Intermediate phase assisted sequential deposition of reverse‐graded quasi‐2D alternating cation perovskites for MA‐free perovskite solar cells

Author:

Wang Shaofu12ORCID,Liu Yumin1ORCID,Zou Junjie2,Jin Junjun2,Jiang Yun1,Zeng Tao1,Zhao Wenyan1,He Rong‐Xiang3,Chen Bolei3,Chen Yu4,Jin Shuoxue4,Li Hong‐Xiang5,Xie Zhipeng1,Wang Chang‐An1,Sun Weiwei6,Cao Qiang2,Zhao Xing‐Zhong2ORCID

Affiliation:

1. School of Materials Science and Engineering, National Engineering Research Center for Domestic & Building Ceramics Jingdezhen Ceramic University Jingdezhen the People Republic of China

2. School of Physics and Technology, Institute of Technological Sciences, Key Laboratory of Artificial Micro/Nano Structures, Ministry of Education Wuhan University Wuhan the People Republic of China

3. Institute for Interdisciplinary Research (IIR), Key Laboratory of Optoelectronic Chemical Materials and Devices, Ministry of Education Jianghan University Wuhan the People Republic of China

4. Beijing Synchrotron Radiation Facility, Institute of High Energy Physics, Chinese Academy of Sciences Beijing the People Republic of China

5. College of Polymer Science and Engineering, State Key Laboratory of Polymer Materials Engineering Sichuan University Chengdu the People Republic of China

6. College of Aerospace Science and Engineering National University of Defense Technology Changsha the People Republic of China

Abstract

AbstractOne‐step deposition approaches have been widely applied and developed in the fabrication of quasi‐2D perovskites. However, the regulation of quantum wells (QWs) and crystalline orientation is difficult and complicated when using this methodology. Sequential deposition is another widespread synthetic approach for preparing perovskite films and perovskite dimension engineering. In this article, δ‐CsPbI3 intermediate phase assisted sequential (IPAS) deposition is successfully carried out to fabricate MA‐free quasi‐2D ACI perovskites. The amount of the δ‐CsPbI3 intermediate phase in the PbI2 layer and the concentration of GAI molecule in the IPA solution both play important roles in the production of MA‐free quasi‐2D ACI perovskite films. The n value of the MA‐free quasi‐2D ACI perovskites can be adjusted, which affects the photovoltaic performance and device stability. Compared with one‐step deposition, the MA‐free quasi‐2D ACI perovskites prepared via IPAS deposition have opposite reverse‐graded QW distribution and improved vertical orientation, leading to a remarkable PEC of up to 18.86% and allowing the preparation of unpackaged devices with prominent working stability (80%, ~400 h). The underlying mechanism and crystallization pathway of IPAS deposition confirm that sequential deposition has unique superiority in regulating the QW distribution and crystalline orientation of quasi‐2D perovskites.image

Funder

National Natural Science Foundation of China

Science and Technology Department of Hubei Province

Publisher

Wiley

Subject

Materials Chemistry,Surfaces, Coatings and Films,Materials Science (miscellaneous),Electronic, Optical and Magnetic Materials

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