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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Micropore Analysis of Polymer Networks by Gas Sorption and 129Xe NMR Spectroscopy: Toward a Better Understanding of Intrinsic Microporosity
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Micropore Analysis of Polymer Networks by Gas Sorption and 129Xe NMR Spectroscopy: Toward a Better Understanding of Intrinsic Microporosity

机译:通过气体吸附和129Xe NMR光谱对聚合物网络进行微孔分析:更好地了解本征微孔率

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摘要

The microporosity of two microporous polymer networks is investigated in detail. Both networks are based on a central spirobifluorene motif but have different linker groups, namely, imide and thiophene units. The microporosity of the networks is based on the “polymers of intrinsic microporosity (PIM)” design strategy. Nitrogen, argon, and carbon dioxide were used as sorbates in order to analyze the microporosity in greater detail. The gas sorption data was analyzed with respect to important parameters such as specific surface area, pore volume, and pore size (distribution). It is shown that the results can be strongly model dependent and swelling effects have to be regarded. ~(129)Xe NMR was used as an independent technique for the estimation of the average pore size of the polymer networks. The results indicate that both networks are mainly ultramicroporous (pore sizes < 0.8 nm) in the dry state, which was not expected based on the molecular design. Phase separation and network defects might influence the overall network morphology strongly. Finally, the observed swelling indicates that this “soft” microporous matter might have a different micropore size in the solvent swollen/filled state that in the dry state.
机译:详细研究了两个微孔聚合物网络的微孔率。两种网络均基于中心螺二芴基序,但具有不同的连接基团,即酰亚胺和噻吩单元。网络的微孔性基于“固有微孔性(PIM)的聚合物”设计策略。氮气,氩气和二氧化碳用作吸附剂,以便更详细地分析微孔率。针对重要参数(例如比表面积,孔体积和孔径(分布))分析了气体吸附数据。结果表明,结果可能与模型有很大关系,因此必须考虑溶胀效应。 〜(129)Xe NMR被用作估计聚合物网络平均孔径的独立技术。结果表明,两个网络在干燥状态下都主要是超微孔(孔径<0.8 nm),这是基于分子设计无法预期的。相分离和网络缺陷可能会严重影响整个网络的形态。最后,观察到的溶胀表明,该“软”微孔物质在溶剂溶胀/填充状态下的干孔大小可能与在干燥状态下不同。

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