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dc.contributor.authorLiu, P.
dc.contributor.authorChen, Y.
dc.contributor.authorXiang, H.
dc.contributor.authorYang, X.
dc.contributor.authorWang, Wei
dc.contributor.authorRan, R.
dc.contributor.authorZhou, W.
dc.contributor.authorShao, Zongping
dc.date.accessioned2023-05-09T02:21:19Z
dc.date.available2023-05-09T02:21:19Z
dc.date.issued2021
dc.identifier.citationLiu, P. and Chen, Y. and Xiang, H. and Yang, X. and Wang, W. and Ran, R. and Zhou, W. et al. 2021. Benefitting from Synergistic Effect of Anion and Cation in Antimony Acetate for Stable CH3NH3PbI3-Based Perovskite Solar Cell with Efficiency Beyond 21%. Small. 17 (46): ARTN 2102186.
dc.identifier.urihttp://hdl.handle.net/20.500.11937/91968
dc.identifier.doi10.1002/smll.202102186
dc.description.abstract

Both the film quality and the electronic properties of halide perovskites have significant influences on the photovoltaic performance of perovskite solar cells (PSCs) because both of them are closely related to the charge carrier transportation, separation, and recombination processes in PSCs. In this work, an additive engineering strategy using antimony acetate (Sb(Ac)3) is employed to enhance the photovoltaic performance of methylammonium lead iodide (MAPbI3)-based PSCs by improving the film quality and optimizing the photoelectronic properties of halide perovskites. It is found that Ac− and Sb3+ of Sb(Ac)3 play different roles and their synergistic effect contributed to the eventual excellent photovoltaic performance of MAPbI3-based PSCs with a power conversion efficiency of above 21%. The Ac− anions act as a crystal growth controller and are more involved in the improvement of perovskite film morphology. By comparison, Sb3+ cations are more involved in the optimization of the electronic structure of perovskites to tailor the energy levels of the perovskite film. Furthermore, with the assistance of Sb(Ac)3, MAPbI3-based PSCs deliver much improved moisture, air, and thermal stability. This work can provide scientific insights on the additive engineering for improving the efficiency and long-term stability of MAPbI3-based PSCs, facilitating the further development of perovskite-based optoelectronics.

dc.languageEnglish
dc.publisherWILEY-V C H VERLAG GMBH
dc.relation.sponsoredbyhttp://purl.org/au-research/grants/arc/DP200103332
dc.relation.sponsoredbyhttp://purl.org/au-research/grants/arc/DP200103315
dc.subjectScience & Technology
dc.subjectPhysical Sciences
dc.subjectTechnology
dc.subjectChemistry, Multidisciplinary
dc.subjectChemistry, Physical
dc.subjectNanoscience & Nanotechnology
dc.subjectMaterials Science, Multidisciplinary
dc.subjectPhysics, Applied
dc.subjectPhysics, Condensed Matter
dc.subjectChemistry
dc.subjectScience & Technology - Other Topics
dc.subjectMaterials Science
dc.subjectPhysics
dc.subjectantimony acetate
dc.subjectenergy level alignment
dc.subjectfilm morphology
dc.subjectperovskite solar cells
dc.subjectsynergistic effect
dc.subjectHIGHLY EFFICIENT
dc.subjectPHOTOVOLTAIC PERFORMANCE
dc.subjectHALIDE PEROVSKITES
dc.subjectION MIGRATION
dc.subjectLEAD ACETATE
dc.subjectSTABILITY
dc.subjectADDITIVES
dc.subjectSUBSTITUTION
dc.subjectPRECURSOR
dc.subjectQUALITY
dc.subjectantimony acetate
dc.subjectenergy level alignment
dc.subjectfilm morphology
dc.subjectperovskite solar cells
dc.subjectsynergistic effect
dc.titleBenefitting from Synergistic Effect of Anion and Cation in Antimony Acetate for Stable CH3NH3PbI3-Based Perovskite Solar Cell with Efficiency Beyond 21%
dc.typeJournal Article
dcterms.source.volume17
dcterms.source.number46
dcterms.source.issn1613-6810
dcterms.source.titleSmall
dc.date.updated2023-05-09T02:21:16Z
curtin.departmentWASM: Minerals, Energy and Chemical Engineering
curtin.accessStatusFulltext not available
curtin.facultyFaculty of Science and Engineering
curtin.contributor.orcidShao, Zongping [0000-0002-4538-4218]
curtin.contributor.researcheridShao, Zongping [B-5250-2013]
curtin.identifier.article-numberARTN 2102186
dcterms.source.eissn1613-6829
curtin.contributor.scopusauthoridShao, Zongping [55904502000] [57200900274]
curtin.contributor.scopusauthoridWang, Wei [57034524500]
curtin.repositoryagreementV3


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