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A Titanium-Organic Framework as an Exemplar of Combining the Chemistry of Metal- and Covalent-Organic Frameworks

机译:钛-有机骨架作为结合金属和共价-有机骨架化学的典范

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摘要

A crystalline material with a two-dimensional structure, termed metal-organic framework-901 (MOF-901), was prepared using a strategy that combines the chemistry of MOFs and covalent-organic frameworks (COFs). This strategy involves in situ generation of an amine-functionalized titanium oxo cluster, Ti_6O_6(OCH_3)_6(AB)_6 (AB = 4-aminobenzoate), which was linked with benzene- 1,4-dialdehyde using imine condensation reactions, typical of COFs. The crystal structure of MOF-901 is composed of hexagonal porous layers that are likely stacked in staggered conformation (hxl topology). This MOF represents the first example of combining metal cluster chemistry with dynamic organic covalent bond formation to give a new crystalline, extended framework of titanium metal, which is rarely used in MOFs. The incorporation of Ti(Ⅳ) units made MOF-901 useful in the photocatalyzed polymerization of methyl methacrylate (MMA). The resulting poh/MMA product was obtained with a high-number-average molar mass (26 850 g mol~(-1)) and low polydispersity index (1.6), which in many respects are better than those achieved by the commercially available photocatalyst (P-25 TiO_2). Additionally, the catalyst can be isolated, reused, and recycled with no loss in performance.
机译:使用将MOF和共价有机骨架(COF)的化学性质相结合的策略,制备了具有二维结构的晶体材料,称为金属有机骨架901(MOF-901)。该策略涉及原位生成胺官能化的钛氧基团簇Ti_6O_6(OCH_3)_6(AB)_6(AB = 4-氨基苯甲酸酯),该化合物通过亚胺缩合反应与苯-1,4-二醛连接,典型的首席财务官。 MOF-901的晶体结构由六角形多孔层组成,这些多孔层很可能以交错构型(hxl拓扑)堆叠。该MOF代表了将金属簇化学与动态有机共价键形成相结合以提供钛金属的新的结晶,扩展骨架的第一个示例,而MOF中很少使用。 Ti(Ⅳ)单元的引入使MOF-901可用于甲基丙烯酸甲酯(MMA)的光催化聚合。得到的poh / MMA产物具有高的数均摩尔质量(26 850 g mol〜(-1))和低的多分散指数(1.6),在许多方面都比市售的光催化剂更好。 (P-25 TiO_2)。另外,催化剂可以被分离,再利用和再循环而不会损失性能。

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  • 来源
    《Journal of the American Chemical Society》 |2016年第13期|4330-4333|共4页
  • 作者单位

    Department of Chemistry, University of California-Berkeley, Materials Sdences Division, Lawrence Berkeley National Laboratory, Kavli Energy NanoSciences Institute at Berkeley, and Berkeley Global Science Institute, Berkeley, California 94720, United States,Vietnam National University-Ho Chi Minh City (VNU-HCM), Ho Chi Minh City 721337, Vietnam;

    Department of New Architectures in Materials Chemistry, Materials Science Institute of Madrid, Consejo Superior de Investigaciones Cientificas, Madrid 28049, Spain;

    Department of Chemistry, University of California-Berkeley, Materials Sdences Division, Lawrence Berkeley National Laboratory, Kavli Energy NanoSciences Institute at Berkeley, and Berkeley Global Science Institute, Berkeley, California 94720, United States,King Fahd University of Petroleum and Minerals, Dhahran 34464, Saudi Arabia;

    Faculty of Chemistry, University of Science, VNU-HCM, Ho Chi Minh City 721337, Vietnam;

    Department of Chemistry, University of California-Berkeley, Materials Sdences Division, Lawrence Berkeley National Laboratory, Kavli Energy NanoSciences Institute at Berkeley, and Berkeley Global Science Institute, Berkeley, California 94720, United States,King Fahd University of Petroleum and Minerals, Dhahran 34464, Saudi Arabia;

    Department of Chemistry, University of California-Berkeley, Materials Sdences Division, Lawrence Berkeley National Laboratory, Kavli Energy NanoSciences Institute at Berkeley, and Berkeley Global Science Institute, Berkeley, California 94720, United States,King Fahd University of Petroleum and Minerals, Dhahran 34464, Saudi Arabia;

  • 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 03:08:46

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