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Synthesis of Multifunctional Organic Molecules via Michael Addition Reaction to Manage Perovskite Crystallization and Defect
Liang, Hongbo1,2; Chen, Jing3; Zhu, Wenjing1; Ma, Fengqiang4; Li, Na1; Gu, Hao5; Xia, Junmin6; Lin, Yuexin1; Yang, Wenhan1; Zhang, Sen7; Zhang, Yueshuai7; Han, Bingyu8; Yang, Shengchun1; Ding, Shujiang3; Liang, Chao1,2
2024-11-04
Source PublicationAngewandte Chemie - International Edition
ISSN1433-7851
Pagese202413105
Abstract

Additive engineering plays a pivotal role in achieving high-quality light-absorbing layers for high-performance and stable perovskite solar cells (PSCs). Various functional groups within the additives exert distinct regulatory effects on the perovskite layer. However, few additive molecules can synergistically fulfill the dual functions of regulating crystallization and passivating defects. Here, we custom-synthesized 2-ureido-4-pyrimidone (UPy) organic small molecules with diverse functional groups as additives to modulate crystallization and defects in perovskite films via the Michael addition reaction. Theoretical and experimental investigations demonstrate that the −OH groups in UPy exhibit significant effects in fixing uncoordinated Pb ions, passivation of lead-iodide antisite defects, alleviating hysteresis, and reducing non-radiative recombination. Furthermore, the enhanced C=O and −NH motifs interact with the A-site cation via hydrogen bonding, which relieves residual strain and adjusts crystal orientation. This strategy effectively controls perovskite crystallization and passivates defects, ultimately enhancing the quality of perovskite films. Consequently, the open-circuit voltage of the UPy-based p-i-n PSCs reaches 1.20 V, and the fill factor surpasses 84 %. The champion device delivers a power conversion efficiency of 25.75 %. Remarkably, the unencapsulated device maintained 96.9 % and 94.5 % of its initial efficiency following 3,360 hours of dark storage and 1,866 hours of 1-sun illumination, respectively.

KeywordRegulating Crystallization Defect Management Perovskite Solar Cells Power Conversion Efficiency Stability
DOI10.1002/anie.202413105
URLView the original
Indexed BySCIE
Language英語English
WOS Research AreaChemistry
WOS SubjectChemistry, Multidisciplinary
WOS IDWOS:001340582800001
PublisherWILEY-V C H VERLAG GMBHPOSTFACH 101161, 69451 WEINHEIM, GERMANY
Scopus ID2-s2.0-85207235252
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Cited Times [WOS]:0   [WOS Record]     [Related Records in WOS]
Document TypeJournal article
CollectionINSTITUTE OF APPLIED PHYSICS AND MATERIALS ENGINEERING
Corresponding AuthorYang, Shengchun; Ding, Shujiang; Liang, Chao
Affiliation1.MOE Key Laboratory for Nonequilibrium Synthesis and Modulation of Condensed Matter, School of Physics, National Innovation Platform (Center) for Industry-Education Integration of Energy Storage Technology, Xi'an Jiaotong University, Xi'an, 710049, China
2.Guangdong Provincial Key Laboratory of Semiconductor Optoelectronic Materials and Intelligent Photonic Systems, Shenzhen, 440300, China
3.School of Chemistry, Xi’an Jiaotong University, Xi’an Key Laboratoryof Sustainable Energy Materials Chemistry, State Key Laboratory for Mechanical Behavior of Materials, Xi’an 710049, P. R. China
4.Shandong Zhixin Intelligent Equipment Co., LTD, Jinan, 250101,Shandong Province, P. R. China
5.Joint Key Laboratory of the Ministry of Education, Institute ofApplied Physics and Materials Engineering, University of Macau,Macau, 999078, P. R. China
6.State Key Laboratory of Organic Electronics and InformationDisplays & Institute of Advanced Materials (IAM), NanjingUniversity of Posts & Telecommunications, 9 Wenyuan Road,Nanjing, 210023, P. R. China
7.State Key Laboratory for Mechanical Behavior of Materials, Schoolof Materials Science and Engineering, Xi’an Jiaotong University,Xi’an, 710049, P. R. China
8.School of Chemistry, Xi’an Jiaotong University, Xi’an, 710049, P. R.China
Recommended Citation
GB/T 7714
Liang, Hongbo,Chen, Jing,Zhu, Wenjing,et al. Synthesis of Multifunctional Organic Molecules via Michael Addition Reaction to Manage Perovskite Crystallization and Defect[J]. Angewandte Chemie - International Edition, 2024, e202413105.
APA Liang, Hongbo., Chen, Jing., Zhu, Wenjing., Ma, Fengqiang., Li, Na., Gu, Hao., Xia, Junmin., Lin, Yuexin., Yang, Wenhan., Zhang, Sen., Zhang, Yueshuai., Han, Bingyu., Yang, Shengchun., Ding, Shujiang., & Liang, Chao (2024). Synthesis of Multifunctional Organic Molecules via Michael Addition Reaction to Manage Perovskite Crystallization and Defect. Angewandte Chemie - International Edition, e202413105.
MLA Liang, Hongbo,et al."Synthesis of Multifunctional Organic Molecules via Michael Addition Reaction to Manage Perovskite Crystallization and Defect".Angewandte Chemie - International Edition (2024):e202413105.
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