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首页> 外文期刊>Journal of Organometallic Chemistry >Silicon-containing porous organic polymers: Preparation, tunable porosity and carbon dioxide sorption
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Silicon-containing porous organic polymers: Preparation, tunable porosity and carbon dioxide sorption

机译:含硅多孔有机聚合物:制备,可调谐孔隙率和二氧化碳吸附

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摘要

Silicon-containing porous organic polymers, POP-1-POP-4, have been prepared by Sonogashira-Hagihara coupling reactions of tetrahedral silicon-centered monomers, i.e., tetrakis(4-bromophenyl)silane (p-Si) and tetrakis(3-bromophenyl)silane (m-Si), and pyridine-based precursors, i.e., 2,5-diethynylpyridine (p-DP) and 2,6-diethynylpyridine (m-DP). Compared with other porous polymers, the resulting materials exhibit high thermal stability and tunable porosity from nearly no porosity to moderate porosity with Brunauer-Emmett-Teller (BET) surface area of up to 410 m(2) g(-1) and pore volume of up to 0.34 cm(3) g(-1). It is found that their porosities largely depend on the structure geometry of silicon-centered and pyridine based monomers, as well as the reactivity of pyridine-based monomers. Further comparison with other silicon-containing porous polymers reveals that co-polymerization, i.e., introducing the second monomer is an efficient way to tune the porosity of the final materials. For applications, POP-1 and POP-2 possess moderate carbon dioxide uptakes of up to 1.41 mmol g(-1) at 273 K and 1.03 bar, and 0.87 mmol g(-1) (3.83 wt%) at 298 K and 1.01 bar (POP-1), as well as a comparably high binding ability with CO2 with an adsorption enthalpy of 29.3 kJ mol(-1), suggesting their potential applications as promising candidates for capturing and storing CO2. (C) 2016 Elsevier B.V. All rights reserved.
机译:含硅多孔有机聚合物,POP-1-POP-4已由四面体硅集体单体的Sonogashira-Hagihara偶联反应,即四(4-溴苯基)硅烷(P-Si)和四面体(3-溴苯基)硅烷(M-Si)和基于吡啶基前体,即2,5-二乙炔吡啶(P-DP)和2,6-二乙炔基吡啶(M-DP)。与其他多孔聚合物相比,所得材料具有高孔隙率的高热稳定性和可调孔隙率,与Brunauer-Emmett-exers(BET)表面积高达410米(2)G(-1)和孔体积高达0.34厘米(3)克(-1)。结果发现,它们的孔隙率在很大程度上取决于硅中心和吡啶基单体的结构几何形状,以及吡啶基单体的反应性。与其他含硅多孔聚合物的进一步比较揭示了共聚的,即引入第二单体是调节最终材料的孔隙率的有效方法。对于应用,POP-1和POP-2在273 k和1.03棒中具有高达1.41mmol G(-1)的中等二氧化碳摄取,以及0.87mmol G(-1)(3.83wt%),在298 k和1.01棒(POP-1)以及具有29.3kJ摩尔(-1)的吸附焓的CO2相对高的结合能力,表明其潜在应用是捕获和存储CO2的承诺候选者。 (c)2016 Elsevier B.v.保留所有权利。

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