Suppr超能文献

用于光开关固态到液态转变及太阳能热燃料的光致变色树枝状大分子。

Photochromic Dendrimers for Photoswitched Solid-To-Liquid Transitions and Solar Thermal Fuels.

作者信息

Xu Xingtang, Zhang Peng, Wu Bo, Xing Youmei, Shi Ke, Fang Weihua, Yu Haifeng, Wang Guojie

机构信息

School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China.

Hangzhou Greenda Electronic Materials Company Ltd., Hangzhou 310051, China.

出版信息

ACS Appl Mater Interfaces. 2020 Nov 4;12(44):50135-50142. doi: 10.1021/acsami.0c14160. Epub 2020 Oct 21.

Abstract

Dendrimers are well-defined, highly branched macromolecules that have been widely applied in the fields of catalysis, sensing, and biomedicine. Here, we present a novel multifunctional photochromic dendrimer fabricated through grafting azobenzene units onto dendrimers, which not only enables controlled switching of adhesives and effective repair of coating scratches but also realizes high-performance solar energy storage and on-demand heat release. The switchable adhesives and healable coatings of azobenzene-containing dendrimers are attributed to the reversible solid-to-liquid transitions because trans-isomers and cis-isomers have different glass transition temperatures. The adhesion strengths increase significantly with the increase in dendrimer generations, wherein the adhesion strength of fifth-generation photochromic dendrimers (G5-Azo) can reach up to 1.62 MPa, five times higher than that of pristine azobenzenes. The solar energy storage and heat release of dendrimer solar thermal fuels, the isomers of which possess different chemical energies, can be also enhanced remarkably with the amplification of azobenzene groups on dendrimers. The storage energy density of G5-Azo can reach 59 W h kg, which is much higher than that of pristine azobenzenes (36 W h kg). The G5-Azo fuels exhibit a 5.2 °C temperature difference between cis-isomers and trans-isomers. These findings provide a new perspective and tremendously attractive avenue for the fabrication of photoswitchable adhesives and coatings and solar thermal fuels with dendrimer structures.

摘要

树枝状大分子是定义明确、高度分支的大分子,已广泛应用于催化、传感和生物医学领域。在此,我们展示了一种新型多功能光致变色树枝状大分子,它是通过将偶氮苯单元接枝到树枝状大分子上制备而成的,不仅能够实现粘合剂的可控切换和涂层划痕的有效修复,还能实现高性能的太阳能存储和按需放热。含偶氮苯树枝状大分子的可切换粘合剂和可自愈涂层归因于可逆的固 - 液转变,因为反式异构体和顺式异构体具有不同的玻璃化转变温度。随着树枝状大分子代数的增加,粘附强度显著提高,其中第五代光致变色树枝状大分子(G5 - Azo)的粘附强度可达1.62 MPa,比原始偶氮苯高五倍。树枝状大分子太阳能热燃料的太阳能存储和放热,其异构体具有不同的化学能,也可随着树枝状大分子上偶氮苯基团的增加而显著增强。G5 - Azo的储能密度可达59 W h/kg,远高于原始偶氮苯(36 W h/kg)。G5 - Azo燃料在顺式异构体和反式异构体之间表现出5.2℃的温差。这些发现为制备具有树枝状大分子结构的光开关粘合剂和涂层以及太阳能热燃料提供了新的视角和极具吸引力的途径。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验