私密直播全婐app免费大渔直播,国产av成人无码免费视频,男女同房做爰全过程高潮,国产精品自产拍在线观看

當前位置:群英聚首 > 論文著作 > 正文
Enhancing the performances of physically cross-linked photodeformable main-chain azobenzene poly(ester-amide)s via chemical structure engineering
來源:張會旗教授個人網站 發布日期:2022-12-03
作者:Yan Zhou, Lei Wang, Huiqi Zhang*
關鍵字:Photodeformable azobenzene polymers, main-chain azobenzene polymers, physically cross-linked, poly(ester-amide), Michael addition polymerization, structure-property relationship
論文來源:期刊
具體來源:Polymer Chemistry 2022, 13, 3713-3725.
發表時間:2022年
The synthesis of a series of photodeformable main-chain azobenzene (azo) poly(ester-amide)s (PEAs) with different flexible spacer lengths, molecular weights, and amide unit location via Michael addition polymerization and study of the correlation between their chemical structures and performances are first described. These PEAs showed low crystallinity degrees and glass transition temperatures, high thermal stability, reversible photoresponsivity, and amide unit-induced hydrogen bonding interactions. Their chemical structures exhibited a large influence on their film-forming capability as well as mechanical and photomechanical properties. Physically cross-linked uniaxially oriented fibers and films with high mechanical strength and reversible room-temperature photoinduced bending/unbending behaviors were fabricated from high-molecular-weight PEAs with a flexible spacer (-(CH2)(n)-) between the amide unit and azo mesogen (PEA-n), whereas their low-molecular-weight counterpart and PEA with the amide unit directly connected to the azo mesogen (PEA-2b) only formed brittle fibers/films. The mechanical strength of PEA-n fibers/films increased with the increase in the molecular weights and flexible spacer length, whereas optimal photomechanical effects were observed for PEA-n samples with a moderate molecular weight and a shorter flexible spacer (n = 2). The photomobile rates and amplitudes of PEA fibers/films can be well correlated with their elastic moduli and photoinduced stress. In addition, the decisive role of the aggregation states of PEA samples in their mechanical strength as well as those of both the amide unit-induced physical cross-linking and alignment structure in their photomobility was also demonstrated. This work not only presents photodeformable main-chain azo PEAs with enhanced performances via chemical structure engineering, but also lays the foundation for rationally designing more advanced physically cross-linked photomobile main-chain azo polymers.
Copyright © 2005 Polymer.cn All rights reserved
中國聚合物網 版權所有
經營性網站備案信息

京公網安備11010502032929號

工商備案公示信息

京ICP證050801號

京ICP備12003651號

主站蜘蛛池模板: 崇明县| 灵丘县| 分宜县| 信阳市| 望江县| 扎赉特旗| 钟山县| 静安区| 宜丰县| 信宜市| 屏南县| 新疆| 太仆寺旗| 陇南市| 大丰市| 河池市| 会泽县| 嘉祥县| 伊金霍洛旗| 古田县| 温州市| 瓦房店市| 海兴县| 吉木乃县| 汉川市| 青神县| 开化县| 津市市| 盘锦市| 同心县| 长海县| 和平县| 眉山市| 正阳县| 岳阳县| 遂川县| 临城县| 临泽县| 湖口县| 旺苍县| 峡江县|