Acta Chimica Sinica ›› 2024, Vol. 82 ›› Issue (9): 971-978.DOI: 10.6023/A24030093 Previous Articles Next Articles
Article
张林a,b, 张慧a,b, 朱从潭a,b, 郭学益a,b, 杨英a,b,*()
投稿日期:
2024-07-01
发布日期:
2024-08-15
基金资助:
Lin Zhanga,b, Hui Zhanga,b, Congtan Zhua,b, Xueyi Guoa,b, Ying Yanga,b,*()
Received:
2024-07-01
Published:
2024-08-15
Contact:
*E-mail: Supported by:
Share
Lin Zhang, Hui Zhang, Congtan Zhu, Xueyi Guo, Ying Yang. Investigation of Humidity Stabilization Mechanism in CsPbIBr2 Perovskite Solar Cells[J]. Acta Chimica Sinica, 2024, 82(9): 971-978.
[1] |
Green M. A.; Dunlop E. D.; Yoshita M.; Kopidakis N.; Bothe K.; Siefer G.; Hao X. Prog. Photovolt. 2024, 32, 3.
|
[2] |
Liu D.; Zhang X.; Li Z. Chin. J. Org. Chem. 2024, 44, 1197 (in Chinese).
|
(刘冬, 张晓晔, 李战峰, 有机化学, 2024, 44, 1197.)
doi: 10.6023/cjoc202307008 |
|
[3] |
Zhu H.; Teale S.; Lintangpradipto M. N.; Mahesh S.; Chen B.; McGehee M. D.; Sargent E. H.; Bakr O. M. Nat. Rev. Mater. 2023, 8, 569.
|
[4] |
Burwig T.; Fränzel W.; Pistor P. J. Phys. Chem. Lett. 2018, 9, 4808.
|
[5] |
Yang Y.; Lin F.; Zhu C.; Chen T.; Ma S.; Luo Y.; Zhu L.; Guo X. Acta Chim. Sinica 2020, 78, 217 (in Chinese).
doi: 10.6023/A19110411 |
(杨英, 林飞宇, 朱从潭, 陈甜, 马书鹏, 罗媛, 朱刘, 郭学益, 化学学报, 2020, 78, 217.)
doi: 10.6023/A19110411 |
|
[6] |
Zhu C.; Gao J.; Chen T.; Guo X.; Yang Y. J. Energy Chem. 2023, 83, 445.
|
[7] |
Lu Y.; Ge Y.; Sui M. Acta Chim. Sinica 2021, 79, 344 (in Chinese).
|
(卢岳, 葛杨, 隋曼龄, 化学学报, 2021, 79, 344.)
doi: 10.6023/A20100476 |
|
[8] |
Lin J.; Lai M.; Dou L.; Kley C. S.; Chen H.; Peng F.; Sun J.; Lu D.; Hawks S. A.; Xie C.; Cui F.; Alivisatos A. P.; Limmer D. T.; Yang P. Nat. Mater. 2018, 17, 261.
|
[9] |
Qiu J.; Mei X.; Zhang M.; Wang G.; Zou S.; Wen L.; Huang J.; Hua Y.; Zhang X. Angew. Chem., Int. Ed. 2024, 63, e202401751
|
[10] |
Montecucco R.; Quadrivi E.; Po R.; Grancini G. Adv. Energy Mater. 2021, 11, 2100672.
|
[11] |
Xiao H. R.; Zuo C. T.; Yan K. Y.; Jin Z. W.; Cheng Y. H.; Tian H.; Xiao Z.; Liu F. Y.; Ding Y.; Ding L. M. Adv. Energy Mater. 2023, 13, 2300738.
|
[12] |
Sun J.-K.; Huang S.; Liu X.-Z.; Xu Q.; Zhang Q.-H.; Jiang W.-J.; Xue D.-J.; Xu J.-C.; Ma J.-Y.; Ding J. J. Am. Chem. Soc. 2018, 140, 11705.
