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首页> 外文期刊>Advanced Functional Materials >Photochromic Polymers Based on the Photoinduced Opening and Thermal Closing of [1,3]Oxazine Rings
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Photochromic Polymers Based on the Photoinduced Opening and Thermal Closing of [1,3]Oxazine Rings

机译:基于[1,3] O嗪环的光致开环和热闭合的光致变色聚合物

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摘要

Two macromolecular constructs incorporating a single polymer backbone with multiple photochromic side chains are developed. Both systems are prepared from preformed photochromic [1,3]oxazines after the ring-opening polymerization of their norbornene appendages. In solution, UV illumination of these polymers opens the [1,3]oxazine rings in their side chains in less than 6 ns and with a quantum yield of 0.09 in both instances. The photogenerated species incorporate a 4-nitrophenolate chromophore, and hence, their formation is accompanied by the appearance of an intense band in the visible region of the absorption spectrum. The photoproducts revert spontaneously to the original state with first-order kinetics in microseconds. Furthermore, both photochromic polymers tolerate hundreds of switching cycles with no sign of degradation, even in the presence of molecular oxygen. Thus, this design logic and choice of functional building blocks can translate into the realization of innovative photoresponsive materials with excellent photochromic performance.
机译:开发了结合了具有多个光致变色侧链的单个聚合物主链的两个大分子构建体。两种系统均由预成型的光致变色[1,3]恶嗪在降冰片烯附件开环聚合后制得。在溶液中,这些聚合物的UV照射在不到6 ns的时间内在其侧链中打开[1,3]恶嗪环,两种情况下的量子产率均为0.09。光生物质结合有4-硝基酚盐发色团,因此,它们的形成伴随有在吸收光谱的可见光区中出现强条带。光产物以微秒级的一级动力学自发地恢复到原始状态。此外,即使在存在分子氧的情况下,两种光致变色聚合物都可以承受数百个转换周期,而没有降解迹象。因此,这种设计逻辑和功能构造块的选择可以转化为具有出色光致变色性能的创新型光敏材料的实现。

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  • 来源
    《Advanced Functional Materials》 |2009年第24期|3956-3961|共6页
  • 作者单位

    Department of Chemistry University of Miami Coral Cables, FL 33146-0431 (USA);

    Department of Chemistry University of Miami Coral Cables, FL 33146-0431 (USA);

    Dipartimento di Chimica Industriale e dei Materiali INSTM UdR-Bologna Universita di Bologna I-40136 Bologna (Italy);

    Dipartimento di Scienze Chimiche Universita di Catania Catania, I-95125 (Italy);

    Department of Chemistry University of Miami Coral Cables, FL 33146-0431 (USA);

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