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首页> 外文期刊>RSC Advances >A comparison of experimental and theoretical studies of benzoquinone modified poly(thiophene): effect of polymerization techniques on the structure and properties
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A comparison of experimental and theoretical studies of benzoquinone modified poly(thiophene): effect of polymerization techniques on the structure and properties

机译:苯醌改性聚(噻吩)的实验和理论研究比较:聚合技术对结构与性能的影响

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The present manuscript reports the synthesis of benzoquinone (BQ) modified polythiophene (PTh) by chemical and microwave-assisted polymerization techniques. The synthesized oligomers were investigated for their spectral, morphological and thermal properties via FTIR, UV-visible, scanning electron microscopy (SEM) and thermogravimetric (TGA) analyses. Theoretical calculations were performed by using Gaussian 09 software via the DFT/B3LYP method with the 6-311G basis set. FTIR confirmed the formation of hydroquinone modified PTh when the polymerization was carried out by magnetic stirring and ultrasonication, while the formation of BQ modified PTh was obtained by microwave irradiation. The electronic transitions obtained via experimental UV-visible studies were also found to be in close agreement with the theoretical spectra. SEM revealed a well-formed morphology comprising needle shaped rods for the oligomer synthesized under microwave irradiation. The TGA-DTA studies revealed low char content for the above oligomer, while the florescence studies revealed intense emission around 450 nm. The highest quantum yield was found to be 0.024, which also showed high singlet oxygen generation tendency as well as a high single oxygen quantum yield of 0.30 and could be utilized to design imaging probes applicable in photodynamic therapy.
机译:本手稿通过化学和微波辅助聚合技术报告了合成苯醌(BQ)改性的聚噻吩(PTH)。研究了合成的低聚物,通过FTIR,UV可见,扫描电子显微镜(SEM)和热重度(TGA)分析来研究它们的光谱,形态和热性能。通过使用6-311G基础集通过DFT / B3LYP方法使用高斯09软件进行理论计算。当通过磁力搅拌和超声进行聚合进行聚合时,FTIR确认了氢醌改性的PTH的形成,而通过微波辐射获得BQ改性PTH的形成。还发现通过实验UV可见研究获得的电子转变与理论光谱密切一致。 SEM揭示了一种形成良好的形态,包括用于在微波辐射下合成的低聚物的针形杆。 TGA-DTA研究显示出上述低聚物的低炭含量,而繁殖研究揭示了450nm左右的强烈发射。发现最多的量子产率为0.024,其也显示出高态氧产生趋势以及高单氧量子产率为0.30,并且可用于设计适用于光动力疗法的成像探针。

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