Room-temperature multiple ligands-tailored SnO2 quantum dots endow in situ dual-interface binding for upscaling efficient perovskite photovoltaics with high VOC

dc.contributor.authorZhiwei Ren
dc.contributor.authorKuan Liu
dc.contributor.authorHanlin Hu
dc.contributor.authorXuyun Guo
dc.contributor.authorYajun Gao
dc.contributor.authorW.K. Fong
dc.contributor.authorQiong Liang
dc.contributor.authorHua Tang
dc.contributor.authorJiaming Huang
dc.contributor.authorHengkai Zhang
dc.contributor.authorMinchao Qin
dc.contributor.authorLi Cui
dc.contributor.authorHrisheekesh Thachoth Chandran
dc.contributor.authorDong Shen
dc.contributor.authorMing‐Fai Lo
dc.contributor.authorAnnie Ng
dc.contributor.authorC. Surya
dc.contributor.authorMinhua Shao
dc.contributor.authorChun‐Sing Lee
dc.contributor.authorXinhui Lu
dc.contributor.authorFrédéric Laquai
dc.contributor.authorYe Zhu
dc.contributor.authorGang Li
dc.date.accessioned2025-08-21T10:03:45Z
dc.date.available2025-08-21T10:03:45Z
dc.date.issued2021-12-02
dc.description.abstractThe benchmark tin oxide (SnO 2 ) electron transporting layers (ETLs) have enabled remarkable progress in planar perovskite solar cell (PSCs). " "However, the energy loss is still a challenge due to the lack of “hidden interface” control. We report a novel ligand-tailored ultrafine SnO 2 quantum dots (QDs) via a facile rapid room temperature synthesis. " "Importantly, the ligand-tailored SnO 2 QDs ETL with multi-functional terminal groups in situ refines the buried interfaces with both the perovskite and transparent electrode via enhanced interface binding and perovskite passivation. " "These novel ETLs induce synergistic effects of physical and chemical interfacial modulation and preferred perovskite crystallization-directing, delivering reduced interface defects, suppressed non-radiative recombination and elongated charge carrier lifetime. " "Power conversion efficiency (PCE) of 23.02% (0.04 cm 2 ) and 21.6% (0.98 cm 2 , V OC loss: 0.336 V) have been achieved for the blade-coated PSCs (1.54 eV E g ) with our new ETLs, representing a record for SnO 2 based blade-coated PSCs. " "Moreover, a substantially enhanced PCE ( V OC ) from 20.4% (1.15 V) to 22.8% (1.24 V, 90 mV higher V OC , 0.04 cm 2 device) in the blade-coated 1.61 eV PSCs system, via replacing the benchmark commercial colloidal SnO 2 with our new ETLs.en
dc.identifier.citationRen Zhiwei, Liu Kuan, Hu Hanlin, Guo Xuyun, Gao Yajun, Fong Patrick W. K., Liang Qiong, Tang Hua, Huang Jiaming, Zhang Hengkai, Qin Minchao, Cui Li, Chandran Hrisheekesh Thachoth, Shen Dong, Lo Ming-Fai, Ng Annie, Surya Charles, Shao Minhua, Lee Chun-Sing, Lu Xinhui, Laquai Frédéric, Zhu Ye, Li Gang. (2021). Room-temperature multiple ligands-tailored SnO2 quantum dots endow in situ dual-interface binding for upscaling efficient perovskite photovoltaics with high VOC. Light: Science & Applications. https://doi.org/https://doi.org/10.1038/s41377-021-00676-6en
dc.identifier.doi10.1038/s41377-021-00676-6
dc.identifier.urihttps://doi.org/10.1038/s41377-021-00676-6
dc.identifier.urihttps://nur.nu.edu.kz/handle/123456789/9816
dc.language.isoen
dc.publisherSpringer Science and Business Media LLC
dc.relation.ispartofLight: Science & Applicationsen
dc.rightsAll rights reserveden
dc.sourceLight: Science & Applications, (2021)en
dc.subjectPerovskite (structure)en
dc.subjectMaterials scienceen
dc.subjectPassivationen
dc.subjectPhotovoltaicsen
dc.subjectQuantum doten
dc.subjectPerovskite solar cellen
dc.subjectOptoelectronicsen
dc.subjectEnergy conversion efficiencyen
dc.subjectCrystallizationen
dc.subjectNanotechnologyen
dc.subjectNucleationen
dc.subjectPhotovoltaic systemen
dc.subjectChemical engineeringen
dc.subjectChemistryen
dc.subjectCrystallographyen
dc.subjectEngineeringen
dc.subjectOrganic chemistryen
dc.subjectEcologyen
dc.subjectLayer (electronics)en
dc.subjectBiologyen
dc.subjecttype of access: open accessen
dc.titleRoom-temperature multiple ligands-tailored SnO2 quantum dots endow in situ dual-interface binding for upscaling efficient perovskite photovoltaics with high VOCen
dc.typearticleen

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