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Optical and Photo-Electrochemical Characterization of Organic-Inorganic Photosensitive Materials

机译:有机无机光敏材料的光学和光电化学表征

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This work reports on the optical and photoelectrochemical properties of polybithiophene (PBiTh) films electrochemically synthesized onto indium-tin oxide (ITO) substrates and modified with incorporation of indium phosphide (InP) when present in solution during polymerization. The properties of the composite layers were studied by electrochemical method (cyclic voltammetry), scanning electron microscopy (SEM), UV-vis spectroscopy and photocurrent measurements. From UV-vis spectroscopy studies, the absorbance of the composite is larger than the polybithiophene absorbance in the UV region. The cathodic photocurrent reflected the p-type semiconductor behaviour of the electrosynthesized polybiththiophenes. Addition of InP semiconductors the improves the photocurrent at cathodic potential (~4μA/cm{sup}2 at 100mW/cm{sup}2) indicating the acceptor molecule acts as an exciton dissociation center, improving the number of charge carriers transported through the polymer to reach the solid-liquid electrolyte interface. It was found that the photosensitive composite material (PBiTh-InP) has good photoelectrochemical and optical properties.
机译:该工作报告了在氧化铟锡(ITO)底物上电化学合成的聚碳烯(PBith)膜的光学和光电化学性质,并在聚合过程中溶液中掺入磷化铟(INP)。通过电化学方法(循环伏安法),扫描电子显微镜(SEM),UV-Vis光谱和光电流测量来研究复合层的性质。从UV-Vis光谱研究中,复合材料的吸光度大于UV区域中的聚辛烯吸收。阴极光电流反映了电酸化多基团的p型半导体行为。 INP半导体的添加改善在阴极电位(〜4μA/ cm {sup} 2)的光电流,其指示受体分子作为激子解离中心起作用,从而改善通过聚合物输送的电荷载体的数量到达固液电解质界面。发现光敏复合材料(PBTH-INP)具有良好的光电化学和光学性质。

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