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通过后聚合表面改性制备的光致变色材料

Photochromic Materials by Postpolymerisation Surface Modification.

作者信息

Chng Shuyun, Moloney Mark G, Wu Linda Y L

机构信息

Department of Chemistry, Chemistry Research Laboratory, The University of Oxford, 12-Mansfield Road, Oxford OX1 3TA, United Kingdom.

Singapore Institute of Manufacturing Technology, 2 Fusionopolis Way, #08-04, Innovis, Singapore 138634.

出版信息

ACS Omega. 2018 Nov 15;3(11):15554-15565. doi: 10.1021/acsomega.8b02521. eCollection 2018 Nov 30.

Abstract

Photochromic materials are available by a postpolymerization surface modification of diverse polymers in a multistep sequential process mediated, first, by carbene insertion chemistry, second, by diazonium coupling with a tethered precursor, and finally by coupling to a spiropyran. This three-step sequence is efficient, and surface loading densities of 10 molecules cm are typically achievable, leading to materials with observable photochromic and wettability behavior, which operate over multiple cycles without significant photobleaching or loss of efficacy. Materials suitable for application in this process include both reactive, but also lower surface energy polymers. Although the process is particularly efficient for high surface area materials, surface modification onto lower surface area substrates, while being intrinsically less efficient, is nonetheless sufficiently effective that changes in macroscopic photochromic properties are readily observable.

摘要

通过多步连续过程对多种聚合物进行后聚合表面改性可获得光致变色材料,该过程首先由卡宾插入化学介导,其次由重氮与连接的前体偶联,最后与螺吡喃偶联。这个三步序列是有效的,通常可以实现10个分子/平方厘米的表面负载密度,从而得到具有可观察到的光致变色和润湿性的材料,这些材料可在多个循环中运行而不会出现明显的光漂白或功效损失。适用于此过程的材料包括活性聚合物和低表面能聚合物。尽管该过程对高表面积材料特别有效,但在低表面积基材上进行表面改性虽然本质上效率较低,但仍然足够有效,以至于宏观光致变色性能的变化很容易观察到。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d62/6644173/3da4350e3c1a/ao-2018-02521g_0001.jpg

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