김영덕 교수(Young Duck Kim)
▪ 2006. 2 연세대학교 물리학과 (학사)
▪ 2012.8 서울대학교 물리천문학과 (박사)
▪ 2012.9-2013.8 서울대학교 물리천분학과 박사 후 연구원
▪ 2013.9-2013.11 한국표준과학연구원 박사 후 연구원
▪ 2013.12-2017.2 Columbia University Post-doc
▪ 2017.2 – 현재 경희대학교 물리학과 조교수
▪ 2019.3 – 현재 KHU-KIST 융합대학원 학연 교수
• “Multi-operation mode light-emitting field-effect transistors based on van der Waals heterostructure.”, Advanced Materials 32, 2003567 (2020).
• “Bandgap engineering of two-dimensional semiconductor materials.”, npj 2D Materials and Applications DOI : 10.1038/s41699-020-00162-4 (2020).
• “Strong Metasurface-Josephson Plasma Resonance Coupling in Superconducting La2-xSrxCuO4.”, Advanced Optical Materials 6, 1900712 (2019).
• “High-performance monolayer MoS2 field-effect transistor with large-scale nitrogen-doped graphene electrodes for Ohmic contact”, Applied Physics Letters 115, 12104 (2019).
• “Thermal Radiation Control from Hot Graphene Electrons Coupled to a Photonic Crystal Nanocavity”, Nature Communications 10, 109 (2019).
• “Impact ionization by hot carriers in a black phosphorus field effect transistor”, Nature Communications 9, 3414 (2018).
• "Ultrafast Graphene Light Emitter", Nano Letters 18, 934 (2018).
• Low- temperature Ohmic contact to monolayer MoS2 by van der Waals bonded Co/h-BN electrodes”, Nano Letters, 17, 4781 (2017).
• "Materials Science: Screen printing of 2D semiconductors", Nature 544, 167 (2017).
• Interfacial Charge Transfer Circumventing Momentum Mismatch at 2D van der Waals Heterojunctions”, Nano Letters, 17, 3591 (2017).
• “Graphene-assisted anti- oxidation of tungsten disulfide monolayers: Substrate and electric-field effect”, Advanced Materials, 29, 1603898 (2017).
• “Transition-Metal Substitution Doping in Synthetic Atomically Thin Semiconductors”, Advanced Materials 28, 9735 (2016).
• “Gate-Tunable Hole and Electron Carrier Transport in Atomically Thin Dual-Channel WSe2/MoS2 Heterostructure for Ambipolar Field-Effect Transistors”, Advanced Materials 28, 9519 (2016).
• “Nature of the Quantum Metal in a Two-Dimensional Crystalline Superconductor”, Nature Physics 12, 208 (2016).
• “Bright visible light emission from graphene”, Nature Nanotechnology 10, 676 (2015).
• “Multi-terminal transport measurements of MoS2 using a van der Waals heterostructure device platform”, Nature Nanotechnology 10, 534 (2015).
• “Valley Splitting and Polarization by the Zeeman Effect in Monolayer MoSe2”, Physical Review Letters 113, 266804 (2014).
• “Focused-Laser-Enabled p-n Junctions in Graphene Field-Effect Transistors”, ACS Nano 7, 5850 (2013).
• “High-frequency micromechanical resonators from aluminum-carbon nanotube nanolaminates”, Nature Materials 7, 459 (2008).