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A Dopant-Free Polymeric Hole-Transporting Material Enabled High Fill Factor Over 81% for Highly Efficient Perovskite Solar Cells

机译:不含钙的聚合物空穴传输材料,可为高效钙钛矿太阳能电池提供超过81%的高填充系数

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Although perovskite solar cells (PVSCs) have achieved rapid progress in the past few years, most of the high-performance device results are based on the doped small molecule hole-transporting material (HTM), spiro-OMeTAD, which affects their long-term stability. In addition, some defects from under-coordinated Pb atoms on the surface of perovskite films can also result in nonradiative recombination to affect device performance. To alleviate these problems, a dopant-free HTM based on a donor-acceptor polymer, PBT1-C, synthesized from the copolymerization between the benzodithiophene and 1,3-bis(4-(2-ethylhexyl)thiophen-2-yl)-5,7-bis(2-alkyl)benzo[1,2-c:4,5-c ']dithiophene-4,8-dione units is introduced. PBT1-C not only possesses excellent hole mobility, but is also able to passivate the surface traps of the perovskite films. The derived PVSC shows a high power conversion efficiency of 19.06% with a very high fill factor of 81.22%, which is the highest reported for dopant-free polymeric HTMs. The results from photoluminescence and trap density of states measurements validate that PBT1-C can effectively passivate both surface and grain boundary traps of the perovskite.
机译:尽管钙钛矿太阳能电池(PVSC)在过去几年中取得了飞速发展,但大多数高性能器件的结果都是基于掺杂的小分子空穴传输材料(HTM)螺旋-OMeTAD,这会影响其长期发展。稳定性。另外,钙钛矿薄膜表面上未充分配位的Pb原子的一些缺陷也会导致非辐射复合,从而影响器件性能。为了缓解这些问题,基于供体-受体聚合物PBT1-C的无掺杂HTM由苯并二噻吩和1,3-双(4-(2-(乙基乙基己基)噻吩-2-基)-引入了5,7-双(2-烷基)苯并[1,2-c:4,5-c']二噻吩-4,8-​​二酮单元。 PBT1-C不仅具有出色的空穴迁移率,而且还能够钝化钙钛矿薄膜的表面陷阱。衍生的PVSC显示出19.06%的高功率转换效率,以及81.22%的非常高的填充率,这是无掺杂聚合物HTM的最高报道。光致发光和态陷阱能级测量的结果证明,PBT1-C可以有效钝化钙钛矿的表面和晶界陷阱。

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