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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Effect of polymer precursors on carbon molecular sieve structure and separation performance properties
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Effect of polymer precursors on carbon molecular sieve structure and separation performance properties

机译:聚合物前体对碳分子筛结构和分离性能的影响

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摘要

Polymer precursor and processing method have a significant effect on the separation performance of carbon molecular sieve (CMS) membranes. The authors previously developed a polymer processing method involving oxygen exposure during pyrolysis using synthesized polyimide, 6FDA/BPDA-DAM. The objectives of this work were (i) to demonstrate the generality of the oxygen doping method with a commercially available polymer Matri-mid~R, (ii) to investigate resultant CMS membrane structures, and (iii) to engineer the CMS performance observed with Matrimid~R precursor by tuning the pyrolysis temperature. The investigation of the pore structures is challenging due to their amorphous structures. Various researchers investigated using traditional characterization methods, such as XRD and adsorption, yet molecular sieving structure in ultramicropore region is still not known. Here, the authors investigated using gas molecules as a probe. By interpolating the characterization results, hypothetical ultramicropore size distributions for each CMS membranes are suggested. The results are used to explain dramatically different separation performance trends observed between 6FDA/BPDA-DAM and Matrimid~R CMS membranes and to adapt the doping method on Matrimid~R CMS membrane for better performance.*
机译:聚合物前驱物和加工方法对碳分子筛(CMS)膜的分离性能有重要影响。作者先前开发了一种聚合物处理方法,其中涉及使用合成的聚酰亚胺6FDA / BPDA-DAM在热解过程中暴露于氧气。这项工作的目的是(i)证明使用市售聚合物Matri-mid〜R进行氧掺杂方法的一般性;(ii)研究所得CMS膜结构,以及(iii)设计经观察到的CMS性能。通过调节热解温度,Matrimid〜R前体。由于其无定形结构,对孔结构的研究具有挑战性。各种研究人员使用传统的表征方法(例如XRD和吸附)进行了研究,但仍不知道超微孔区域的分子筛结构。在这里,作者研究了使用气体分子作为探针。通过内插表征结果,建议每个CMS膜的假设超微孔尺寸分布。结果可用于解释在6FDA / BPDA-DAM与Matrimid〜R CMS膜之间观察到的截然不同的分离性能趋势,并适用于Matrimid〜R CMS膜上的掺杂方法以实现更好的性能。*

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