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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Tuning Binding Tendencies of Small Molecules in Metal-Organic Frameworks with Open Metal Sites by Metal Substitution and Linker Functionalization
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Tuning Binding Tendencies of Small Molecules in Metal-Organic Frameworks with Open Metal Sites by Metal Substitution and Linker Functionalization

机译:用金属取代和接头官能化调节金属 - 有机框架中的小分子的结合趋势

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摘要

Metal-organic frameworks (MOFs) with open metal sites (OMS) are known to be selective for ethylene relative to ethane. In practical applications of this separation, the presence of other small molecules such as H2O, CO, and C2H2 may affect the suitability of sorbents. We used density functional theory (DFT) calculations to compute the binding energies of H2O, CO, C2H2, C2H4, and C2H6 in M-BTC (BTC = 1,3,S-benzenetricarboxylic acid) with 12 different metals forming OMS (M = Mg, Ti, V, Cr, Mo, Mn, Fe, Ru, Co, Ni, Cu, and Zn). To probe the generality of these results for MOFs containing other ligands, we performed similar calculations for metal-substituted MOFs based on four more materials with dimeric Cu sites. Our results provide useful insights into the variations in binding energies that are achievable by metal substitution in this broad class of MOFs, as well as pointing toward feasible adsorption-based separation strategies for complex molecular mixtures. Zn OMS MOFs were predicted to have the highest C2H4/C2H6 selectivity, but the strong binding energy of solvents and other small molecules in these materials may create practical challenges. We used DFT calculations to examine whether functionalizing linkers in these materials with electron withdrawing (-fluorine) and donating (-methyl) groups offer a useful way to tune molecular binding energies on OMS in these materials.
机译:已知具有开放金属位点(OMS)的金属 - 有机框架(MOF)是相对于乙烷的乙烯选择性。在这种分离的实际应用中,存在其他小分子如H 2 O,CO和C 2 H 2可能会影响吸附剂的适用性。我们使用密度泛函理论(DFT)计算,以计算H 2 O,CO,C2H2,C2H4,C2H6和的结合能在M-BTC(BTC = 1,3,S-苯三甲酸)与12种不同的金属形成OMS(M = Mg,Ti,V,Cr,Mo,Mn,Fe,Ru,Co,Ni,Cu和Zn)。为了探测这些含有其他配体的MOF的这些结果的一般性,我们基于四个具有二聚体Cu位点的更多材料对金属取代的MOF进行了类似的计算。我们的结果提供了有用的见解,该洞察力有用的含义可通过这种广泛的MOF在MOF中获得的金属替代能力,以及指向复杂的分子混合物的可行吸附的分离策略。预测Zn OMS MOF具有最高的C2H4 / C2H6选择性,但这些材料中的溶剂和其他小分子的强粘合能量可能产生实际挑战。我们使用DFT计算来检查这些材料中的官能化链接剂是否用电子取出( - 氟化合物)和捐赠( - 甲基)基团提供了在这些材料中对OMS上的分子结合能量进行调整的有用方法。

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