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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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Conformational molecular switch of the azobenzene molecule : A scanning tunneling microscopy study

TL;DR: In this article, an electron impact trans-cis conformational change of the isolated azobenzene molecules is explained by an electron-impact transcis conformation change of both isomers.
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Phosphorene/rhenium disulfide heterojunction-based negative differential resistance device for multi-valued logic.

TL;DR: This work demonstrates a negative differential resistance device based on a phosphorene/rhenium disulfide (BP/ReS2) heterojunction that is formed by type-III broken-gap band alignment, showing high peak-to-valley current ratio values and a ternary inverter as a multi-valued logic application.
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A Platform for Large‐Scale Graphene Electronics – CVD Growth of Single‐Layer Graphene on CVD‐Grown Hexagonal Boron Nitride

TL;DR: This sequentially grown graphene/h-BN film shows better electronic properties than that of graphene/SiO2 or graphene transferred on h-BNFilm, and suggests a new promising template for graphene device fabrication.
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High-resolution tunnelling spectroscopy of a graphene quartet

TL;DR: High-resolution scanning tunnelling spectroscopy at temperatures as low as 10 mK in an applied magnetic field is used to study the top layer of multilayer epitaxial graphene, finding states with Landau level filling factors of 7/2, 9/2 and 11/2 suggestive of new many-body states in graphene.
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High-Performance 2D Rhenium Disulfide (ReS2) Transistors and Photodetectors by Oxygen Plasma Treatment

TL;DR: A high-performance ReS2 -based thin-film transistor and photodetector with high on/off-current ratio, high mobility, and fast temporal response through O2 plasma treatment is reported.