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Insight into Fluorocarbon Adsorption in Metal-Organic Frameworks via Experiments and Molecular Simulations

机译:通过实验和分子模拟洞察金属有机框架中的氟碳吸附

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摘要

The improvement in adsorption/desorption of hydrofluorocarbons has implications for many heat transformation applications such as cooling, refrigeration, heat pumps, power generation, etc. The lack of chlorine in hydrofluorocarbons minimizes the lasting environmental damage to the ozone, with R134a (1,1,1,2-tetrafluoroethane) being used as the primary industrial alternative to commonly used Freon-12. The efficacy of novel adsorbents used in conjunction with R134a requires a deeper understanding of the host-guest chemical interaction. Metal-organic frameworks (MOFs) represent a newer class of adsorbent materials with significant industrial potential given their high surface area, porosity, stability, and tunability. In this work, we studied two benchmark MOFs, a microporous Ni-MOF-74 and mesoporous Cr-MIL-101. We employed a combined experimental and simulation approach to study the adsorption of R134a to better understand host-guest interactions using equilibrium isotherms, enthalpy of adsorption, Henry’s coefficients, and radial distribution functions. The overall uptake was shown to be exceptionally high for Cr-MIL-101, >140 wt% near saturation while >50 wt% at very low partial pressures. For both MOFs, simulation data suggest that metal sites provide preferable adsorption sites for fluorocarbon based on favorable C-F ··· M+ interactions between negatively charged fluorine atoms of R134a and positively charged metal atoms of the MOF framework.
机译:氢氟碳化合物吸附/解吸的改善对许多热转化应用有影响,例如冷却,制冷,热泵,发电等。氢氟碳化合物中不含氯,可最大程度地减少对臭氧的持久环境破坏,R134a(1,1 (1,2,4-四氟乙烷)被用作常用氟利昂12的主要工业替代品。与R134a结合使用的新型吸附剂的功效需要对主体与客体之间的化学相互作用有更深入的了解。金属有机骨架(MOF)代表了一种新型的吸附材料,具有高的表面积,孔隙率,稳定性和可调性,具有巨大的工业潜力。在这项工作中,我们研究了两种基准MOF,即微孔Ni-MOF-74和中孔Cr-MIL-101。我们采用实验和模拟相结合的方法来研究R134a的吸附,以利用平衡等温线,吸附焓,亨利系数和径向分布函数更好地了解主客体相互作用。 Cr-MIL-101的总摄入量异常高,接近饱和时> 140 wt%,而在非常低的分压下却> 50> wt%。对于这两个MOF,模拟数据表明,基于R134a的带负电的氟原子与MOF骨架的带正电的金属原子之间的有利C-F··M + 相互作用,金属位点为碳氟化合物提供了较好的吸附位点。

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