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首页> 外文期刊>ACS Omega >Diversity-Oriented Metal Decoration on UiO-Type Metal–Organic Frameworks: an Efficient Approach to Increase CO2 Uptake and Catalytic Conversion to Cyclic Carbonates
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Diversity-Oriented Metal Decoration on UiO-Type Metal–Organic Frameworks: an Efficient Approach to Increase CO2 Uptake and Catalytic Conversion to Cyclic Carbonates

机译:UIO型金属 - 有机框架上的多样性金属装饰:提高CO2吸收和催化转化为环碳酸酯的有效方法

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A library of metallo-bipyridine UiO-type metal–organic frameworks (MOFs) has been successfully synthesized by postmetallation of a wide range of metal complexes into bidentate bipyridine moieties. Then, a systematic investigation is devoted to a catalytic evaluation of the resultant MOFs containing a binary Lewis acid function for the synthesis of cyclic carbonates from epoxides and carbon dioxide (CO2). The result indicated that the metal-grafted MOFs exhibit improvement in terms of CO2 uptake capacity and catalytic activity in comparison with their nonmetallated counterparts. The comprehensive investigation provides a valuable insight into the synergetic effects of MOF functionalities including metal node, grafted metal, and its counterion in the cycloaddition reaction. Furthermore, the metal coordination modulation due to its benefits such as being a solvent-free process, nearly full conversion to cyclic carbonates, high selectivity and high CO2 uptake, applying atmospheric CO2 pressure, and excellent stability and easy recyclability of the catalyst demonstrates them as promising candidates for practical utilization of CO2 conversion into value-added chemicals.
机译:通过将各种金属配合物的后处理成二齿的Bi0赖丁部分,成功地合成了金属吡啶型UIO型金属 - 有机框架(MOF)库。然后,对含有二元路易斯酸官能团的合成碳酸酯的合成来自环氧化和二氧化碳的环状碳酸酯(CO 2),拟催化评价。结果表明,与其非金属的对应物相比,金属接枝的MOF对CO 2摄取能力和催化活性的改善。全面调查提供了对MOF功能的协同效应,包括金属节点,接枝金属及其对环加成反应中的抗衡函数的有价值的见解。此外,由于其优势,例如是无溶剂过程,几乎全转化为循环碳酸盐,高选择性和高二氧化碳吸收,施加大气二氧化碳压力,以及催化剂的优异稳定性和容易再循环性的效力,几乎完全转化,以及催化剂的优异稳定性和易再现性证明它们如图有希望的候选人的实际利用二氧化碳转化为增值化学品。

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