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用于增强能量耗散的模板聚合制备的纳米网络热固性材料

Nanonetwork Thermosets from Templated Polymerization for Enhanced Energy Dissipation.

作者信息

Siddique Suhail K, Lin Tze-Chung, Chang Cheng-Yen, Chang Yung-Hsuan, Lee Chang-Chun, Chang Shou-Yi, Tsai Ping-Chi, Jeng Yeau-Ren, Thomas Edwin L, Ho Rong-Ming

机构信息

Department of Chemical Engineering, National Tsing Hua University, Hsinchu 30013, Taiwan.

Department of Power Mechanical Engineering, National Tsing Hua University, Hsinchu 30013, Taiwan.

出版信息

Nano Lett. 2021 Apr 28;21(8):3355-3363. doi: 10.1021/acs.nanolett.0c03514. Epub 2021 Apr 15.

Abstract

Herein, we aim to develop a facile method for the fabrication of mechanical metamaterials from templated polymerization of thermosets including phenolic and epoxy resins using self-assembled block copolymer, polystyrene-polydimethylsiloxane with tripod network (gyroid), and tetrapod network (diamond) structures, as templates. Nanoindentation studies on the nanonetwork thermosets fabricated reveal enhanced energy dissipation from intrinsic brittle thermosets due to the deliberate structuring; the calculated energy dissipation for gyroid phenolic resins is 0.23 nJ whereas the one with diamond structure gives a value of 0.33 nJ. Consistently, the gyroid-structured epoxy gives a high energy dissipation value of 0.57 nJ, and the one with diamond structure could reach 0.78 nJ. These enhanced properties are attributed to the isotropic periodicity of the nanonetwork texture with plastic deformation, and the higher number of struts in the tetrapod diamond network in contrast to tripod gyroid, as confirmed by the finite element analysis.

摘要

在此,我们旨在开发一种简便的方法,以自组装嵌段共聚物、具有三脚架网络(类螺旋体)和四脚架网络(菱形)结构的聚苯乙烯-聚二甲基硅氧烷为模板,通过热固性树脂(包括酚醛树脂和环氧树脂)的模板聚合来制造机械超材料。对所制备的纳米网络热固性材料进行的纳米压痕研究表明,由于刻意构建结构,固有脆性热固性材料的能量耗散增强;类螺旋体酚醛树脂的计算能量耗散为0.23纳焦,而具有菱形结构的酚醛树脂能量耗散值为0.33纳焦。同样,类螺旋体结构的环氧树脂具有0.57纳焦的高能量耗散值,而具有菱形结构的环氧树脂能量耗散可达0.78纳焦。有限元分析证实,这些增强的性能归因于纳米网络纹理的各向同性周期性以及塑性变形,并且与三脚架类螺旋体相比,四脚架菱形网络中的支柱数量更多。

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