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通过将偶氮苯分子接枝到高分子网络来优化硅橡胶的能量收集性能。

Optimizing energy harvesting performance of silicone elastomers by molecular grafting of azobenzene to the macromolecular network.

作者信息

Gong Min, Song Feilong, Li Hejian, Lin Xiang, Wang Jiaping, Zhang Liang, Wang Dongrui

机构信息

School of Chemistry and Biological Engineering, University of Science & Technology Beijing Beijing 100083 PR China

China Astronaut Research and Training Center Beijing 100094 PR China.

出版信息

RSC Adv. 2021 May 26;11(31):19088-19094. doi: 10.1039/d1ra01433a. eCollection 2021 May 24.

Abstract

The dielectric elastomer generator (DEG) has attracted significant attention in the past decade for harvesting energy from reciprocating mechanical motion owing to its variable capacitance under tension. However, the challenge of conceiving novel DEGs with high energy harvesting performance should be addressed. In this work, azobenzene molecules with strong polarity were synthesized and chemically grafted onto a hydroxyl-terminated polydimethylsiloxane (PDMS) network through a simple one-step process, offering a robust, molecularly homogenous silicone rubber. In addition, dimethyl silicone oil (DMSO) plasticizer was simultaneously added to reduce the mechanical modulus of the composite. The loading content of DMSO was firstly optimized in terms of the mechanical and dielectric properties of the resultant azo--PDMS/DMSO elastomers. Then, the effects of azobenzene loading on the morphology, and mechanical, dielectric and electric generation performances were thoroughly investigated. Overall, the dielectric permittivity displayed a rising trend with the increase of the azobenzene content while the breakdown strength increased initially and then decreased. The breakdown strength could reach as high as 73 V μm by grafting with 7 phr of azobenzene while maintaining a relatively low mechanical modulus. Meanwhile, the as-prepared azo--PDMS/DMSO films exhibited enhanced energy harvesting density (0.69 mJ cm) and electromechanical conversion efficiency (5.01%) at a bias voltage of 1500 V, which were 2 and 2.5 times as much as those of the azobenzene-free matrix. This work provides ideas for future applications of DEG with high energy harvesting performance.

摘要

在过去十年中,介电弹性体发电机(DEG)因其在张力下可变的电容,能够从往复机械运动中收集能量,而备受关注。然而,仍需应对设计具有高能量收集性能的新型DEG这一挑战。在这项工作中,通过简单的一步法合成了具有强极性的偶氮苯分子,并将其化学接枝到羟基封端的聚二甲基硅氧烷(PDMS)网络上,从而得到一种坚固的、分子均匀的硅橡胶。此外,同时添加二甲基硅油(DMSO)增塑剂以降低复合材料的机械模量。首先根据所得偶氮 - PDMS/DMSO弹性体的机械和介电性能优化了DMSO的负载量。然后,深入研究了偶氮苯负载量对形态以及机械、介电和发电性能的影响。总体而言,介电常数随偶氮苯含量的增加呈上升趋势,而击穿强度先增加后降低。通过接枝7份(phr)偶氮苯,击穿强度可高达73 V/μm,同时保持相对较低的机械模量。与此同时,所制备的偶氮 - PDMS/DMSO薄膜在1500 V偏置电压下表现出增强的能量收集密度(0.69 mJ/cm)和机电转换效率(5.01%),分别是无偶氮苯基体的2倍和2.5倍。这项工作为具有高能量收集性能的DEG的未来应用提供了思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05e8/9033487/2acbaedf67ac/d1ra01433a-s1.jpg

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