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    AuthorChang, Jankai (1)Chen, Changhsiao (1)Chen, Lihjuann (1)
    He, Jr-Hau (1)
    Li, Lain-Jong (1)View MoreDepartmentComputer, Electrical and Mathematical Sciences and Engineering (CEMSE) Division (1)Electrical Engineering Program (1)
    KAUST Solar Center (KSC) (1)
    Materials Science and Engineering Program (1)Nano Energy Lab (1)View MoreJournalACS Nano (1)Publisher
    American Chemical Society (ACS) (1)
    Subject
    2D material (1)
    chemical vapor deposition (1)
    heterojunction solar cell (1)molybdenum disulfide (1)
    monolayer (1)
    View MoreType
    Article (1)
    Year (Issue Date)
    2014 (1)
    Item AvailabilityMetadata Only (1)

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    Monolayer MoS2 heterojunction solar cells

    Tsai, Meng-Lin; Su, Shenghan; Chang, Jankai; Tsai, Dungsheng; Chen, Changhsiao; Wu, Chih I.; Li, Lain-Jong; Chen, Lihjuann; He, Jr-Hau (ACS Nano, American Chemical Society (ACS), 2014-07-25) [Article]
    We realized photovoltaic operation in large-scale MoS2 monolayers by the formation of a type-II heterojunction with p-Si. The MoS 2 monolayer introduces a built-in electric field near the interface between MoS2 and p-Si to help photogenerated carrier separation. Such a heterojunction photovoltaic device achieves a power conversion efficiency of 5.23%, which is the highest efficiency among all monolayer transition-metal dichalcogenide-based solar cells. The demonstrated results of monolayer MoS 2/Si-based solar cells hold the promise for integration of 2D materials with commercially available Si-based electronics in highly efficient devices. © 2014 American Chemical Society.
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