Nanotransplantation Printing of Crystallographic-Orientation-Controlled Single-Crystalline Nanowire Arrays on Diverse Surfaces

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dc.contributor.authorHan, Hyeuk Jinko
dc.contributor.authorJeong, Jae Wonko
dc.contributor.authorYang, Se Ryeunko
dc.contributor.authorKim, Cheolgyuko
dc.contributor.authorYoo, Hyeon Gyunko
dc.contributor.authorYoon, Jun-Boko
dc.contributor.authorPark, Jaehongko
dc.contributor.authorLee, Keon Jaeko
dc.contributor.authorKim, Taek-Sooko
dc.contributor.authorKim, Seong-Woongko
dc.contributor.authorJung, Yeon Sikko
dc.date.accessioned2017-12-19T03:03:02Z-
dc.date.available2017-12-19T03:03:02Z-
dc.date.created2017-11-29-
dc.date.created2017-11-29-
dc.date.issued2017-11-
dc.identifier.citationACS NANO, v.11, no.11, pp.11642 - 11652-
dc.identifier.issn1936-0851-
dc.identifier.urihttp://hdl.handle.net/10203/228609-
dc.description.abstractThe fabrication of a highly ordered array of single-crystalline nanostructures prepared from solution-phase or vapor-phase synthesis methods is extremely challenging due to multiple difficulties of spatial arrangement and control of crystallographic orientation. Herein, we introduce a nanotransplantation printing (NTPP) technique for the reliable fabrication, transfer, and arrangement of single-crystalline Si nanowires (NWs) on diverse substrates. NTPP entails (1) formation of nanoscale etch mask patterns on conventional low-cost Si via nanotransfer printing, (2) two-step combinatorial plasma etching for defining Si NWs, and (3) detachment and transfer of the NWs onto various receiver substrates using an infiltration-type polymeric transfer medium and a solvent-assisted adhesion switching mechanism. Using this approach, high-quality, highly ordered Si NWs can be formed on almost any type of surface including flexible plastic substrates, biological surfaces, and deep-trench structures. Moreover, NTPP provides controllability of the crystallographic orientation of NWs, which is confirmed by the successful generation of (100)- and (110)-oriented Si NWs with different properties. The outstanding electrical properties of the NWs were confirmed by fabricating and characterizing Schottky junction field-effect transistors. Furthermore, exploiting the highly flexible nature of the NWs, a high-performance piezoresistive strain sensor, with a high gauge factor over 200 was realized.-
dc.languageEnglish-
dc.publisherAMER CHEMICAL SOC-
dc.subjectPERFORMANCE FLEXIBLE ELECTRONICS-
dc.subjectCONCENTRATED POLYMER BRUSHES-
dc.subjectTHIN-FILM TRANSISTORS-
dc.subjectSILICON NANOWIRES-
dc.subjectBLOCK-COPOLYMER-
dc.subjectSEMICONDUCTOR NANOWIRES-
dc.subjectEPIDERMAL ELECTRONICS-
dc.subjectLUBRICATION MECHANISM-
dc.subjectBULK WAFERS-
dc.subjectSKIN-
dc.titleNanotransplantation Printing of Crystallographic-Orientation-Controlled Single-Crystalline Nanowire Arrays on Diverse Surfaces-
dc.typeArticle-
dc.identifier.wosid000416878100111-
dc.identifier.scopusid2-s2.0-85035323697-
dc.type.rimsART-
dc.citation.volume11-
dc.citation.issue11-
dc.citation.beginningpage11642-
dc.citation.endingpage11652-
dc.citation.publicationnameACS NANO-
dc.identifier.doi10.1021/acsnano.7b06696-
dc.contributor.localauthorYoon, Jun-Bo-
dc.contributor.localauthorLee, Keon Jae-
dc.contributor.localauthorKim, Taek-Soo-
dc.contributor.localauthorJung, Yeon Sik-
dc.contributor.nonIdAuthorYang, Se Ryeun-
dc.description.isOpenAccessN-
dc.type.journalArticleArticle-
dc.subject.keywordAuthornanotransplantation printing-
dc.subject.keywordAuthorsingle-crystalline nanowires-
dc.subject.keywordAuthororientation control-
dc.subject.keywordAuthorfield-effect transistor-
dc.subject.keywordAuthorstrain sensor-
dc.subject.keywordPlusPERFORMANCE FLEXIBLE ELECTRONICS-
dc.subject.keywordPlusCONCENTRATED POLYMER BRUSHES-
dc.subject.keywordPlusTHIN-FILM TRANSISTORS-
dc.subject.keywordPlusSILICON NANOWIRES-
dc.subject.keywordPlusBLOCK-COPOLYMER-
dc.subject.keywordPlusSEMICONDUCTOR NANOWIRES-
dc.subject.keywordPlusEPIDERMAL ELECTRONICS-
dc.subject.keywordPlusLUBRICATION MECHANISM-
dc.subject.keywordPlusBULK WAFERS-
dc.subject.keywordPlusSKIN-
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EE-Journal Papers(저널논문)MS-Journal Papers(저널논문)ME-Journal Papers(저널논문)
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