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通过一锅法合成制备的可压缩整体式微孔聚合物海绵。

Compressible and monolithic microporous polymer sponges prepared via one-pot synthesis.

作者信息

Lim Yoonbin, Cha Min Chul, Chang Ji Young

机构信息

Department of Materials Science and Engineering, College of Engineering, Seoul National University, Seoul 151-744, South Korea.

出版信息

Sci Rep. 2015 Nov 4;5:15957. doi: 10.1038/srep15957.

Abstract

Compressible and monolithic microporous polymers (MPs) are reported. MPs were prepared as monoliths via a Sonogashira-Hagihara coupling reaction of 1,3,5-triethynylbenzene (TEB) with the bis(bromothiophene) monomer (PBT-Br). The polymers were reversibly compressible, and were easily cut into any form using a knife. Microscopy studies on the MPs revealed that the polymers had tubular microstructures, resembling those often found in marine sponges. Under compression, elastic buckling of the tube bundles was observed using an optical microscope. MP-0.8, which was synthesized using a 0.8:1 molar ratio of PBT-Br to TEB, showed microporosity with a BET surface area as high as 463 m(2)g(-1). The polymer was very hydrophobic, with a water contact angle of 145° and absorbed 7-17 times its own weight of organic liquids. The absorbates were released by simple compression, allowing recyclable use of the polymer. MPs are potential precursors of structured carbon materials; for example, a partially graphitic material was obtained by pyrolysis of MP-0.8, which showed a similar tubular structure to that of MP-0.8.

摘要

本文报道了可压缩的整体式微孔聚合物(MPs)。通过1,3,5-三乙炔基苯(TEB)与双(溴噻吩)单体(PBT-Br)的Sonogashira-Hagihara偶联反应制备出整体式MPs。这些聚合物具有可逆压缩性,用刀可轻松切成任何形状。对MPs的显微镜研究表明,这些聚合物具有管状微观结构,类似于海洋海绵中常见的结构。在压缩过程中,使用光学显微镜观察到管束的弹性屈曲。以PBT-Br与TEB摩尔比为0.8:1合成的MP-0.8具有微孔结构,其BET表面积高达463 m²/g。该聚合物具有很强的疏水性,水接触角为145°,能吸收自身重量7至17倍的有机液体。通过简单压缩即可释放被吸收物,使该聚合物可循环使用。MPs是结构化碳材料的潜在前驱体;例如,通过MP-0.8热解得到了一种部分石墨化的材料,其管状结构与MP-0.8相似。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f794/4632124/6226d4de927a/srep15957-f1.jpg

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