Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/117899
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dc.contributorDepartment of Electrical and Electronic Engineering-
dc.contributorResearch Institute for Smart Energy-
dc.creatorZhou, Y-
dc.creatorQi, G-
dc.creatorLiu, H-
dc.creatorBai, H-
dc.creatorLi, T-
dc.creatorMaqsood, MH-
dc.creatorLiu, C-
dc.creatorSong, B-
dc.creatorChen, N-
dc.creatorLu, G-
dc.creatorGao, C-
dc.creatorLiu, Y-
dc.creatorSu, W-
dc.creatorDu, H-
dc.creatorMa, R-
dc.creatorMa, W-
dc.creatorFan, Q-
dc.date.accessioned2026-03-05T07:57:25Z-
dc.date.available2026-03-05T07:57:25Z-
dc.identifier.issn2095-8226-
dc.identifier.urihttp://hdl.handle.net/10397/117899-
dc.language.isoenen_US
dc.publisherScience in China Pressen_US
dc.rights© The Author(s) 2024. This article is published with open access at link.springer.com.en_US
dc.rightsOpen Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/ by/4.0/.en_US
dc.rightsThe following publication Zhou, Y., Qi, G., Liu, H. et al. Fluorine/bromine/selenium multi-heteroatoms substituted dual-asymmetric electron acceptors for o-xylene processed organic solar cells with 19.12% efficiency. Sci. China Mater. 68, 850–859 (2025) is available at https://doi.org/10.1007/s40843-024-3167-7.en_US
dc.subjectDual-asymmetric electron acceptorsen_US
dc.subjectGreen solvent processingen_US
dc.subjectMulti-heteroatom substitutionen_US
dc.subjectNear-infrared absorptionen_US
dc.subjectOrganic solar cellsen_US
dc.titleFluorine/bromine/selenium multi-heteroatoms substituted dual-asymmetric electron acceptors for o-xylene processed organic solar cells with 19.12% efficiencyen_US
dc.typeJournal/Magazine Articleen_US
dc.description.otherinformationAuthor name used in this publication: 周奕博en_US
dc.description.otherinformationAuthor name used in this publication: 齐广雨en_US
dc.description.otherinformationAuthor name used in this publication: 刘汉en_US
dc.description.otherinformationAuthor name used in this publication: 白海瑞en_US
dc.description.otherinformationAuthor name used in this publication: 李腾飞en_US
dc.description.otherinformationAuthor name used in this publication: 刘畅en_US
dc.description.otherinformationAuthor name used in this publication: 宋博豪en_US
dc.description.otherinformationAuthor name used in this publication: 陈娜en_US
dc.description.otherinformationAuthor name used in this publication: 鲁广昊en_US
dc.description.otherinformationAuthor name used in this publication: 高潮en_US
dc.description.otherinformationAuthor name used in this publication: 刘宇航en_US
dc.description.otherinformationAuthor name used in this publication: 宿文燕en_US
dc.description.otherinformationAuthor name used in this publication: 杜慧玲en_US
dc.description.otherinformationAuthor name used in this publication: 马睿杰en_US
dc.description.otherinformationAuthor name used in this publication: 马伟en_US
dc.description.otherinformationAuthor name used in this publication: 凡群平en_US
dc.description.otherinformationTitle in Traditional Chinese: 氟/溴/硒多雜原子取代的雙不對稱電子受體助力鄰二甲苯加工有機太陽能電池光電轉換效率達到19.12%en_US
dc.identifier.spage850-
dc.identifier.epage859-
dc.identifier.volume68-
dc.identifier.issue3-
dc.identifier.doi10.1007/s40843-024-3167-7-
