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对以荧蒽为核的空穴传输材料进行的结构-性能研究,使得无掺杂钙钛矿太阳能电池的效率达到了19.3%。

A structure-property study of fluoranthene-cored hole-transporting materials enables 19.3% efficiency in dopant-free perovskite solar cells.

作者信息

Sun Xianglang, Wu Fei, Zhong Cheng, Zhu Linna, Li Zhong'an

机构信息

Key Laboratory for Material Chemistry of Energy Conversion and Storage , Ministry of Education , School of Chemistry and Chemical Engineering , Huazhong University of Science and Technology , Wuhan , 430074 , P. R. China . Email:

Chongqing Key Laboratory for Advanced Materials and Technologies of Clean Energy , Faculty of Materials & Energy , Southwest University , Chongqing , 400715 , P. R. China . Email:

出版信息

Chem Sci. 2019 Jun 4;10(28):6899-6907. doi: 10.1039/c9sc01697j. eCollection 2019 Jul 28.

Abstract

To date, most of the prevailing organic hole-transporting materials (HTMs) used in perovskite solar cells (PVSCs), such as spiro-OMeTAD and PTAA, generally require a sophisticated doping process to ensure their reasonable hole-transporting properties. Unfortunately, the employed dopants/additives and the associated oxidation reactions have been shown to deteriorate the long-term device stability seriously. The exploitation of efficient and stable dopant-free HTMs is thus strongly desired for PVSCs. However, effective molecular design strategies for dopant-free HTMs are still lacking. Thus far, only a few of them yielded comparable performance to their doped counterparts, while their synthetic costs are still high. In this work, a new class of cost-effective small molecule dopant-free HTMs have been developed using readily available fluoranthene as the structural framework. The structure-property correlation of the fluoranthene-based HTMs was carefully investigated by tuning their structural geometry (linear branched), connection between electron-donating and electron-withdrawing moieties (single bond ethylene), and the substitution position of the methoxy side-groups (- -). As a result, the optimized molecule, , was demonstrated to serve as an efficient dopant-free HTM in a conventional PVSC to deliver an impressive power conversion efficiency of 19.27%, representing one of the best cost-effective dopant-free organic HTMs reported thus far.

摘要

迄今为止,大多数用于钙钛矿太阳能电池(PVSCs)的主流有机空穴传输材料(HTMs),如螺环-OMeTAD和PTAA,通常需要复杂的掺杂工艺来确保其合理的空穴传输性能。不幸的是,所使用的掺杂剂/添加剂以及相关的氧化反应已被证明会严重降低器件的长期稳定性。因此,对于PVSCs而言,迫切需要开发高效且稳定的无掺杂HTMs。然而,仍然缺乏针对无掺杂HTMs的有效分子设计策略。到目前为止,只有少数几种无掺杂HTMs的性能与其掺杂对应物相当,但其合成成本仍然很高。在这项工作中,使用易于获得的荧蒽作为结构框架,开发了一类新型的具有成本效益的无小分子掺杂HTMs。通过调整其结构几何形状(线性/支化)、供电子和吸电子部分之间的连接(单键/乙烯)以及甲氧基侧基的取代位置(- -),仔细研究了基于荧蒽的HTMs的结构-性能关系。结果表明,优化后的分子,,在传统PVSC中可作为一种高效的无掺杂HTM,实现了令人印象深刻的19.27%的功率转换效率,代表了迄今为止报道的最具成本效益的无掺杂有机HTMs之一。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4dc0/6640200/f26557b396f7/c9sc01697j-f1.jpg

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