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Cited 174 time in webofscience Cited 171 time in scopus
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dc.contributor.authorMoon, Hyun Sik-
dc.contributor.authorHsiao, Kai-Chi-
dc.contributor.authorWu, Ming-Chung-
dc.contributor.authorYun, Yongju-
dc.contributor.authorHsu, Yung-Jung-
dc.contributor.authorYong, Kijung-
dc.date.accessioned2022-06-22T00:20:44Z-
dc.date.available2022-06-22T00:20:44Z-
dc.date.created2022-04-01-
dc.date.issued2023-01-
dc.identifier.issn0935-9648-
dc.identifier.urihttps://oasis.postech.ac.kr/handle/2014.oak/112952-
dc.description.abstract© 2022 Wiley-VCH GmbHA Z-scheme heterojunction with spatially separated cocatalysts is proposed for overcoming fundamental issues in photocatalytic water splitting, such as inefficient light absorption, charge recombination, and sluggish reaction kinetics. For efficient light absorption and interfacial charge separation, Z-scheme organic/inorganic heterojunction photocatalysts are synthesized by firmly immobilizing ultrathin g-C3N4 on the surface of TiO2 hollow spheres via electrostatic interactions. Additionally, two cocatalysts, Pt and IrOx, are spatially separated along the Z-scheme charge-transfer pathway to enhance surface charge separation and reaction kinetics. The as-prepared Pt/g-C3N4/TiO2/IrOx (PCTI) hollow sphere photocatalyst exhibits an exceptional H2 evolution rate of 8.15 mmol h−1 g−1 and a remarkable apparent quantum yield of 24.3% at 330 nm in the presence of 0.5 wt% Pt and 1.2 wt% IrOx cocatalysts on g-C3N4 and TiO2, respectively. Photoassisted Kelvin probe force microscopy is used to systematically analyze the Z-scheme charge-transfer mechanism within PCTI. Furthermore, the benefits of spatially separating cocatalysts in the PCTI system are methodically investigated in comparison to randomly depositing them. This work adequately demonstrates that the combination of a Z-scheme heterojunction and spatially separated cocatalysts can be a promising strategy for designing high-performance photocatalytic platforms for solar fuel production.-
dc.languageEnglish-
dc.publisherJohn Wiley and Sons Inc-
dc.relation.isPartOfAdvanced Materials-
dc.titleSpatial Separation of Cocatalysts on Z-Scheme Organic/Inorganic Heterostructure Hollow Spheres for Enhanced Photocatalytic H2 Evolution and In-Depth Analysis of the Charge-Transfer Mechanism-
dc.typeArticle-
dc.identifier.doi10.1002/adma.202200172-
dc.type.rimsART-
dc.identifier.bibliographicCitationAdvanced Materials, v.35, no.4-
dc.identifier.wosid000767654500001-
dc.citation.number4-
dc.citation.titleAdvanced Materials-
dc.citation.volume35-
dc.contributor.affiliatedAuthorMoon, Hyun Sik-
dc.contributor.affiliatedAuthorYun, Yongju-
dc.contributor.affiliatedAuthorYong, Kijung-
dc.identifier.scopusid2-s2.0-85126041789-
dc.description.journalClass1-
dc.description.journalClass1-
dc.description.isOpenAccessN-
dc.type.docTypeArticle; Early Access-
dc.subject.keywordPlusDIFFUSION LENGTH-
dc.subject.keywordPlusWATER-
dc.subject.keywordPlusHYDROGEN-
dc.subject.keywordPlusPEROVSKITE-
dc.subject.keywordPlusTRIHALIDE-
dc.subject.keywordPlusOXIDATION-
dc.subject.keywordAuthorg-C 3N 4/TiO 2-
dc.subject.keywordAuthorphotocatalytic water splitting-
dc.subject.keywordAuthorsolar hydrogen energy-
dc.subject.keywordAuthorspatial separation of cocatalysts-
dc.subject.keywordAuthorZ-scheme heterojunctions-
dc.relation.journalWebOfScienceCategoryChemistry, Multidisciplinary-
dc.relation.journalWebOfScienceCategoryChemistry, Physical-
dc.relation.journalWebOfScienceCategoryNanoscience & Nanotechnology-
dc.relation.journalWebOfScienceCategoryMaterials Science, Multidisciplinary-
dc.relation.journalWebOfScienceCategoryPhysics, Applied-
dc.relation.journalWebOfScienceCategoryPhysics, Condensed Matter-
dc.description.journalRegisteredClassscie-
dc.description.journalRegisteredClassscopus-

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윤용주YUN, YONGJU
Dept. of Chemical Enginrg
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