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Random Copolyesters Containing Perylene Bisimide: Flexible Films and Fluorescent Fibers

机译:含有Per双酰亚胺的无规共聚酯:柔性薄膜和荧光纤维

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Random copolyesters of poly(L-lactic acid) (PLLA) and [poly-(1,4-cyclohexylenedimethylene-1,4- cyclohexanedicarboxylate)] (PCCD) incorporating varying mol ratios of perylene bisimide (PBI) were developed via a high-temperature solution-blending approach, PCCD incorporating PBI was developed by melt polycondenzation followed by a polyester-polyester trans esterification reaction between PCCD—PBI and PLLA. The polymers exhibited good solubility in common organic solvents and formed free-standing films, which showed bright red emission upon irradiation with ultraviolet radiation. A solid state fluorescence quantum yield of 10% was observed for this PBI based polyester, which was much higher than that reported in literature for PBI based polymers in the solid state (<1%). Strong red fluorescent nanofibers of these polymers were successfully constructed by electrospinning technique. A random copolyester incorporating donor based on oligo(p-pheneylenevinylene) (OPV) and PBI as acceptor chromophore was also synthesized and fluorescence microscopy images of the electrospun fibers of this polymer exhibited blue, green and red emission upon excitation at different wavelengths. The high temperature solution blending approach involving a high molecular weight polymer and a suitably functionalized n conjugated molecule described here is a unique method by which 1D nanostructures of a wide range of π-conjugated chromophores could be fabricated having strong fluorescence, with the scope of application in nanoscale optoelectronics, biological devices, as well as sensing.
机译:聚(L-乳酸)(PLLA)和[聚-(1,4-环己二甲基-1,4-环己二羧酸酯)](PCCD)的无规共聚酯通过高摩尔比的developed二酰亚胺(PBI)混合而成。在温度溶液混合方法中,通过熔融缩聚反应,然后在PCCD-PBI和PLLA之间进行聚酯-聚酯酯交换反应,开发了包含PBI的PCCD。该聚合物在常见的有机溶剂中显示出良好的溶解性,并形成了自支撑的膜,当受到紫外线辐射时,该膜显示出鲜红色的发射。对于该基于PBI的聚酯,观察到固态荧光量子产率为10%,这远高于文献中针对固态的基于PBI的聚合物的报道(<1%)。这些聚合物的强红色荧光纳米纤维是通过静电纺丝技术成功构建的。还合成了无规共聚酯,其掺入了基于低聚(对-亚苯基亚乙烯基)(OPV)和PBI的供体作为受体生色团,并且该聚合物的电纺纤维的荧光显微镜图像在不同的波长激发后显示出蓝色,绿色和红色发光。本文所述的涉及高分子量聚合物和适当官能化的n共轭分子的高温溶液共混方法是一种独特的方法,通过该方法可以制备具有强荧光的宽范围π共轭生色团的一维纳米结构,其应用范围应用于纳米级光电,生物设备以及传感领域。

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