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  1. National Taiwan Ocean University Research Hub
  2. 電機資訊學院
  3. 光電與材料科技學系
Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/26749
DC FieldValueLanguage
dc.contributor.authorShi, Zhong-Enen_US
dc.contributor.authorChandel, Anjalien_US
dc.contributor.authorCheng, Ta-Hungen_US
dc.contributor.authorLung, Chien-Yuen_US
dc.contributor.authorJiang, Bing-Huangen_US
dc.contributor.authorHsiao, Yu-Shengen_US
dc.contributor.authorYu, Yang-Yenen_US
dc.contributor.authorChang, Sheng-Hsiungen_US
dc.contributor.authorChen, Chih-Pingen_US
dc.date.accessioned2026-08-10T03:12:04Z-
dc.date.available2026-08-10T03:12:04Z-
dc.date.issued2026/7/1-
dc.identifier.issn1876-1070-
dc.identifier.urihttp://scholars.ntou.edu.tw/handle/123456789/26749-
dc.description.abstractBackground: The strategy of passivating interfacial defects in perovskite solar cells (PSCs) has recently attracted significant attention for its demonstrated potential to enhance device performance. Selecting perovskite materials with optimal bandgaps and low defect densities is crucial for maximizing photon absorption, reducing recombination losses, and achieving superior power conversion efficiencies (PCE) under indoor lighting conditions. Method: In this study, we presented a p-i-n PSC introduced 2-phenylethylamine hydroiodide (PEAI) as a multifunctional passivator. Atomic-force microscopy (AFM) images, X-ray diffraction (XRD) patterns, photoluminescence (PL) spectra, time-resolved PL curves, and Raman scattering spectra collectively reveal that both pre-treatment and post-treatment with PEAI play a critical role in the formation of merged perovskite grains and controlling the rotation of organic dipoles in the upper portion of the perovskite layers. Significant findings: The merged grains, with defect passivation facilitated by PEAI, significant enhanced the performance of the inverted Cs0.18FA0.82PbI3 PSC, boosting its efficiency from 16.51 % to 20.98 % under one-sun illumination. The optimized strategy demonstrated remarkable results in wide-bandgap perovskites, achieving an impressive performance of 40.9 % under indoor 3000 K LED lighting, with a fill factor of 81.3 +/- 0.1 %. These findings highlight a promising avenue for advancing the photovoltaic performance of formamidinium-based PSCs under both standard sunlight and indoor lighting conditions.en_US
dc.language.isoEnglishen_US
dc.publisherELSEVIERen_US
dc.relation.ispartofJOURNAL OF THE TAIWAN INSTITUTE OF CHEMICAL ENGINEERSen_US
dc.subjectPerovskite solar cellsen_US
dc.subjectIndoor photovoltaicsen_US
dc.subjectMerged grainsen_US
dc.subjectSurface passivationen_US
dc.subjectHigh fill factoren_US
dc.titleSurface passivation using organic dipole rotation enables 40.9 % indoor efficiency in perovskite solar cellsen_US
dc.typejournal articleen_US
dc.identifier.doi10.1016/j.jtice.2025.106196-
dc.identifier.isiWOS:001779086200001-
dc.relation.journalvolume184en_US
dc.relation.pages8en_US
dc.identifier.eissn1876-1089-
item.cerifentitytypePublications-
item.openairecristypehttp://purl.org/coar/resource_type/c_6501-
item.languageiso639-1English-
item.openairetypejournal article-
item.grantfulltextnone-
item.fulltextno fulltext-
crisitem.author.deptNational Taiwan Ocean University,NTOU-
crisitem.author.deptDepartment of Optoelectronics and Materials Technology-
crisitem.author.deptCollege of Engineering-
crisitem.author.orcid0000-0003-1488-1649-
crisitem.author.parentorgCollege of Electrical Engineering and Computer Science-
crisitem.author.parentorgNational Taiwan Ocean University,NTOU-
Appears in Collections:光電與材料科技學系
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