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Kim, Kyung Rok
Nano-Electronic Emerging Devices Lab.
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dc.citation.number 1 -
dc.citation.startPage 1998 -
dc.citation.title NATURE COMMUNICATIONS -
dc.citation.volume 10 -
dc.contributor.author Lee, Lynn -
dc.contributor.author Hwang, Jeongwoon -
dc.contributor.author Jung, Jin Won -
dc.contributor.author Kim, Jongchan -
dc.contributor.author Lee, Ho-In -
dc.contributor.author Heo, Sunwoo -
dc.contributor.author Yoon, Minho -
dc.contributor.author Choi, Sungju -
dc.contributor.author Van Long, Nguyen -
dc.contributor.author Park, Jinseon -
dc.contributor.author Jeong, Jae Won -
dc.contributor.author Kim, Jiyoung -
dc.contributor.author Kim, Kyung Rok -
dc.contributor.author Kim, Dae Hwan -
dc.contributor.author Im, Seongil -
dc.contributor.author Lee, Byoung Hun -
dc.contributor.author Cho, Kyeongjae -
dc.contributor.author Sung, Myung Mo -
dc.date.accessioned 2023-12-21T19:14:23Z -
dc.date.available 2023-12-21T19:14:23Z -
dc.date.created 2019-05-02 -
dc.date.issued 2019-04 -
dc.description.abstract A quantum confined transport based on a zinc oxide composite nanolayer that has conducting states with mobility edge quantization is proposed and was applied to develop multi-value logic transistors with stable intermediate states. A composite nanolayer with zinc oxide quantum dots embedded in amorphous zinc oxide domains generated quantized conducting states at the mobility edge, which we refer to as “mobility edge quantization”. The unique quantized conducting state effectively restricted the occupied number of carriers due to its low density of states, which enable current saturation. Multi-value logic transistors were realized by applying a hybrid superlattice consisting of zinc oxide composite nanolayers and organic barriers as channels in the transistor. The superlattice channels produced multiple states due to current saturation of the quantized conducting state in the composite nanolayers. Our multi-value transistors exhibited excellent performance characteristics, stable and reliable operation with no current fluctuation, and adjustable multi-level states. -
dc.identifier.bibliographicCitation NATURE COMMUNICATIONS, v.10, no.1, pp.1998 -
dc.identifier.doi 10.1038/s41467-019-09998-x -
dc.identifier.issn 2041-1723 -
dc.identifier.scopusid 2-s2.0-85065094024 -
dc.identifier.uri https://scholarworks.unist.ac.kr/handle/201301/26604 -
dc.identifier.url https://www.nature.com/articles/s41467-019-09998-x -
dc.identifier.wosid 000466334200007 -
dc.language 영어 -
dc.publisher NATURE PUBLISHING GROUP -
dc.title ZnO composite nanolayer with mobility edge quantization for multi-value logic transistors -
dc.type Article -
dc.description.isOpenAccess TRUE -
dc.relation.journalWebOfScienceCategory Multidisciplinary Sciences -
dc.relation.journalResearchArea Science & Technology - Other Topics -
dc.type.docType Article -
dc.description.journalRegisteredClass scie -
dc.description.journalRegisteredClass scopus -
dc.subject.keywordPlus TOTAL-ENERGY CALCULATIONS -
dc.subject.keywordPlus THIN-FILMS -

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