A complex metal-organic framework catalyst for microwave-assisted radical polymerization

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作者
Ha L. Nguyen
Thanh T. Vu
Dinh-Khoi Nguyen
Christopher A. Trickett
Tan L. H. Doan
Christian S. Diercks
Viet Q. Nguyen
Kyle E. Cordova
机构
[1] Vietnam National University–Ho Chi Minh City (VNU–HCM),Center for Innovative Materials and Architectures (INOMAR)
[2] King Fahd University of Petroleum and Minerals,Center for Research Excellence in Nanotechnology (CENT)
[3] University of Science,Faculty of Chemistry
[4] VNU–HCM,Berkeley Global Science Institute
[5] University of California–Berkeley,National Key Lab for Polymer and Composite
[6] Bach Khoa University,undefined
[7] VNU–HCM,undefined
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Metal-organic frameworks (MOFs) have emerged as promising materials for use in practical applications of renewable energy, water harvesting, and catalytic transformation. Here we report the design of a highly porous MOF, termed MOF-907. Single crystal X-ray diffraction analysis, in combination with topological deconstruction, revealed a MOF based on trigonal prismatic secondary building units linked together by triangular and linear units to form a previously unseen net (nha) with minimal transitivity, which is rational for these constituent building units. The catalytic properties of MOF-907 for the microwave-assisted radical polymerization of methyl methacrylate were demonstrated. MOF-907 produced a poly methyl methacrylate product in a short reaction time (30 min) with high yield (98%), high molecular weight (20,680 g mol−1), and low polydispersity (1.23).
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