Photochemical properties of side-chain coumarin polymers

O. Krupka, F. Derf, D. Gindre, M. Sallé
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Abstract

Photosensitive materials attract many attention due to their potential application in optical devices such as optical data storage, optical communication, ...[1]. Coumarines and their analogues are well-known for their reversible photoinduced cyclodimerisation properties, leading to cyclobutane-based dimers (scheme) [2]. This equilibrium can be tuned according to the wavelength which is applied, and the resulting systems are of course dramatically structurally and electronically different. Therefore, the coumarine system offers a unique opportunity for applications in various fields involving conjugated molecular frameworks. In the area of photonics and nonlinear optics one of the great advantages of functionalized materials lies on the photochemical properties of the polymer. In the present work, homo- and copolymers built from the free radical polymerization of methacrylic monomers incorporating a coumarin side-group have been synthesized and structurally characterized. Results of photochemical and optical activities of the corresponding polymers will be presented.
侧链香豆素聚合物的光化学性质
光敏材料因其在光数据存储、光通信等光学器件中的潜在应用而备受关注[1]。courmarines及其类似物以其可逆的光诱导环二聚化特性而闻名,可形成环丁烷基二聚体(方案)[2]。这种平衡可以根据所应用的波长进行调整,由此产生的系统当然在结构和电子上都有很大的不同。因此,在涉及共轭分子框架的各种领域中,coumarine体系提供了独特的应用机会。在光子学和非线性光学领域,功能化材料的一大优势在于聚合物的光化学性质。在目前的工作中,由含有香豆素侧基的甲基丙烯酸单体自由基聚合而成的同源共聚物和共聚物已经合成并进行了结构表征。将给出相应聚合物的光化学和光学活性的结果。
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