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在潮湿环境中具有优异隔热性能的共轭微孔聚合物泡沫。

Conjugated microporous polymer foams with excellent thermal insulation performance in a humid environment.

作者信息

Feng Nianyun, Wu Shujuan, Song Danna, Li Yimeng, Lu Naijia, Sun Lei, Yu Tie, Li An, Deng Weiqiao

机构信息

Institute of Frontier and Interdisciplinary Science, Shandong University Qingdao 266200 China

College of Petrochemical Technology, Lanzhou University of Technology Langongping Road 287 Lanzhou 730050 China

出版信息

RSC Adv. 2021 Apr 14;11(23):13957-13963. doi: 10.1039/d1ra01616d. eCollection 2021 Apr 13.

Abstract

This work reported two monolithic conjugated microporous polymer (CMP) foams synthesized through the Sonogashira-Hagihara cross-coupling reaction without mechanical stirring. The as-synthesized (CMP-ED and CMP-PT) foams exhibited superior hydrophobicity and low apparent density of 58 mg cm and 63 mg cm. In addition, CMP-ED displayed a low thermal conductivity of 34.04 mW m K, which was comparable with commercial SiO aerogels (34.09 mW m K) at 50% humidity conditions. When the environment humidity was raised from 50% to 70%, the thermal conductivity of CMP-ED and commercial SiO aerogels improved by 0.12% and 7%, respectively. Furthermore, XRD, FTIR, BET and TG were conducted to evaluate the bulk structure and stability of CMP-ED and CMP-PT. The results illustrated the thermal conductivity values were greatly affected by the pore structure of foams. And the strong hydrophobicity and the narrow pore structure were responsible for the good thermal insulation performance under humid conditions. Considering the low density, superhydrophobicity, excellent physicochemical stability and impervious thermal conductivity in a high humidity environment, this CMP-ED presented great potential as an insulating material in a humid environment.

摘要

这项工作报道了通过Sonogashira-Hagihara交叉偶联反应在无机械搅拌的情况下合成的两种整体共轭微孔聚合物(CMP)泡沫。合成的(CMP-ED和CMP-PT)泡沫表现出优异的疏水性,表观密度低至58 mg/cm³和63 mg/cm³。此外,CMP-ED的热导率为34.04 mW/(m·K),在50%湿度条件下与商用SiO气凝胶(34.09 mW/(m·K))相当。当环境湿度从50%提高到70%时,CMP-ED和商用SiO气凝胶的热导率分别提高了0.12%和7%。此外,进行了XRD、FTIR、BET和TG测试以评估CMP-ED和CMP-PT的整体结构和稳定性。结果表明,热导率值受泡沫孔结构的影响很大。并且强疏水性和狭窄的孔结构是在潮湿条件下具有良好隔热性能的原因。考虑到低密度、超疏水性、优异的物理化学稳定性以及在高湿度环境下不可渗透的热导率,这种CMP-ED作为潮湿环境中的绝缘材料具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d78/8697720/888dfa76fb07/d1ra01616d-s1.jpg

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