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Microporous organic polymers based on tetraethynyl building blocks with N-functionalized pore surfaces: synthesis, porosity and carbon dioxide sorption

机译:基于四丙烯基建筑块的微孔有机聚合物,具有N-官能化孔隙表面:合成,孔隙率和二氧化碳吸附

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摘要

A series of microporous organic polymers (MOPs) based on tetraethynyl monomers such as tetrakis(4-ethynylphenyl) methane and tetrakis(4-ethynylphenyl) silane was synthesized via conventional Sonogashira-Hagihara coupling reaction. The resulting MOPs were characterized by thermogravimetric analyses, IR-spectra, scanning electron microscopies, and the Brunauer-Emmett-Teller (BET) method. The incorporation of triphenylamine or azobenzene moieties into the polymer skeleton increases the number of electron donating basic nitrogen sites in the porous frameworks. Thus, these MOPs could exhibit efficient adsorption of Lewis acidic CO2 molecules and display good CO2-over-N-2 selectivity. The triphenylamine-based polymer, TEPM-TPA, shows a high BET specific surface area up to 1072 m(2) g(-1) with a moderate CO2 uptake capacity of 2.41 mmol g(-1) at 273 K and 1.13 bar. As for separation of CO2, both TEPM-Azo and TEPS-Azo exhibit relatively high CO2-over-N-2 selectivities of 70.8 and 64.7 at 273 K, respectively, due to the N-2-phobic feature of azo-based polymers.
机译:通过常规Sonogashira-Hagihara偶联反应合成基于四丙烯酸单体如四丙烯酸单体如四丙烯酸单体的微孔有机聚合物(MOP),例如四乙炔单体,硅烷。得到的MOP是通过热重分析,IR-Spectra,扫描电子显微镜和Brunauer-Emmett-Teller(Bet)方法的特征。将三苯胺或偶氮苯部分掺入聚合物骨架中增加了多孔框架中的电子碱性氮位点的数量。因此,这些MOP可以表现出Lewis酸性CO2分子的有效吸附,并显示出良好的CO 2 - 过N-2选择性。三苯胺基聚合物TEPM-TPA,高达1072m(2)克(-1)的高白比表面积,其241mmolg(-1)的中等CO 2摄取容量为273k和1.13巴。对于CO 2的分离,由于基于偶氮聚合物的N-2-PHOBIC特征,TEPM-AZO和TEPS-AZO分别在273k下表现出相对高的CO 2-ov-2-2选择性70.8和64.7。

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  • 来源
    《RSC Advances》 |2016年第115期|共8页
  • 作者单位

    Wuhan Inst Technol Sch Chem Engn &

    Pharm Minist Educ Key Lab Green Chem Proc Wuhan 430073 Peoples R China;

    Shaanxi Normal Univ Sch Mat Sci &

    Engn Xian 710062 Peoples R China;

    Wuhan Inst Technol Sch Chem Engn &

    Pharm Minist Educ Key Lab Green Chem Proc Wuhan 430073 Peoples R China;

    Wuhan Univ Technol Sch Mat Sci &

    Engn Wuhan 430070 Peoples R China;

    Chinese Acad Sci Wuhan Inst Phys &

    Math State Key Lab Magnet Resonance &

    Atom &

    Mol Phys Wuhan 430071 Peoples R China;

    Chinese Acad Sci Wuhan Inst Phys &

    Math State Key Lab Magnet Resonance &

    Atom &

    Mol Phys Wuhan 430071 Peoples R China;

    Wuhan Inst Technol Sch Chem Engn &

    Pharm Minist Educ Key Lab Green Chem Proc Wuhan 430073 Peoples R China;

    Shaanxi Normal Univ Sch Mat Sci &

    Engn Xian 710062 Peoples R China;

    Wuhan Inst Technol Sch Chem Engn &

    Pharm Minist Educ Key Lab Green Chem Proc Wuhan 430073 Peoples R China;

    Wuhan Inst Technol Sch Chem Engn &

    Pharm Minist Educ Key Lab Green Chem Proc Wuhan 430073 Peoples R China;

    Wuhan Inst Technol Sch Chem Engn &

    Pharm Minist Educ Key Lab Green Chem Proc Wuhan 430073 Peoples R China;

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  • 正文语种 eng
  • 中图分类 化学;
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