Single-Crystal Structure of a Covalent Organic Framework.

The crystal structure of a new covalent organic framework, termed COF-320, is determined by single-crystal 3D electron diffraction using the rotation electron diffraction (RED) method for data collection. The COF crystals are prepared by an imine condensation of tetra-(4-anilyl)methane and 4,4′-biph...

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Published in:Journal of the American Chemical Society Vol. 135; no. 44; pp. 16336 - 16340
Main Authors: Yue-Biao Zhang, Jie Su, Hiroyasu Furukawa, Yifeng Yun, Gándara, Felipe, Duong, Adam, Xiaodong Zou, Yaghi, Omar M.
Format: Article
Published: American Chemical Society 11/6/2013
Subjects:
Online Access:View this record in EBSCOhost
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        atl: Single-Crystal Structure of a Covalent Organic Framework.
      aug:
        au:
          Yue-Biao Zhang
          Jie Su
          Hiroyasu Furukawa
          Yifeng Yun
          Gándara, Felipe
          Duong, Adam
          Xiaodong Zou
          Yaghi, Omar M.
        affil:
          Department of Chemistry, University of California, and Materials Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, United States
          Inorganic and Structural Chemistry and Berzelii Center EXSELENT on Porous Materials, Department of Materials and Environmental Chemistry, Stockholm University, Stockholm SE–106 91, Sweden
      su:
        Crystal structure
        Organic chemistry research
        Covalent bonds
        Covalent crystals
        Crystals
        Electron diffraction
        Optical diffraction
        Particles (Nuclear physics)
      sug:
        subj:
          Crystal structure
          Organic chemistry research
          Covalent bonds
          Covalent crystals
          Crystals
          Electron diffraction
          Optical diffraction
          Particles (Nuclear physics)
      ab: The crystal structure of a new covalent organic framework, termed COF-320, is determined by single-crystal 3D electron diffraction using the rotation electron diffraction (RED) method for data collection. The COF crystals are prepared by an imine condensation of tetra-(4-anilyl)methane and 4,4′-biphenyldialdehyde in 1,4-dioxane at 120 °C to produce a highly porous 9-fold interwoven diamond net. COF-320 exhibits permanent porosity with a Langmuir surface area of 2400 m/g and a methane total uptake of 15.0 wt % (176 cm/cm) at 25 °C and 80 bar. The successful determination of the structure of COF-320 directly from single-crystal samples is an important advance in the development of COF chemistry.
      pubtype: Academic Journal
      doctype: Article
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    language: English
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