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Modular Design of Domain Assembly in Porous Coordination Polymer Crystals via Reactivity-Directed Crystallization Process

机译:通过反应导向结晶过程的多孔配位聚合物晶体域组装的模块化设计

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摘要

The mesoscale design of domain assembly is crucial for controlling the bulk properties of solids. Herein, we propose a modular design of domain assembly in porous coordination polymer crystals via exquisite control of the kinetics of the crystal formation process. Employing precursors of comparable chemical reactivity affords the preparation of homogeneous solid-solution type crystals. Employing precursors of distinct chemical reactivity affords the preparation of heterogeneous phase separated crystals. We have utilized this reactivity-directed crystallization process for the facile synthesis of mesoscale architecture which are either solid-solution or phase-separated type crystals. This approach can be also adapted to ternary phase-separated type crystals from one-pot reaction. Phase-separated type frameVorks possess unique gas adsorption properties that are not observed in single-phasic compounds. The results shed light on the importance of crystal formation kinetics for control of mesoscale domains in order td create porous solids with unique cooperative functionality.
机译:域组装的中尺度设计对于控制固体的整体性质至关重要。在这里,我们通过对晶体形成过程动力学的精确控制,提出了多孔配位聚合物晶体中畴组装的模块化设计。使用具有可比的化学反应性的前体提供了均匀的固溶体型晶体的制备。采用具有不同化学反应性的前体可以制备异相分离的晶体。我们已经利用这种反应性导向的结晶过程轻松合成了中尺度结构,这些结构是固溶体或相分离型晶体。该方法还可以适用于来自一锅法反应的三元相分离型晶体。相分离型frameVorks具有独特的气体吸附特性,这在单相化合物中没有观察到。结果揭示了晶体形成动力学对于控制中尺度域的重要性,以便td产生具有独特协同功能的多孔固体。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2012年第32期|p.13341-13347|共7页
  • 作者单位

    Department of Synthetic Chemistry and Biological Chemistry, Graduate School of Engineering, Kyoto University, Katsura,Nishikyo-ku, Kyoto 615-8510, Japan;

    Department of Synthetic Chemistry and Biological Chemistry, Graduate School of Engineering, Kyoto University, Katsura,Nishikyo-ku, Kyoto 615-8510, Japan,PRESTO, Japan Science and Technology Agency, 4-1-8 Honcho, Kawaguchi, Saitama 332-0012, Japan;

    Institute for Integrated Cell-Material Sciences (WPI-iCeMS), Kyoto University, Yoshida, Sakyo-ku, Kyoto 606-8501, Japan;

    Institute for Integrated Cell-Material Sciences (WPI-iCeMS), Kyoto University, Yoshida, Sakyo-ku, Kyoto 606-8501, Japan;

    Institute for Integrated Cell-Material Sciences (WPI-iCeMS), Kyoto University, Yoshida, Sakyo-ku, Kyoto 606-8501, Japan;

    Institute for Integrated Cell-Material Sciences (WPI-iCeMS), Kyoto University, Yoshida, Sakyo-ku, Kyoto 606-8501, Japan,Department of Physical Science, Graduate School of Science, Osaka Prefecture University, Osaka, 599-8531, Japan;

    Department of Physical Science, Graduate School of Science, Osaka Prefecture University, Osaka, 599-8531, Japan;

    RIKEN SPring-8 Center, Kouto, Sayo-cho, Sayo-gun, Hyogo 679-5198, Japan;

    Department of Synthetic Chemistry and Biological Chemistry, Graduate School of Engineering, Kyoto University, Katsura,Nishikyo-ku, Kyoto 615-8510, Japan,Institute for Integrated Cell-Material Sciences (WPI-iCeMS), Kyoto University, Yoshida, Sakyo-ku, Kyoto 606-8501, Japan,ERATO Kitagawa Integrated Pores Project, Japan Science and Technology Agency, Kyoto Research Park Bldg #3, Shimogyo-ku,Kyoto 600-8815, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:13:33

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