Fluorinated polymer additives in Spiro-OMeTAD to improve the efficiency and stability of perovskite solar cells

被引:5
|
作者
Tabi, Grace Dansoa [1 ]
Nguyen, Dang-Thuan [1 ]
Liang, Wensheng [1 ]
Ji, Wenzhong [2 ]
Lu, Teng [2 ]
Tran-Phu, Thanh [3 ]
Lem, Olivier Lee Cheong [3 ]
Mayon, Azul Osorio [1 ]
Huang, Keqing [1 ]
Chang, Li -Chun [1 ]
Zhan, Hualin [1 ]
Ahmad, Viqar [1 ]
Mahmud, Arafat [4 ]
Hou, Yihui [1 ]
Wang, Wei [1 ]
Bui, Anh Dinh [1 ]
Nguyen, Hieu [1 ]
Liu, Yun [2 ]
Shen, Heping [1 ]
Catchpole, Kylie R. [1 ]
Weber, Klaus J. [1 ]
White, Thomas P. [1 ]
Walter, Daniel [1 ]
Duong, The [1 ]
机构
[1] Australian Natl Univ, Sch Engn, Canberra 2601, Australia
[2] Australian Natl Univ, Coll Sci, Res Sch Chem, Canberra, ACT 2601, Australia
[3] Australian Natl Univ, Res Sch Phys, Dept Elect Mat Engn, Canberra, ACT 2600, Australia
[4] Univ Sydney, Sch Phys, Sydney 2006, Australia
关键词
Additive; Non-radiative recombination; Morphology; Stability; Fluorinated polymer; Coordination bonding; HOLE-TRANSPORTING MATERIAL; PERFORMANCE; P(VDF-TRFE); MAPBI(3);
D O I
10.1016/j.cej.2024.149062
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This study demonstrates the transformative impact of incorporating poly(vinylidene fluoride-cotrifluoroethylene) P(VDF-TRFE) as an additive in the hole transport layer (HTL) of 2,2 ',7,7 '-Tetrakis[N,N-di(4methoxyphenyl)amino]-9,9 '-spirobifluorene (Spiro-OMeTAD). The P(VDF-TRFE) additive forms resilient coordination bonds with 4-tert-butylpyridine (TBP) and lithium bis(trifluoromethanesulfonyl)imide additives, which mitigates TBP evaporation and improves Spiro-OMeTAD film quality. In addition, we observed improvements in solar cell current-voltage characteristics consistent with increased Spiro-OMeTAD conductivity and suppressed non-radiative recombination at the HTL/perovskite interface. P(VDF-TRFE)-integrated devices exhibit an increment in power conversion efficiency (PCE) up to 24.1 % (reverse scan) from a reference PCE of 21.4 %. Furthermore, the unencapsulated P(VDF-TRFE)-integrated devices demonstrate improved stability, retaining over 90 % PCE after 45 days in an ambient atmosphere in the dark and 94 % PCE after 1080 h of continuous light-soaking in a nitrogen environment. This work demonstrates how additive engineering, as exemplified by P (VDF-TRFE), can effectively address stability and performance challenges within Spiro-OMeTAD in perovskite solar cells.
引用
收藏
页数:8
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