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Hierarchically porous organic polymers: highly enhanced gas uptake and transport through templated synthesis

机译:分层多孔有机聚合物:通过模板合成大大提高了气体吸收和传输

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摘要

Porous organic polymers (POPs) possessing meso- and micropores can be obtained by carrying out the polymerization inside a mesoporous silica aerogel template and then removing the template after polymerization. The total pore volume (tpv) and specific surface area (ssa) can be greatly enhanced by modifying the template (up to 210% increase for tpv and 73% for ssa) as well as by supercritical processing of the POPs (up to an additional 142% increase for tpv and an additional 32% for ssa) to include larger mesopores. The broad range of pores allows for faster transport of molecules through the hierarchically porous POPs, resulting in increased diffusion rates and faster gas uptake compared to POPs with only micropores.
机译:具有中孔和微孔的多孔有机聚合物(POP)可通过在中孔二氧化硅气凝胶模板内进行聚合,然后在聚合后除去模板而获得。通过修改模板(tpv最多可增加210%,ssa最多可增加73%)以及POPs的超临界处理(最多可额外增加),可以大大提高总孔体积(tpv)和比表面积(ssa)。 tpv增加142%,ssa增加32%,以包括较大的中孔。与仅具有微孔的POP相比,宽范围的孔允许分子通过分层多孔的POP更快地传输,从而导致扩散速率增加和气体吸收更快。

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