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Achieving long lifetime of room-temperature phosphorescence via constructing vitrimer networks

机译:实现长寿命的室温通过构建vitrimer磷光网络

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摘要

Pure organic polymer materials exhibiting room-temperature phosphorescence (RTP) are highly desired for optoelectronic and biomedical applications. Covalent bonding of phosphors into a polymer matrix has been found to be successful in constructing efficient RTP materials owing to the substantial roles of the polymer matrix in restricting the molecular motion of phosphors and activating RTP emissions, thus fabricating new covalently crosslinked high-performance RTP materials is of great significance. Herein, a reasonable RTP system is constructed by covalently linking the phosphor (BF2epo) into an epoxy-based vitrimer network to obtain fluorescence and RTP double emissions. The 3D crosslinked polymer network structure restricts the molecular motion of BF2epo, depresses nonradiative transition and shields quenchers effectively. By altering the content of BF2epo, polychromatic photoluminescence and long phosphorescence lifetime are achieved under air conditions. The RTP emission intensity of this vitrimer material can respond to two different stimuli of ammonia and temperature, making it possible to work as sensors with good mechanical properties. Furthermore, the topology rearrangement of a dynamically crosslinked network structure endows this dual emission vitrimer with potential prospects in applications such as device fabrication and processing because of the advantages of excellent thermomechanical properties, high thermal stability, and self-repairing properties.
机译:纯有机聚合物材料展示室温磷光(RTP)是高度理想的光电和生物医学应用程序。聚合物基质被发现是成功的由于在构建高效的RTP材料聚合物基质的实质性的角色限制了荧光粉的分子运动激活RTP排放,因此制作新的高性能RTP共价交联材料具有重要意义。合理的RTP系统是由磷(BF2epo)共价连接到一个epoxy-based vitrimer网络获得荧光和RTP双排放。交联的聚合物网络结构限制BF2epo的分子运动,抑制了非辐射的过渡和盾牌饮料有效。多色的光致发光和长磷光寿命达到在空气中条件。vitrimer响应两种不同的材料刺激的氨气和温度,使它可以作为传感器具有良好的机械属性。动态交联的重排网络结构赋予这双发射vitrimer与潜在的应用前景如设备制造和加工因为优秀的热机械的的优势属性、高的热稳定性和自我修复特性。

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