4.8 Article

Carbon dioxide capture and efficient fixation in a dynamic porous coordination polymer

Journal

NATURE COMMUNICATIONS
Volume 10, Issue -, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-019-12414-z

Keywords

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Funding

  1. Natural Science Foundation of Jiangsu Province for Outstanding Youth [BK20180105]
  2. National Natural Science Foundation of China [21401087, 21401086]
  3. PAPD of Jiangsu Higher Education Institution
  4. TAPP of Jiangsu Higher Education Institution
  5. JSPS KAKENHI [25000007, JP18H05262]
  6. WPI-iCeMS

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Direct structural information of confined CO2 in a micropore is important for elucidating its specific binding or activation mechanism. However, weak gas-binding ability and/or poor sample crystallinity after guest exchange hindered the development of efficient materials for CO2 incorporation, activation and conversion. Here, we present a dynamic porous coordination polymer (PCP) material with local flexibility, in which the propeller-like ligands rotate to permit CO2 trapping. This process can be characterized by X-ray structural analysis. Owing to its high affinity towards CO2 and the confinement effect, the PCP exhibits high catalytic activity, rapid transformation dynamics, even high size selectivity to different substrates. Together with an excellent stability with turnover numbers (TON) of up to 39,000 per Zn-1.5 cluster of catalyst after 10 cycles for CO2 cycloaddition to form value-added cyclic carbonates, these results demonstrate that such distinctive structure is responsible for visual CO2 capture and size-selective conversion.

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