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Young Jae Song

Researcher at Sungkyunkwan University

Publications -  115
Citations -  3875

Young Jae Song is an academic researcher from Sungkyunkwan University. The author has contributed to research in topics: Graphene & Chemical vapor deposition. The author has an hindex of 25, co-authored 103 publications receiving 2915 citations. Previous affiliations of Young Jae Song include University of Maryland, College Park & National Institute of Standards and Technology.

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Highly Efficient Infrared Photodetection in a Gate-Controllable Van der Waals Heterojunction with Staggered Bandgap Alignment.

TL;DR: Highly efficient near‐infrared (NIR) photodetection based on the interlayer optical transition phenomenon in a vdW heterojunction structure consisting of ReS2 and ReSe2 is demonstrated and offers a novel device platform for achieving high‐performance IR photodETectors.
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Effects of plasma treatment on surface properties of ultrathin layered MoS 2

TL;DR: In this paper, the authors investigated the use of oxygen plasma (O2) treatment, applied as an inductively coupled plasma, to control the thickness and work function of a MoS2 layer.
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In situ synthesis of a large area boron nitride/graphene monolayer/boron nitride film by chemical vapor deposition.

TL;DR: The in situ-grown BGB film properties suggest a novel approach to the fabrication of commercial-grade graphene-based electronic devices and did not display large changes in the mobility or the Dirac point, unlike the conventional graphene devices prepared on a SiO2 substrate.
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Management of transition dipoles in organic hole-transporting materials under solar irradiation for perovskite solar cells.

TL;DR: It is proved that enhancing their property at their photo-excited states, especially their transition dipole moments, can be a methodology to develop high efficiency p−i−n perovskite solar cells.
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Catalytic Transparency of Hexagonal Boron Nitride on Copper for Chemical Vapor Deposition Growth of Large-Area and High-Quality Graphene

TL;DR: The successful synthesis of graphene/h-BN on a Cu foil and DFT calculations for this system are reported, which demonstrate that a thin h-BN film on Cu foil is an excellent template for the growth of large-area and high-quality graphene.