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dc.contributor.author Wang, Dong Hwan -
dc.contributor.author Kim, Jung Kyu -
dc.contributor.author Lim, Guh-Hwan -
dc.contributor.author Park, Keum Hwan -
dc.contributor.author Park, O. Ok -
dc.contributor.author Lim, Byungkwon -
dc.contributor.author Park, Jong Hyeok -
dc.date.available 2017-07-11T07:00:10Z -
dc.date.created 2017-04-10 -
dc.date.issued 2012 -
dc.identifier.issn 2046-2069 -
dc.identifier.uri http://hdl.handle.net/20.500.11750/3419 -
dc.description.abstract Enhanced power conversion efficiency (PCE(%)) with improved optical path length from two types of shape controlled silver (Ag) materials (Ag nanoplates versus Ag nanoparticles (NPs)) was studied in poly(3-hexylthiophene) (P3HT)/[6,6]-phenyl C 71 butyric acid methyl-ester (PC 71BM) or poly[N-9′′-hepta-decanyl-2,7-carbazole-alt-5,5-(4′, 7′-di-2-thienyl-2′,1′,3′-benzothiadiazole)] (PCDTBT)/[6,6]-phenyl C 71 butyric acid methyl-ester (PC 71BM) bulk heterojunction (BHJ) devices. The Ag nanoplates and Ag NPs can be synthesized by simple solution polyol chemistry with well defined size and shape. A BHJ with a 0.5 wt% optimized blend ratio of Ag nanoplates shows improved cell performance and photo-current density than a BHJ with Ag NPs owing to the enhanced light absorption with the results of an excitation of localized surface plasmon and efficient light scattering by the Ag nanoplates embedded BHJ film. When the BHJ is combined with the Ag nanoplates at an optimized ratio of 0.5 wt%, the PCE (%) increases from 3.2% to 4.4% in P3HT/PC 71BM, and from 5.9% to 6.6% in PCDTBT/PC 71BM BHJ devices. © 2012 The Royal Society of Chemistry. -
dc.publisher Royal Society of Chemistry -
dc.title Enhanced light harvesting in bulk heterojunction photovoltaic devices with shape-controlled Ag nanomaterials: Ag nanoparticles versus Ag nanoplates -
dc.type Article -
dc.identifier.doi 10.1039/c2ra20815f -
dc.identifier.wosid 000306946500036 -
dc.identifier.scopusid 2-s2.0-84864486002 -
dc.identifier.bibliographicCitation RSC Advances, v.2, no.18, pp.7268 - 7272 -
dc.description.isOpenAccess FALSE -
dc.subject.keywordPlus ACIDMETHYL ESTER -
dc.subject.keywordPlus Ag Nanoparticle -
dc.subject.keywordPlus AU -
dc.subject.keywordPlus Benzothiadiazoles -
dc.subject.keywordPlus Blend Ratios -
dc.subject.keywordPlus Blending -
dc.subject.keywordPlus Bulk-Heterojunction Devices -
dc.subject.keywordPlus Bulk Heterojunction Photovoltaic Devices -
dc.subject.keywordPlus Butyric ACID -
dc.subject.keywordPlus Cell Performance -
dc.subject.keywordPlus Conversion Efficiency -
dc.subject.keywordPlus Efficiency -
dc.subject.keywordPlus Esterification -
dc.subject.keywordPlus Esters -
dc.subject.keywordPlus Heterojunctions -
dc.subject.keywordPlus Light-Harvesting -
dc.subject.keywordPlus STAMPING TRANSFER -
dc.subject.keywordPlus Localized Surface Plasmon -
dc.subject.keywordPlus Methyl Esters -
dc.subject.keywordPlus NANOPARTICLES -
dc.subject.keywordPlus Nanoplates -
dc.subject.keywordPlus Optical Path Lengths -
dc.subject.keywordPlus Optimization -
dc.subject.keywordPlus PERFORMANCE -
dc.subject.keywordPlus Poly-3-Hexylthiophene -
dc.subject.keywordPlus Polycyclic Aromatic Hydrocarbons -
dc.subject.keywordPlus POLYMER SOLAR-CELLS -
dc.subject.keywordPlus Power Conversion Efficiencies -
dc.subject.keywordPlus Shape-Controlled -
dc.subject.keywordPlus Silver -
dc.subject.keywordPlus Size and Shape -
dc.citation.endPage 7272 -
dc.citation.number 18 -
dc.citation.startPage 7268 -
dc.citation.title RSC Advances -
dc.citation.volume 2 -
dc.description.journalRegisteredClass scie -
dc.description.journalRegisteredClass scopus -
dc.relation.journalResearchArea Chemistry -
dc.relation.journalWebOfScienceCategory Chemistry, Multidisciplinary -
dc.type.docType Article -
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