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Solution processed bulk heterojunction polymer solar cells with low band gap DPP-CN small molecule sensitizer

机译:具有低带隙DPP-CN小分子敏化剂的固溶异质结聚合物太阳能电池

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摘要

The improvement of near infrared wavelength sensitivity in the bulk heterojunction organic polymer solar cell based on poly (3-hexylthiophene) (P3HT) and PC70BM, by the addition of soluble DPP-CN small molecule is reported. By incorporating DPP-CN, the photosensitivity in the longer wavelength region was improved and the power conversion efficiency (PCE) has been reached to 4.37% as compared to 3.23% for the device based on P3HT:PC_(70)BM blend. The increase in the PCE is attributed to the increase in light harvesting property of the blend and efficient dissociation of excitons into free charge carriers due to the increased number of D-A sites. The PCE has been further enhanced to 4.70%, when mixed solvent cast P3HT:DPP-CN:PC_(70)BM blend is used as photoactive layer. The optical absorption spectra of the blend showed that the blend film cast from mixed solvent broadened the absorption wavelength range. This occurred as result of a large red shift of P3HT absorption peak and same time a widening and small red shift of DPP-CN absorption peak in the blend film. The improved light harvesting property of thermally annealed film is considered to the factor responsible for the improvement in the PCE.
机译:据报道,通过添加可溶性DPP-CN小分子,可以改善基于聚(3-己基噻吩)(P3HT)和PC70BM的本体异质结有机聚合物太阳能电池的近红外波长灵敏度。通过掺入DPP-CN,提高了较长波长区域的光敏性,功率转换效率(PCE)已达到4.37%,而基于P3HT:PC_(70)BM共混物的器件的功率转换效率为3.23%。 PCE的增加归因于共混物的光收集性能增加,以及由于D-A位点数量的增加,激子有效解离为自由电荷载体。当使用混合溶剂浇铸的P3HT:DPP-CN:PC_(70)BM混合物作为光敏层时,PCE进一步提高到4.70%。共混物的光吸收光谱表明,由混合溶剂流延的共混膜扩大了吸收波长范围。这是由于P3HT吸收峰的红移大,同时共混膜中DPP-CN吸收峰的红移变小而引起的。热退火膜的改进的光收集性能被认为是引起PCE提高的因素。

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