Optoelectronic Properties of a Series of P3HT/ Dye Pairs

Dan Wang, Sam S. Sun
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Abstract

A series of polymer/dye composite pairs, where the same polymer Poly (3-hexylthiophene2,5-diyl) or P3HT paired with a series of three molecular dyes [Meso-Tetra(4-carboxyphenyl) porphine (TCPP), Ferriprotoporphyrin IX chloride (Hemin), and Protoporphyrin IX (Proto)] of different frontier orbitals and absorption coefficients are systematically investigated for potential optoelectronic conversion applications. A facile method to distinguish the charge and energy transfer contributions between emissive P3HT and dyes under certain conditions via concentration dependent photoluminescence (PL) is described. The experimental results from this study also revealed that the optoelectronic energy conversion efi¬ciencies of the P3HT/dye based OE devices appear to be affected more critically by the P3HT/dye pair PL quenching than the optical absorption coefi¬cients of the dyes, and that there appears to exist an optimal LUMO offset of P3HT/dye pair for most severe PL quenching or the best optoelectronic conversion efficiency. These study could be very useful for the design and development of next generation high efi¬ciency soft materials based optoelectronic devices such as solar cells and photodetectors.
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一系列P3HT/染料对的光电性质
系统地研究了一系列聚合物/染料复合对,其中相同的聚合物聚(3-己基噻吩e2,5-二基)或P3HT与一系列具有不同前沿轨道和吸收系数的三种分子染料[中四(4-羧基苯基)卟啉(TCPP),铁原卟啉IX氯(Hemin)和原卟啉IX (Proto)]配对,以获得潜在的光电转换应用。描述了一种通过浓度依赖光致发光(PL)来区分发射P3HT和染料在一定条件下的电荷和能量转移贡献的简便方法。实验结果还表明,P3HT/染料对光猝灭的光电能量转换效率比染料的光吸收系数更受P3HT/染料对光电能量转换效率的影响,并且对于最严重的光猝灭或最佳光电转换效率,P3HT/染料对存在最佳LUMO偏移量。这些研究对下一代高效软材料光电子器件(如太阳能电池和光电探测器)的设计和开发具有重要意义。
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