首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Solvent-free mechanochemical route for the construction of ionic liquid and mixed-metal MOF composites for synergistic CO2 fixation
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Solvent-free mechanochemical route for the construction of ionic liquid and mixed-metal MOF composites for synergistic CO2 fixation

机译:用于构建离子液体和混合金属MOF复合材料的无溶剂机械化学途径,用于协同CO2固定

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摘要

The synergistic effect between multiple active sites is a powerful approach to wield control in catalysis. However, it remains a challenge to integrate various active species simultaneously into a porous material in an organized and cooperative manner. Herein, by virtue of the tunable secondary building units (SUBs) and pore structures of metal-organic frameworks (MOFs), we demonstrate a straightforward way to integrate multiple catalytic components into MOFs via mechanochemical synthesis, whereby the phase separation of various components can be avoided. The multi-functionality in the resulting MOFs came from doping the metal nodes with another metal species and encapsulating molecular catalysts in the cavities, as demonstrated by partially replacing the zinc ions with cobalt ions and enveloping ionic liquids (IL) in the ZIF-8 (Zn) framework to yield IL@ZIF-8(Zn/Co). It is shown that compared to the homometallic MOF, the bimetallic one together with the introduced ionic liquid brings about the opportunity to take advantage of the synergism. This is reflected in the superior performance of IL@ZIF-8(Zn/Co) with respect to the related individual components in the industrially relevant cycloaddition of epoxides and CO2. Given that the strategy presented is applicable to other MOF materials and molecular catalysts, our approach, therefore, opens a new avenue for the introduction of multi-functionality into MOFs for various potential applications.
机译:多个活动站点之间的协同效应是在催化中掌握控制的强大方法。然而,以有组织和协作方式将各种活性物质与多孔材料同时纳入多孔材料仍然是挑战。这里,借助于金属 - 有机骨架(MOF)的可调谐二级建筑单元(潜水艇)和孔结构,我们通过机械化合合成证明了将多种催化组分整合到MOF中的直接途径,从而可以是各种部件的相分离避免。得到的MOF中的多功能是通过将具有另一种金属物种和包封在腔内的分子催化剂来掺杂金属节点,如通过将锌离子部分替换为钴离子并在ZIF-8中包封离子液体(IL)( Zn)框架产生IL @ ZIF-8(Zn / Co)。结果表明,与均衡的MOF相比,与引入的离子液体一起与引入的离子液体一起带来了利用协同作用的机会。这反映在IL @ ZIF-8(Zn / Co)的优越性上相对于环氧化物和CO2的工业相关环加成的相关单个组分的优越性。鉴于提出的策略适用于其他MOF材料和分子催化剂,因此,我们的方法为各种潜在应用推出了将多功能引入MOF的新途径。

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    Tianjin Polytech Univ State Key Lab Separat Membranes &

    Membrane Proc Sch Chem &

    Chem Engn Tianjin 300387 Peoples R China;

    Tianjin Polytech Univ State Key Lab Separat Membranes &

    Membrane Proc Sch Chem &

    Chem Engn Tianjin 300387 Peoples R China;

    Tianjin Polytech Univ State Key Lab Separat Membranes &

    Membrane Proc Sch Chem &

    Chem Engn Tianjin 300387 Peoples R China;

    Tianjin Polytech Univ State Key Lab Separat Membranes &

    Membrane Proc Sch Chem &

    Chem Engn Tianjin 300387 Peoples R China;

    Tianjin Polytech Univ State Key Lab Separat Membranes &

    Membrane Proc Sch Chem &

    Chem Engn Tianjin 300387 Peoples R China;

    Tianjin Polytech Univ State Key Lab Separat Membranes &

    Membrane Proc Sch Chem &

    Chem Engn Tianjin 300387 Peoples R China;

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  • 正文语种 eng
  • 中图分类 工程材料学;
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