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Ultrathin Polyaniline-based Buffer Layer for Highly Efficient Polymer Solar Cells with Wide Applicability

机译:超薄聚苯胺基缓冲层适用于广泛应用的高效聚合物太阳能电池

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摘要

Interfacial buffer layers often attribute the improved device performance in organic optoelectronic device. Herein, a water-soluble hydrochloric acid doped polyanilines (HAPAN) were utilized as p-type electrode buffer layer in highly efficient polymer solar cells (PSC) based on PBDTTT-EFT and several representative polymers. The PBDTTT-EFT-based conventional PSC featuring ultrathin HAPAN (1.3 nm) delivered high PCE approximately 9%, which is one of the highest values among conventional PSC devices. Moreover, ultrathin HAPAN also exhibited wide applicability in a variety of efficient photovoltaic polymers including PBDTTT-C-T, PTB7, PBDTBDD, PBTTDPP-T, PDPP3T and P3HT. The excellent performances were originated from the high transparency, small film roughness and suitable work function.
机译:界面缓冲层通常归因于有机光电器件中器件性能的提高。在本文中,在基于PBDTTT-EFT和几种代表性聚合物的高效聚合物太阳能电池(PSC)中,将水溶性盐酸掺杂的聚苯胺(HAPAN)用作p型电极缓冲层。基于PBDTTT-EFT的传统PSC具有超薄的HAPAN(1.3 nm),可提供约9%的高PCE,这是传统PSC器件中最高的值之一。此外,超薄HAPAN在多种有效的光伏聚合物中也显示出广泛的适用性,包括PBDTTT-C-T,PTB7,PBDTBDD,PBTTDPP-T,PDPP3T和P3HT。优异的性能源于高透明度,较小的膜粗糙度和合适的功函。

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