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作 者:Hailiang Wang Huicong Liu Zijing Dong Xueyuan Wei Weiping Li Liqun Zhu Cheng Zhu Yang Bai Haining Chen
机构地区:[1]School of Materials Science and Engineering,Beihang University,Beijing 100191,China [2]Beijing Key Laboratory of Construction Tailorable Advanced Functional Materials and Green Applications,MIIT Key Laboratory for Low-dimensional Quantum Structure and Devices,Experimental Center of Advanced Materials,School of Materials Science&Engineering,Beijing Institute of Technology,Beijing 100081,China
出 处:《Fundamental Research》2024年第5期1110-1117,共8页自然科学基础研究(英文版)
基 金:supported by the National Natural Science Foundation of China(21875013);the Beijing Natural Science Foundation(2182031).
摘 要:Inorganic CsPbI_(3)perovskite has exhibited great application potential in perovskite solar cells(PSCs)due to its suitable optical bandgap and high chemical stability.However,the perovskite phases of CsPbI_(3)are not stable at room temperature,where they transition to non-perovskite phases.Humidity or water has been thought to be the primary factor inducing this phase transition,which should be avoided throughout the procedure of film and device processing.Surprisingly,the present study indicates that preparing a precursor solution in humid air is beneficial to the growth of high-quality CsPbI_(3)perovskite to enhance device performance.It is demonstrated that the incorporation of H2O in the precursor solution from humid air or by intentional addition significantly changes the composition of coordination compounds and increases the amount of low iodine coordination complexes.As a result,the crystallization of dimethylammonium lead iodide(DMAPbI_(3))intermediate is suppressed well,which accelerates its subsequent conversion to CsPbI_(3)perovskite.Consequently,an oriented CsPbI_(3)perovskite film with improved crystallinity and lower defect density is obtained.Most importantly,carbon-based PSCs(C-PSCs)based on the CsPbI_(3)perovskite film achieve an efficiency of 16.05%,a new record for inorganic C-PSCs.
关 键 词:Inorganic perovskite CsPbI_(3) Carbon electrode Solar cells Water
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