF-74 can desorb at 390 K. The energy analysis indicates that the van der Waals contribution still dominates 70-80% of the total fluid-wall interaction energy compared with the Coulombic contribution. We further analyzed the structure of benzene confined in Mg-MOF-74 by the molecular snapshots, pair correlation functions, orientational order parameters, and local density profiles. It is found that low temperature and high pressure make the structure of adsorbed benzene more similar to that of the liquid benzene. Moreover, the benzene molecules in the contact adsorption layer lie flat on the surface of adsorbent, whereas those molecules near the pore center have no particular orientations. Due to the existence of open metal sites, the structures of adsorbed benzene are more compact and ordered than those of bulk liquid benzene. Consequently, the self-diffusion coefficient of saturated benzene in Mg-MOF-74 at 300 K is significantly lower than that of bulk liquid benzene and confined liquid benzene in slit pores and disordered carbons by 4-5 orders of magnitude. We investigated the separation and diffusion of benzene/cyclohexane in the mixture in Mg-MOF-74 and found that the pores almost completely adsorbed benzene, although its self-diffusion coefficient was slightly lower than that of cyclohexane.
机译:我们进行了分子模拟,以研究苯在金属有机框架Mg-Mof-74中的吸附和扩散。在300 k和20Pa,饱和苯的饱和负载达到8.2mmol / g,几乎是(12,12)单壁碳纳米管的两倍,孔径相似,93%的苯-MOF-74中的苯分子可以在390 k下解吸。能量分析表明,与库仑贡献相比,van der WALS贡献仍然占总流体壁交互能量的70-80%。我们进一步通过分子快照,对相关函数,定义阶参数和局部密度分布,进一步分析了苯内局限于Mg-Mof-74中的苯。发现低温和高压使得吸附的苯的结构更类似于液态苯的结构。此外,接触吸附层中的苯分子在吸附剂表面上平坦,而在孔中心附近的那些分子没有特定取向。由于开放金属位点的存在,吸附的苯的结构比本体液体苯的更紧凑和有序。因此,Mg-Mof-74中的饱和苯的自扩散系数在300K下显着低于散孔液体苯并和狭窄的碳氧化液中的4-5次碳淤胞和狭窄的碳烯苯并。我们研究了Mg-Mof-74中混合物中苯/环己烷的分离和扩散,发现孔几乎完全吸附的苯,尽管其自扩散系数略低于环己烷。

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