材料科学
兴奋剂
电场
钙钛矿(结构)
铁电性
能量转换效率
掺杂剂
光电子学
极化(电化学)
介孔材料
异质结
结晶度
钙钛矿太阳能电池
极化率
载流子
纳米技术
化学工程
复合材料
有机化学
催化作用
物理化学
化学
电介质
工程类
物理
量子力学
分子
作者
Weijie Chen,Shuo Liu,Qingqing Li,Qinrong Cheng,Baosheng He,Zhijun Hu,Yunxiu Shen,Haiyang Chen,Guiying Xu,Xuemei Ou,Heyi Yang,Jiachen Xi,Yaowen Li,Yongfang Li
标识
DOI:10.1002/adma.202110482
摘要
The built-in electric field (BEF) intensity of silicon heterojunction solar cells can be easily enhanced by selective doping to obtain high power conversion efficiencies (PCEs), while it is challenging for perovskite solar cells (pero-SCs) because of the difficulty in doping perovskites in a controllable way. Herein, an effective method is reported to enhance the BEF of FA0.92 MA0.08 PbI3 perovskite by doping an organic ferroelectric material, poly(vinylidene fluoride):dabcoHReO4 (PVDF:DH) with high polarizability, that can be driven even by the BEF of the device itself. The polarization of PVDF:DH produces an additional electric field, which is maintained permanently, in a direction consistent with that of the BEF of the pero-SC. The BEF superposition can more sufficiently drive the charge-carrier transport and extraction, thus suppressing the nonradiative recombination occurring in the pero-SCs. Moreover, the PVDF:DH dopant benefits the formation of a mesoporous PbI2 film, via a typical two-step processing method, thereby promoting perovskite growth with high crystallinity and a few defects. The resulting pero-SC shows a promising PCE of 24.23% for a 0.062 cm2 device (certified PCE of 23.45%), and a remarkable PCE of 22.69% for a 1 cm2 device, along with significantly improved moisture resistances and operational stabilities.
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