DENG Hong-gui, JIN Shuang-ling, ZHAN Liang, WANG Yan-li, . Synthesis of porous carbons from metal-organic coordination polymers and their adsorption performance for carbon dioxide. New Carbon Mater., 2012, 27(3): 194-199. doi: 10.1016/S1872-5805(12)60013-4
Citation: DENG Hong-gui, JIN Shuang-ling, ZHAN Liang, WANG Yan-li, . Synthesis of porous carbons from metal-organic coordination polymers and their adsorption performance for carbon dioxide. New Carbon Mater., 2012, 27(3): 194-199. doi: 10.1016/S1872-5805(12)60013-4

Synthesis of porous carbons from metal-organic coordination polymers and their adsorption performance for carbon dioxide

doi: 10.1016/S1872-5805(12)60013-4
Funds:  National Natural Science Foundation of China (50730003, 50672025, 20806024, and 51002051), Fundamental Research Funds for the Central Universities (WA1014016), and Research Fund of China 863 program (2008AA062302).
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  • Author Bio:

    DENG Hong-gui(1984-), male, Ph.D., engaged in the research of porous carbons

  • Corresponding author: ZHAN Liang.
  • Received Date: 2011-11-08
  • Accepted Date: 2012-07-20
  • Rev Recd Date: 2012-02-03
  • Publish Date: 2012-06-20
  • A series of porous carbons (PCs) was synthesized from nonporous metal-organic coordination polymers (MOCPs), using in-situ polymerized phenol resin as a carbon precursor. The optimized PC has a BET surface area of 2368m2/g and an equilibrium CO2 adsorption capacity of 2.9mmol/g at 300K and atmospheric pressure. The porous structure of the PCs can be controlled by the formulations of the carbon precursors and gelation/aging time. Meanwhile, the evaporated Zn from the thermal decomposition of the MOCPs acts as an activation agent during carbonization, which eventually improves the microporosity of the PCs. The CO2 equilibrium adsorption capacity increases with increasing Brunauer-Emmett-Teller surface area of the PCs.
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      沈阳化工大学材料科学与工程学院 沈阳 110142

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