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Node-Accessible Zirconium MOFs

机译:节点可访问的锆MOF

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摘要

High-stability, zirconium-based metal-organic frameworks are attractive as heterogeneous catalysts and as model supports for uniform arrays of subsequently constructed heterogeneous catalysts-for example, MOF-node-grafted metal-oxy and metal-sulfur clusters. For hexa-Zr(Ⅳ)-MOFs characterized by nodes that are less than 12-connected, sites not used for linkers are ideally occupied by reactive and displaceable OH/H_2O pairs. The desired pairs are ideal for grafting the aforementioned catalytic clusters, while aqua-ligand lability renders them effective for exposing highly Lewis-acidic Zr(Ⅳ) sites (catalytic sites) to candidate reactants. New single-crystal X-ray studies of an eight-connected Zr-MOF, NU-1000, reveal that conventional activation fully removes modulator ligands, but replaces them with three node-blocking formate ligands (from solvent decomposition) and only one OH/H_2O pair, not four-a largely overlooked complication that now appears to be general for Zr-MOFs. Here we describe an alternative activation protocol that effectively removes modulators, avoids formate, and installs the full complement of terminal OH/H_2O pairs. It does so via an unusual isolatable intermediate featuring eight aqua ligands and four non-ligated chlorides-again as supported by single-crystal X-ray data. We find that complete replacement of node-blocking modulators/formate with the originally envisioned OH/OH_2 pairs has striking consequences; here we touch upon just three. First, elimination of unrecognized formate renders aqua ligands much more thermally labile, enabling open Zr(Ⅳ) sites to be obtained at lower temperature. Second, in the absence of formate, which otherwise links and locks pairs of node Zr(Ⅳ) ions, reversible removal of aqua ligands engenders reversible contraction of MOF meso- and micropores, as evidenced by X-ray diffraction. Third, formate replacement with OH/OH_2 pairs renders NU-1000 ca.10× more active for catalytic hydrolytic degradation of a representative simulant of G-type chemical warfare agents.
机译:高稳定性,基于锆的金属 - 有机骨架是具有非均相催化剂的吸引力,并且作为随后构造的非均相催化剂的均匀阵列的模型支撑 - 例如,MOF-节点接枝金属 - 氧和金属 - 硫簇。对于由小于12连接的节点的六zr(ⅳ)-mofs,不用于链接器的站点理想地被反应性和可移位oh / h_2o对占据。所需的对是接枝上述催化簇的理想选择,而Aqua-Ligand Labity会使它们有效地将高度Lewis-酸性Zr(催化位点)暴露于候选反应物。新的单晶X射线研究八连接的ZR-MOF,NU-1000,揭示了常规活化完全除去调节剂配体,但用三个节点阻断甲酸盐配体(来自溶剂分解)取代它们,只有一个oh / H_2O对,而不是四个忽略的并发症,现在似乎是ZR-MOF的一般。在这里,我们描述了一种替代的激活协议,可有效地删除调制器,避免格式化,并安装终端OH / H_2O对的完整补充。它通过一个不寻常的孤立中间体具有八个水色配体和四个未连接的氯化物 - 再次由单晶X射线数据的支持。我们发现,通过最初设想的OH / OH_2对的完全替换节点阻塞调制器/格式,具有引人注目的后果;在这里我们只触及三个。首先,消除未被识别的甲酸盐使Aqua配体更加热不稳定,使得在较低温度下可以获得Zr(ⅳ)位点。其次,在没有甲酸甲酸盐的情况下,否则X射线配体的可逆除去QUAA配体的可逆除去,如X射线衍射所证明的MOF中间和微孔的可逆收缩。第三,用OH / OH_2对替代品替代品呈NU-1000 CA.10×10×更活跃的G型化学战剂代表性模拟剂的催化水解降解。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2020年第50期|21110-21121|共12页
  • 作者单位

    College of Mechanics and Materials Hohai University Nanjing 210098 P. R. China Department of Chemistry Northwestern University Evanston Illinois 60208 United States;

    Department of Chemistry Northwestern University Evanston Illinois 60208 United States;

    Department of Chemistry Northwestern University Evanston Illinois 60208 United States;

    Department of Chemistry Northwestern University Evanston Illinois 60208 United States;

    Department of Chemistry Northwestern University Evanston Illinois 60208 United States;

    Department of Chemistry Northwestern University Evanston Illinois 60208 United States School of Chemical Engineering Nanjing University of Science & Technology Nanjing 210094 P. R. China;

    Department of Chemistry Northwestern University Evanston Illinois 60208 United States Department of Pharmaceutical Engineering and Key Laboratory of Systems Bioengineering Tianjin University Tianjin 300072 P. R. China;

    Department of Chemistry and Department of Chemical and Biological Engineering Northwestern University Evanston Illinois 60208 United States;

    Department of Chemistry Northwestern University Evanston Illinois 60208 United States;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 23:00:59

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