doi: 10.1021/jacs.8b05949 pmid: 30110545 |
[13] |
Lin Z.; Zhang Y.; Gao M.; Steele J. A.; Louisia S.; Yu S.; Quan L. N.; Lin C.-K.; Limmer D. T.; Yang P. Matter 2021, 4, 2392.
|
[14] |
Lal N. N.; Dkhissi Y.; Li W.; Hou Q.; Cheng Y.-B.; Bach U. Adv. Energy Mater. 2017, 7, 1602761.
|
[15] |
Guo Q. Y.; Duan J. L.; Zhang J. S.; Zhang Q. Y.; Duan Y. Y.; Yang X. Y.; He B. L.; Zhao Y. Y.; Tang Q. W. Adv. Mater. 2022, 34, 2202301.
|
[16] |
Chen Z.; Yang M.; Li R.; Zang Z.; Wang H. Adv. Opt. Mater. 2022, 10, 2200802.
|
[17] |
Wang H.; Yang M.; Cai W.; Zang Z. Nano Lett. 2023, 23, 4479.
|
[18] |
Chang Q.; An Y.; Cao H.; Pan Y.; Zhao L.; Chen Y.; We Y.; Tsang S.-W.; Yip H.-L.; Sun L.; Yu Z. J. Energy Chem. 2024, 90, 16.
|
[19] |
Sheng G. Z.; Zhao Y. J.; Zheng J. Y.; Chen L. R.; Qiu B. T.; Zhong L. W.; Zhu Y. Q.; Xu G.; Xiao X. D. Energy. Technol-Ger. 2022, 11, 2200544.
|
[20] |
Zhu W.; Zhang Q.; Zhang C.; Zhang Z.; Chen D.; Lin Z.; Chang J.; Zhang J.; Hao Y. ACS Appl. Energ. Mater. 2018, 1, 4991.
|
[21] |
Zhang K.; Wang Z.; Wang G.; Wang J.; Li Y.; Qian W.; Zheng S.; Xiao S.; Yang S. Nat. Commun. 2020, 11, 1006.
doi: 10.1038/s41467-020-14715-0 pmid: 32081847 |
[22] |
Fan W.; Deng K.; Shen Y.; Bai Y.; Li L. Angew. Chem., Int. Ed. 2022, 61, e202211259
|
[23] |
Liu X. Y.; Tan X. H.; Liu Z. Y.; Ye H. B.; Sun B.; Shi T. L.; Tang Z. R.; Liao G. L. Nano Energy 2019, 56, 184.
|
[24] |
Zheng Y. C.; Yang S.; Chen X.; Chen Y.; Hou Y.; Yang H. G. Chem. Mater. 2015, 27, 5116.
|
[25] |
Zhu W.; Zhang Q.; Chen D.; Zhang Z.; Lin Z.; Chang J.; Zhang J.; Zhang C.; Hao Y. Adv. Energy Mater. 2018, 8, 1802080.
|
[26] |
Peng J.; Kremer F.; Walter D.; Wu Y. L.; Ji Y.; Xiang J.; Liu W. Z.; Duong T.; Shen H. P.; Lu T.; Brink F.; Zhong D. Y.; Li L.; Lem O. L. C.; Liu Y.; Weber K. J.; White T. P.; Catchpole K. R. Nature 2022, 601, 573.
|
[27] |
Liang J. W.; Hu X. Z.; Wang C.; Liang C.; Chen C.; Xiao M.; Li J. S.; Tao C.; Xing G. C.; Yu R.; Ke W. J.; Fang G. J. Joule 2022, 6, 816.
|
[28] |
Huang W. X.; Sadhu S.; Ptasinska S. Chem. Mater. 2017, 29, 8478.
|
[29] |
Liu S. C.; Li Z.; Yang Y.; Wang X.; Chen Y. X.; Xue D. J.; Hu J. S. J. Am. Chem. Soc. 2019, 141, 18075.
