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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Efficient catalytic conversion of terminal/internal epoxides to cyclic carbonates by porous Co(ii) MOF under ambient conditions: structure-property correlation and computational studies
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Efficient catalytic conversion of terminal/internal epoxides to cyclic carbonates by porous Co(ii) MOF under ambient conditions: structure-property correlation and computational studies

机译:在环境条件下通过多孔CO(II)MOF的高效催化转化末端/内环氧酯对环碳酸盐:结构 - 性质相关性和计算研究

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摘要

A mixed ligand three-dimensional neutral porous framework, {[Co(OBA)(L)]xG}(n) (CoMOF-1) (H(2)OBA = 4,4'-oxybis(benzoic acid); L = (E)-N'-(pyridin-4-ylmethylene)isonicotinohydrazide; G = DMF, EtOH, MeOH, H2O), was successfully synthesized via a hydrothermal and reflux method. The activated MOF (CoMOF-1') not only showed good affinity toward CO2 molecules, but also exhibited a good catalytic performance for CO2 conversion with a variety of terminal and internal epoxides. Grand Canonical Monte Carlo (GCMC) simulation proved the strong interactions of CO2 molecules with the amide functional groups of the MOF. The Lewis acidity of the Co(II) centers endowed by the weakly chelated carboxylate from the OBA ligand and Lewis basicity originating from the acylamide functionality of the pyridyl-based Schiff base ligand L favored the efficient solvent-free cycloaddition reaction of CO2 with different epoxides. Strikingly, CoMOF-1 0 exhibited good catalytic efficiency for CO2 coupled with various terminal epoxides at ambient temperature and pressure (1 bar, 60 degrees C, 12 h) and with a variety of internal epoxides at moderate reaction conditions (30 bar, 100 degrees C, and 8 h) with good yield and recyclability. Further, the binary heterogeneous catalyst showed good chemical stability, easy separation and recyclability (6 cycles) without a noticeable decrease in activity. To the best of our knowledge, this is the first investigation on a neutral porous MOF as a potential heterogeneous solvent-free catalyst toward CO2 utilization for internal epoxide under moderate reaction conditions. Based on the structural evidence, a plausible mechanism for the cycloaddition reaction was proposed, which is further reinforced by the relative energy of each stage obtained from periodic Density Functional Theory (DFT) calculations.
机译:混合配体三维中性多孔框架,{[CO(OBA)(L)] XG}(N)(COMOF-1)(H(2)OBA = 4,4'- oxybis(苯甲酸); L = (e)-N' - (吡啶-4-基甲基)异硝基肼; G = DMF,EtOH,MeOH,H 2 O)通过水热和回流方法成功地合成。活化的MOF(COMOF-1')不仅对CO 2分子表现出良好的亲和力,而且还表现出具有多种末端和内环氧化物的CO 2转化的良好催化性能。 Grand Canonical Monte Carlo(GCMC)仿真证明了CO2分子与MOF酰胺官能团的强相互作用。由OBA配体的弱螯合羧酸盐的CO(II)中心的路易斯酸度来自吡啶基席夫碱配体L的酰基酰胺官能团的酰胺官能团,青睐CO 2的有效溶剂环加成反应与不同的环氧化物。尖锐的是,COMOF-1 0表现出良好的催化效率,用于在环境温度和压力(1巴,60℃,12h)和中等反应条件下的各种内环氧化物(30巴,100度C,和8小时)具有良好的产量和可回收性。此外,二元异质催化剂显示出良好的化学稳定性,易于分离和可再循环性(6个循环),无需显着降低的活性。据我们所知,这是在适度反应条件下对潜在的非均相溶剂 - 无溶剂催化剂进行中性多孔MOF的第一次研究。基于结构证据,提出了一种对环加成反应的合理机制,通过从周期性函数理论(DFT)计算中获得的每个阶段的相对能量进一步加强。

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