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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
請用此 Handle URI 來引用此文件: http://scholars.ntou.edu.tw/handle/123456789/2272
DC 欄位值語言
dc.contributor.authorLiang, Yuan-Changen_US
dc.contributor.authorHung, Chen-Shiangen_US
dc.date.accessioned2020-11-17T03:18:51Z-
dc.date.available2020-11-17T03:18:51Z-
dc.date.issued2020-07-7-
dc.identifier.issn2470-1343-
dc.identifier.urihttp://scholars.ntou.edu.tw/handle/123456789/2272-
dc.description.abstractThe Fe2O3-ZnO composite rods were successfully synthesized by combining hydrothermal growth of Fe2O3 rods and sputtering deposition of a thin ZnO coverage layer. Two types of the Fe2O3 rods with round and rectangular cross-sectional morphologies grown via control of the urea content in hydrothermal growth processes were used as rod templates to fabricate the Fe2O3-ZnO composite rods. The Fe2O3-ZnO composite rods exhibited an improved photoelectric conversion efficiency in the Fe2O3 rods via a construction of a heterogeneous structure. The photocatalytic degradation performance of rhodamine B dyes with Fe2O3 rods was substantially increased via sputtering decoration of a thin ZnO coverage layer on the Fe2O3 rods. Moreover, the Fe2O3-ZnO composite rods exhibited superior acetone vapor-sensing responses than the pristine Fe2O3 rods herein. The extended optical absorption ability together with the enhanced photoinduced charge separation efficiency via construction of the Fe2O3-ZnO heterogeneous system explained the improved photoactivity of the composite rods. Furthermore, the formation of a heterojunction between the Fe2O3 and ZnO increased the interfacial potential barrier height and enhanced the sensor resistance variation size upon exposure to the acetone vapor. This accounted for the improved gas-sensing performance of the Fe2O3-ZnO composite rods. The experimental results herein provide a promising approach to design Fe2O3-based composite rods with desirable photocatalytic and gas-sensing functionalities.en_US
dc.language.isoen_USen_US
dc.publisherAMER CHEMICAL SOCen_US
dc.relation.ispartofACS OMEGAen_US
dc.subjectALPHA-FE2O3 NANOSTRUCTURESen_US
dc.subjectPHOTOCATALYTIC ACTIVITYen_US
dc.subjectMAGNETIC-PROPERTIESen_US
dc.subjectSENSING PROPERTIESen_US
dc.subjectHEMATITE NANORODSen_US
dc.subjectSHELLen_US
dc.subjectCOMPOSITEen_US
dc.subjectPERFORMANCEen_US
dc.subjectMICROSTRUCTURESen_US
dc.subjectNANOCOMPOSITESen_US
dc.titleDesign of Hydrothermally Derived Fe2O3 Rods with Enhanced Dual Functionality Via Sputtering Decoration of a Thin ZnO Coverage Layeren_US
dc.typejournal articleen_US
dc.identifier.doi10.1021/acsomega.0c02107-
dc.identifier.isiWOS:000548543800057-
dc.identifier.url<Go to ISI>://WOS:000548543800057
dc.relation.journalvolume5en_US
dc.relation.journalissue26en_US
dc.relation.pages16272-16283en_US
item.openairetypejournal article-
item.fulltextno fulltext-
item.openairecristypehttp://purl.org/coar/resource_type/c_6501-
item.grantfulltextnone-
item.cerifentitytypePublications-
item.languageiso639-1en_US-
crisitem.author.deptCollege of Electrical Engineering and Computer Science-
crisitem.author.deptDepartment of Optoelectronics and Materials Technology-
crisitem.author.deptNational Taiwan Ocean University,NTOU-
crisitem.author.parentorgNational Taiwan Ocean University,NTOU-
crisitem.author.parentorgCollege of Electrical Engineering and Computer Science-
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07 AFFORDABLE & CLEAN ENERGY
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