|
[30] |
Zhu C. T.; Lin F. Y.; Zhang L.; Xiao S.; Ma S. P.; Liu S.; Tai Q. D.; Zhu L.; Dai Q. L.; Guo X. Y.; Yang Y. J. Mater. Chem. A 2022, 10, 13124.
|
[31] |
Anaya M.; Galisteo-Lopez J. F.; Calvo M. E.; Espinos J. P.; Miguez H. J. Phys. Chem. Lett. 2018, 9, 3891.
|
[32] |
Zhang L.; Sit P. H.-L. J. Mater. Chem. A 2017, 5, 9042.
|
[33] |
Hu Q.; Li Z.; Tan Z.; Song H.; Ge C.; Niu G.; Han J.; Tang J. Adv. Opt. Mater. 2018, 6, 1700864.
|
[34] |
Zuo S.; Niu W.; Chu S.; An P.; Huang H.; Zheng L.; Zhao L.; Zhang J. J. Phys. Chem. Lett. 2023, 14, 4876.
|
[35] |
Lu L.; Li R. Z.; Xu X. Y.; Cheng Y. J. Mol. Model. 2022, 28, 95.
|
[36] |
Xiao S.; Zhang K.; Zheng S. Z.; Yang S. H. Nanoscale Horizons 2020, 5, 1147.
|
[37] |
Heo J. H.; Han H. J.; Kim D.; Ahn T. K.; Im S. H. Energ. Environ. Sci. 2015, 8, 1602.
|
[38] |
Ghahremanirad E.; Almora O.; Suresh S.; Drew A. A.; Chowdhury T. H.; Uhl A. R. Adv. Energy Mater. 2023, 13, 2204370.
|
[39] |
Ding Y. L.; Yao X.; Zhang X. D.; Wei C. C.; Zhao Y. J. Power Sources 2014, 272, 351.
|
[40] |
Caprioglio P.; Wolff C. M.; Sandberg O. J.; Armin A.; Rech B.; Albrecht S.; Neher D.; Stolterfoht M. Adv. Energy Mater. 2020, 10, 2000502.
|
[41] |
Ge R.; Zhao Y. J.; Jiang C. Y.; Zheng J. Y.; Chen L. R.; Zheng Y.; Xu G.; Xiao X. D. Sci. China Mater. 2023, 66, 3261.
|
[42] |
Yao W. L.; Ling Q.; Dai Q.; Fang S. Y.; Yang C.; Huang L. K.; Liu X. H.; Zhang H. C.; Zhang J.; Zhu Y. J.; Hu Z. Y. ACS Appl. Energ. Mater. 2022, 5, 8092.
|
[43] |
Yang X.; Ji W.; Chen Q.; Su R.; Zhang L.; Wang A.; Zhang T.; Zhou Y.; Song B. Chin. J. Chem. 2023, 41, 1594.
