通过简单的化学修饰提高微孔聚合物的气体储存和分离性能

Q1 Materials Science
Sébastien Rochat, M. Tian, Ria S. Atri, T. Mays, A. Burrows
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引用次数: 4

摘要

由于具有较大的表面积和良好的溶剂加工性,固有微孔聚合物(PIMs)在气体储存和分离方面得到了广泛的研究。在这篇文章中,我们展示了如何通过化学修饰聚合物来微调其特性,以适应特定的、有针对性的应用。我们发现,将原型微孔聚合物PIM-1转化为聚羧酸盐可增强其对H2/CO2混合物(与制氢有关)的分离能力,而附加多个胺基可显著提高N2/CO2混合物(与烟气处理有关)的气体分离性能。在多孔聚合物材料中,基于吸附的分离工艺受到的关注比粒度筛分工艺少,但它们可以为高能耗的分离工艺(如低温蒸馏)提供合适的替代技术。我们还报道了改性聚合物的储氢性能,我们发现这取决于所进行的化学改性。通过将所提出的化学修饰的简单性与pim的可扩展性和多孔性相结合,我们为创建具有适应目标应用特性的新型多功能材料提供了蓝图。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancement of gas storage and separation properties of microporous polymers by simple chemical modifications
Owing to their large surface area and good solvent processability, polymers of intrinsic microporosity (PIMs) have been widely investigated for gas storage and separation processes. In this article, we show how chemically modifying the polymers can fine-tune their properties for specific, targeted applications. We find that converting the archetypal microporous polymer PIM-1 into a polycarboxylate salt enhances its separation capabilities for H2/CO2 mixtures (relevant to hydrogen production), whereas appending multiple amine groups significantly improves gas separation properties for N2/CO2 mixtures (relevant to flue gas treatment). Adsorption-based separation processes have received less attention than size-sieving processes in porous polymeric materials, however they could provide a suitable alternative technology to energy-intensive separation processes such as cryogenic distillation. We also report the hydrogen storage properties of the modified polymers, which we find to depend on the chemical modification carried out. By coupling the simplicity of the proposed chemical modifications with the scalability and porous properties of PIMs, we provide a blueprint to create new multifunctional materials with adapted properties for targeted applications.
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来源期刊
Multifunctional Materials
Multifunctional Materials Materials Science-Materials Science (miscellaneous)
CiteScore
12.80
自引率
0.00%
发文量
9
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