Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/116322
DC FieldValueLanguage
dc.contributorDepartment of Electronic and Information Engineering-
dc.contributorResearch Institute for Smart Energy-
dc.contributorMainland Development Office-
dc.creatorGao, W-
dc.creatorLi, L-
dc.creatorMa, R-
dc.creatorLiu, H-
dc.creatorMa, N-
dc.creatorZhao, X-
dc.creatorRen, Y-
dc.creatorLi, G-
dc.creatorWei, Z-
dc.date.accessioned2025-12-16T02:02:23Z-
dc.date.available2025-12-16T02:02:23Z-
dc.identifier.issn1001-604X-
dc.identifier.urihttp://hdl.handle.net/10397/116322-
dc.language.isoenen_US
dc.publisherWiley-VCH Verlag GmbH & Co. KGaA, Weinheimen_US
dc.subjectAlkyl chain regulationen_US
dc.subjectMorphologyen_US
dc.subjectOrganic solar cellsen_US
dc.subjectSmall molecule acceptoren_US
dc.subjectSteric hindranceen_US
dc.titleSteric hindrance effects from external alkyl chains of small molecule acceptors on photovoltaic performance of organic solar cells†en_US
dc.typeJournal/Magazine Articleen_US
dc.identifier.spage3243-
dc.identifier.epage3251-
dc.identifier.volume43-
dc.identifier.issue23-
dc.identifier.doi10.1002/cjoc.70239-
dcterms.abstractHerein, we designed and synthesized five small molecule acceptors (SMAs), Se-1 to Se-5, by systematically varying the bifurcation sites of branched alkyl chains on selenophene[3,2-b]thiophene unit to investigate the steric hindrance effects of external alkyl chain in Y6-type SMAs on molecular stacking, active layer morphology, and photovoltaic performance. As the steric hindrance of branched alkyl chains decreased, the bandgap of SMAs narrowed with π–π stacking interactions between adjacent molecules enhanced, and the reorganization energy with D18 decreased. In particular, the strong steric hindrance from 1-position branched alkyl chain significantly suppressed π–π stacking, resulting in reduced carrier mobility within the active layer. Conversely, the weaker steric hindrance from 5-position branched alkyl chain led to excessive crystallinity of the acceptor, causing an uneven donor–acceptor distribution and imbalanced charge transport. Notably, the 2-position branched alkyl chain endowed Se-2 with optimal crystallization behavior, enabling a uniform phase distribution and balanced charge mobility. As a result, binary device based on D18/Se-2 achieved an efficiency of 19.65%, representing the highest reported efficiency for selenium-containing SMAs. This work underscores the critical role of exo-alkyl chain steric hindrance regulation, offering valuable insights for the rational design of high-performance SMAs.-
dcterms.accessRightsembargoed accessen_US
dcterms.bibliographicCitationChinese journal of chemistry, 1 Dec. 2025, v. 43, no. 23, p. 3243-3251-
dcterms.isPartOfChinese journal of chemistry-
dcterms.issued2025-12-01-
dc.identifier.scopus2-s2.0-105013654951-
dc.identifier.eissn1614-7065-
dc.description.validate202512 bcjz-
dc.description.oaNot applicableen_US
dc.identifier.SubFormIDG000474/2025-09en_US
dc.description.fundingSourceOthersen_US
dc.description.fundingTextThis work was financially supported by the National Natural Science Foundation of China (U23A20371 and U21A2078), Xiamen Outstanding Young Talent Fund (605-52424047), and the Scientific Research Funds of Huaqiao University (605-50Y23024). R.M. thanks the PolyU Distinguished Postdoctoral Fellowship (1-YW4C). We thank the characterization support from the Instrumental Analysis Center of Huaqiao University, and Dr. Jiawei Huang from Songshan Lake Materials Laboratory for their assistance in PiFM measurements and discussion.en_US
dc.description.pubStatusPublisheden_US
dc.date.embargo2026-12-01en_US
dc.description.oaCategoryGreen (AAM)en_US
Appears in Collections:Journal/Magazine Article
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Embargo End Date 2026-12-01
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