|
[44] |
Zhang G.; Zhang J.; Yang Z.; Pan Z.; Rao H.; Zhong X. Adv. Mater. 2022, 34, e2206222
|
[1] | Xinyu Wang, Xiongwen Xu. The Induced Adsorption of PbI2 Particles on the SnCl2-Sensitized TiO2 Surface [J]. Acta Chimica Sinica, 2024, 82(8): 865-870. |
[2] | Yuqing Shi, Mingzhu Chu, Bo Han, Haojie Ma, Ran Li, Xueyan Hou, Yuqi Zhang, Ji-Jiang Wang. Smart Two-dimensional Photonic Crystal Hydrogel for Accurate Detection of Hg2+ [J]. Acta Chimica Sinica, 2024, 82(1): 9-15. |
[3] | Chen Jian, Cai Zhuoer, Jiao Shulin, Zhang Xiang, Hu Jinzhong, Liu Min, Sun Baiwang, Hua Xiuni. A Thermally Responsive Dielectric Switchable Zero-Dimensional Organic-Inorganic Hybrid Material: (C3H6NH2)2CoCl4 [J]. Acta Chimica Sinica, 2023, 81(5): 480-485. |
[4] | Xufa He, Kangle Jia, Longfei Yu, Mingjie Liu, Xiaoshan Zheng, Huanling Li, Jinlan Xin, Linjia Huang. pH-Responsive Pickering Emulsions Synergistically Stabilized by Maleopimaric Acid and Alumina Nanoparticles [J]. Acta Chimica Sinica, 2022, 80(6): 765-771. |
[5] | Jing Zhou, Xueying Tian, Binkai Wang, Shasha Zhang, Zonghao Liu, Wei Chen. Application of Low Temperature Atomic Layer Deposition Packaging Technology in OLED and Its Implications for Organic and Perovskite Solar Cell Packaging [J]. Acta Chimica Sinica, 2022, 80(3): 395-422. |
[6] | Wenjun Wu, Yuting Li, Xi Feng, Wenxing Ding. Perovskite Dual-function Passivator: Room Temperature Ionic Liquid Obtained from Mechanochemical Preparation [J]. Acta Chimica Sinica, 2022, 80(11): 1469-1475. |
[7] | Yumiao Lu, Wei Chen, Yanlei Wang, Feng Huo, Yihui Dong, Li Wei, Hongyan He. Research Progress on the Preparation and Properties of Two Dimensional Structure of Ionic Liquids [J]. Acta Chimica Sinica, 2021, 79(4): 443-458. |
[8] | Aodi Shi, Si Chen, Songsheng Zheng, Zhaolin Wang. Correlation between the Pseudo-Capacitance Behavior and the Second-Order Phase Transition in the Li+ Insertion/Desertion in Cu3Si [J]. Acta Chimica Sinica, 2021, 79(12): 1511-1517. |
[9] | Zhao Jiongpeng, Wang Weiwei, Han Songde, Li Quanwen, Li Na, Liu Fuchen, Bu Xianhe. Construction, Magnetic and Dielectric Properties of Mixed-Valence Iron Formate with Methylammonium Guest [J]. Acta Chimica Sinica, 2020, 78(11): 1223-1228. |
[10] | Wang Menghan, Wan Li, Gao Xuyu, Yuan Wenbo, Fang Junfeng, Tao Youtian, Huang Wei. Synthesis of D-π-A-π-D Type Dopant-Free Hole Transporting Materials and Application in Inverted Perovskite Solar Cells [J]. Acta Chimica Sinica, 2019, 77(8): 741-750. |
[11] | Yang Ying, Chen Tian, Pan Dequn, Zhang Zheng, Guo Xueyi. Research Progress of Bifacial Solar Cells with Transparent Counter Electrode [J]. Acta Chim. Sinica, 2018, 76(9): 681-690. |
[12] | Hu Chengyu, Yan Wenfu, Xu Ruren. Phase Transition Behavior of Zeolite Y under Hydrothermal Conditions [J]. Acta Chim. Sinica, 2017, 75(7): 679-685. |
[13] | Zhang Guobin, Xiong Tengfei, Pan Xuelei, Yan Mengyu, Han Chunhua, Mai Liqiang. In Situ Observation and Mechanism Investigation of Lattice Breathing in Vanadium Oxide Cathode [J]. Acta Chim. Sinica, 2016, 74(7): 582-586. |
[14] | Xue Qifan, Sun Chen, Hu Zhicheng, Huang Fei, Yip Hin-Lap, Cao Yong. Recent Advances in Perovskite Solar Cells: Morphology Control and Interfacial Engineering [J]. Acta Chimica Sinica, 2015, 73(3): 179-192. |
[15] | Guo Xudong, Niu Guangda, Wang Liduo. Chemical Stability Issue and Its Research Process of Perovskite Solar Cells with High Efficiency [J]. Acta Chim. Sinica, 2015, 73(3): 211-218. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||