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Tuning the photoluminescence and anisotropic structure of PEDOT

机译:调整PEDOT的光致发光和各向异性结构

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In the current work, we study the photoluminescence and anisotropic structure of PEDOT which is obtained in the presence of ions that perturb the water structure (ions in Hofmeister series). The water content in PEDOT has been confirmed by TGA and DSC measurements. The weight loss and heat flux together provided refined information about water content in the synthesized PEDOT, and based on the characteristic energy value, we conclude that the water molecules are bonded to the PEDOT chains by hydrogen bonds. The physicochemical properties of the such prepared PEDOT have been studied, e.g. the presence of photoluminescence is observed for PEDOT in the solid-state (thin film) with the longest Stokes shift (273 nm). Similarly, photoluminescence has been detected for the aqueous PEDOT suspension with the lifetime of the excited state in the range of nanoseconds. Moreover, the PEDOT chains can undergo rearrangements under electrochemical performance with the formation of an anisotropic structure, which is confirmed by polarized microscopy and XRD measurements. The photoluminescence spectrum of the anisotropic PEDOT film contains sharp, well-resolved peaks.
机译:在当前的工作中,我们研究了在存在水结构(HofMeister系列中离子)的离子存在下获得的佩特的光致发光和各向异性结构。 TGA和DSC测量证实了PEDOT中的水含量。重量损失和热通量在一起提供了关于合成型型液体含量的精制信息,并基于特征能值,我们得出结论,水分子通过氢键键合到佩特链中。已经研究了这种制备的佩特的物理化学特性,例如,观察到光致发光的存在于具有最长的斯托克斯偏移(273nm)的固态(薄膜)中的转型。类似地,已经检测到用纳秒的激发态的寿命检测到光致发光。此外,PEDOT链可以通过形成各向异性结构的电化学性能进行重排,这通过偏振显微镜和XRD测量来确认。各向异性佩特膜的光致发光光谱含有尖锐的良好的峰。

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