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Characteristics of water-soluble polythiophene: TiO2 composite and its application in photovoltaics

机译:水溶性聚噻吩:TiO2复合材料的特性及其在光伏中的应用

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摘要

We have studied the characteristics of composites of an environmentally friendly water-soluble polythiophene sodium poly[2-(3-thienyl)-ethoxy-4-butylsulfonate] (PTEBS) and TiO2. We observed that the ultraviolet-visible absorption spectrum of low molecular weight PTEBS is redshifted possibly due to the formation of aggregates. Cyclic voltammetry reveals the values of highest occupied molecular orbitals and lowest unoccupied molecular orbitals for PTEBS. A factor of 7 in photoluminescence quenching indicates that the exciton dissociation and charge separation occur successfully at the PTEBS: TiO2 (1:1 by weight) interface. This enhances the possibility that the separated charges will reach the electrodes before recombining. Scanning electron micrograph images show how the PTEBS and TiO2 are interconnected and form paths to the electrodes to improve charge transport. Photovoltaic devices with TiO2:PTEBS composite achieved an energy conversion efficiency of η=0.015%, a short circuit current of JSC=0.22mA/cm2, an open circuit voltage of VOC=0.72V, and a fill factor of FF=0.29 under ∼300mW/cm2 white light illumination.
机译:我们研究了环保型水溶性聚噻吩钠聚[2-(3-噻吩基)-乙氧基-4-丁基磺酸盐](PTEBS)和TiO2的复合材料的特性。我们观察到,低分子量PTEBS的紫外可见吸收光谱可能发生了红移,这是由于形成了聚集体。循环伏安法揭示了PTEBS的最高占据分子轨道和最低未占据分子轨道的值。光致发光猝灭的系数为7表示在PTEBS:TiO2(1:1重量比)界面成功发生了激子离解和电荷分离。这增加了分离的电荷将在重组之前到达电极的可能性。扫描电子显微图像显示了PTEBS和TiO2如何相互连接并形成通往电极的路径以改善电荷传输。含有TiO2:PTEBS复合材料的光伏器件在以下条件下实现了η= 0.015%的能量转换效率,JSC的短路电流= 0.22mA / cm2,VOC的开路电压= 0.72V,填充系数FF = 0.29。 300mW / cm2白光照明。

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