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首页> 外文期刊>Journal of Photopolymer Science and Technology >Hole-Transporting Polymers Containing Partially Oxygen-Bridged Triphenylamine Units and Their Application for Perovskite Solar Cells
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Hole-Transporting Polymers Containing Partially Oxygen-Bridged Triphenylamine Units and Their Application for Perovskite Solar Cells

机译:含有部分氧桥接三苯胺单元的空穴传输聚合物及其对钙钛矿太阳能电池的应用

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A series of polymers composed of partially oxygen-bridged triphenylamine units was successfully synthesized by Suzuki-Miyaura or Migita-Kosugi-Stille cross coupling reactions. In addition to the polymer with directly connected triphenylamine units, P1, different π-spacers, were introduced into the polymer main chains including m-benzene, P2, p-benzene, P3, and bithiophene, P4. Photoelectron yield spectroscopy (PYS) results showed that the highest occupied molecular orbitals of these polymers lie above the valence bands of typical metal halide perovskites, suggesting efficient hole extraction from the perovskite. When used as hole-transporting materials in perovskite solar cells, the maximum power conversion efficiency (PCE) of P1–P4 reached 7.9% with LiTFSI additive, while the device of P1 and P4 without additive showed better PCE of 12.1% and 11.1%, respectively.
机译:由铃木 - 宫颈或Migita-Kosugi-Stille交叉偶联反应成功地合成了一系列由部分氧气桥接三苯胺单元组成的聚合物。除了具有直接连接的三苯胺单元的聚合物之外,将P1,不同的π-垫片引入聚合物主链中,包括M-苯,P2,对苯,P3和二噻吩,P4。光电子元屈服光谱(PYS)结果表明,这些聚合物的最高占用的分子轨道位于典型金属卤化物钙酸盐的价带之上,表明来自Perovskite的有效孔提取。当用作钙钛矿太阳能电池中的空穴传输材料时,LITFSI添加剂的P1-P4的最大功率转换效率(PCE)达到7.9%,而没有添加剂的P1和P4的装置显示出12.1%和11.1%的更好的PCE,分别。

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