dcterms.abstractThe development of high-performance near-infrared (NIR) absorbing electron acceptors is a major challenge in achieving high short-circuit current density (JSC) to increase power conversion efficiency (PCE) of organic solar cells (OSCs). Herein, three new multi-heteroatomized Y-series acceptors (bi-asy-Y-Br, bi-asy-Y-FBr, and bi-asy-Y-FBrF) were developed by combining dual-asymmetric selenium-fused core and brominated end-groups with different numbers of fluorine substitutions. With gradually increasing fluorination, three acceptors exhibit red-shift absorption. Among them, bi-asy-Y-FBrF presents planar molecular geometry, the maximum average electrostatic potential, and the minimum molecular dipole moment, which are conducive to intramolecular packing and charge transport. Moreover, D18:bi-asy-Y-FBrF active layer presents higher crystallinity, more suitable phase separation, and reduced charge recombination compared to D18:bi-asy-Y-Br and D18:bi-asy-Y-FBr blends. Consequently, among theses binary OSCs, D18:bi-asy-Y-FBrF device achieves a higher PCE of 15.74% with an enhanced JSC of 26.28 mA cm−2, while D18:bi-asy-Y-Br device obtains a moderate PCE of 15.04% with the highest open-circuit voltage (VOC) of 0.926 V. Inspired by its high VOC and complementary absorption with NIR-absorbing BTP-eC9 as acceptor, bi-asy-Y-Br is introduced into binary D18:BTP-eC9 to construct ternary OSCs, achieving a further boosted PCE of 19.12%, which is among the top values for the reported green solvent processed OSCs.-
dcterms.abstract开发高性能的近红外吸收电子受体是实现高短路电流密度并提高有机太阳能电池(OSCs)光电转换效率(PCEs)的重要方法.此工作通过结合双不对称硒稠核和氟、溴杂原子取代端基优势,开发了三种新型多杂原子取代的Y系列受体材料(bi-asy-Y-br、bi-asy-Y-FBr与bi-asyY-FBrF).随着氟化程度的逐渐增加,三种受体的吸收光谱逐步红移.其中, bi-asy-Y-FBrF具有最大的平均静电势分布和最小的分子偶极矩,有利于分子内电荷传输.此外,与D18:bi-asy-Y-Br和D18:bi-asy-Y-FBr共混膜相比, D18:bi-asy-Y-FBrF活性层具有更高的结晶度、更合适的相分离尺度和更低的电荷复合.因此,在二元OSCs中,D18:bi-asy-Y-FBrF器件凭借较高的短路电流密度(26.28mAcm−2),获得了15.74%的PCE值; D18:bi-asy-Y-Br器件凭借优异的开路电压(0.926V),也获得了15.04%的PCE值.受bi-asy-Y-Br开路电压高、与近红外受体BTP-eC9吸收光谱更互补的启发,本文制备了D18:BTP-eC9:bi-asy-Y-Br三元OSCs并获得了19.12%的PCE值,达到目前报道的绿色溶剂加工型OSCs的最高效率范围.-
dcterms.accessRightsopen accessen_US
dcterms.alternative氟/溴/硒多杂原子取代的双不对称电子受体助力邻二甲苯加工有机太阳能电池光电转换效率达到19.12%-
dcterms.bibliographicCitationScience China materials, Mar. 2025, v. 68, no. 3, p. 850-859-
dcterms.isPartOfScience China materials-
dcterms.issued2025-03-
dc.identifier.scopus2-s2.0-86000428639-
dc.identifier.eissn2199-4501-
dc.description.validate202603 bcch-
dc.description.oaVersion of Recorden_US
dc.identifier.FolderNumberOA_Scopus/WOSen_US
dc.description.fundingSourceOthersen_US
dc.description.fundingTextThis work was supported by the National Key Research and Development Program of China (2022YFE0132400), the National Natural Science Foundation of China (NSFC) (22209131 and 22405204), the Key Scientific and Technological Innovation Team Project of Shaanxi Province (2020TD-002), the 111 project 2.0 (BP0618008), the Postdoctoral Innovation Talents Support Program (BX20230285), the Science and Technology Program of Shaanxi Province (2023-JC-QN-0448), the Outstanding Youth Science and Technology Fund Project of Xi’an University of Science and Technology (8159922001), the Open Fund of Jiangsu Engineering Laboratory of Light-Electricity-Heat Energy-Converting Materials and Applications (Changzhou University) (GDRGCS2023002). We thank Mrs. Pei Zhou at Instrument Analysis Center of Xi’an Jiaotong University for her assistance with NMR analysis. X-ray data was acquired at beamlines 7.3.3 and 11.0.1.2 at the Advanced Light Source, which is supported by the Director, Office of Science, Office of Basic Energy Sciences of the U.S. Department of Energy under Contract No. DE-AC02-05CH11231. The authors thank Dr. Eric Schaible and Dr. Chenhui Zhu at beamline 7.3.3, for assistance with data acquisition.en_US
dc.description.pubStatusPublisheden_US
dc.description.oaCategoryCCen_US
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