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Yun Park

Seoul National University · 物理学・天文学

研究室紹介

Professor Yun Park's research lab specializes in nanoscale materials and devices, focusing on advanced 2D materials like graphene, complex oxides such as strontium cobaltite and nickel oxide, and carbon nanotubes. The lab explores fundamental electronic and optoelectronic phenomena, including light-induced doping, resistance switching, and nanoconfined water dynamics, with applications in sensing, memory devices, and quantum nanomechanics. Key research directions include the design of novel heterostructures, manipulation of charge transport at the nanoscale, and the development of high-quality nanomechanical resonators for quantum and low-power electronics.

2D materialsresistance switchingnanomechanical resonatorsnanoconfined watercarbon nanotube junctions

Research Overview

Papers
68
Total Citations
858
Papers (5y)
7
Primary Field
物理学・天文学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
7total
2022
2023
2024
2025
2026
Citations per year (5y)
27total
20222023202420252026

Selected Papers

15
1
Article|343 citations·2015
Bright visible light emission from graphene
Young Duck Kim, Hakseong Kim, Yujin Cho, Ji Hoon Ryoo, Cheol-Hwan Park, Pilkwang Kim, Yong Seung Kim, Sunwoo Lee, Yilei Li, Seung-Nam Park, Yong Shim Yoo, Duhee Yoon
SJR Q1Nature NanotechnologyOA
Materials ChemistryMaterials Science
2
Article|81 citations·2013
Focused-Laser-Enabled p–n Junctions in Graphene Field-Effect Transistors
Young Duck Kim, Myung‐Ho Bae, Jung-Tak Seo, Yong Seung Kim, Hakseong Kim, Jaehong Lee, Joung Real Ahn, Sang Wook Lee, Seung‐Hyun Chun, Yun Daniel Park
SJR Q1ACS Nano

With its electrical carrier type as well as carrier densities highly sensitive to light, graphene is potentially an ideal candidate for many optoelectronic applications. Beyond the direct light-graphene interactions, indirect effects arising from induced charge traps underneath the photoactive graphene arising from light-substrate interactions must be better understood and harnessed. Here, we study the local doping effect in graphene using focused-laser irradiation, which governs the trapping an

Materials ChemistryMaterials Science
3
Article|53 citations·2014
Resistance switching in epitaxial SrCoOx thin films
Octolia Togibasa, Kadek Juliana Parwanta, Susant Kumar Acharya, Bo Wha Lee, C. U. Jung, Yeon Soo Kim, Bae Ho Park, Huiseong Jeong, Ji‐Yong Park, Michael Cho, Yun Daniel Park, Woo Seok Choi
SJR Q1Applied Physics Letters

We observed bipolar switching behavior from an epitaxial strontium cobaltite film grown on a SrTiO3 (001) substrate. The crystal structure of strontium cobaltite has been known to undergo topotactic phase transformation between two distinct phases: insulating brownmillerite (SrCoO2.5) and conducting perovskite (SrCoO3−δ) depending on the oxygen content. The current–voltage characteristics of the strontium cobaltite film showed that it could have a reversible insulator-to-metal transition trigger

Electrical and Electronic EngineeringEngineering
4
Article|46 citations·2008
High-frequency micromechanical resonators from aluminium–carbon nanotube nanolaminates
Jung Hoon Bak, Young Duck Kim, Seung Sae Hong, Byung Yang Lee, Seung Ran Lee, Jae Hyuck Jang, Miyoung Kim, K. Char, Seunghun Hong, Yun Daniel Park
SJR Q1Nature Materials
Atomic and Molecular Physics, and OpticsPhysics and Astronomy
5
Article|34 citations·2008
Scalable Assembly Method of Vertically-Suspended and Stretched Carbon Nanotube Network Devices for Nanoscale Electro-Mechanical Sensing Components
Byung Yang Lee, Kwang Heo, Jung Hoon Bak, Sung Un Cho, Seung Eon Moon, Yun Daniel Park, Seunghun Hong
SJR Q1Nano Letters

For the first time, vertically suspended and stretched carbon nanotube network junctions were fabricated in large quantity via the directed assembly strategy using only conventional microfabrication facilities. In this process, surface molecular patterns on the side-wall of the Al structures were utilized to guide the assembly and alignment of carbon nanotubes in the solution. We also performed extensive experimental (electrical and mechanical) analysis and theoretical simulation about the verti

Materials ChemistryMaterials Science
6
Article|23 citations·2007
Micromechanical resonators fabricated from lattice-matched and etch-selective GaAs∕InGaP∕GaAs heterostructures
Seung Bo Shim, June Sang Chun, Seok Won Kang, Sung Wan Cho, Sung Woon Cho, Yun Daniel Park, Pritiraj Mohanty, Nam Kim, Jinhee Kim
SJR Q1Applied Physics Letters

Utilizing lattice-matched GaAs∕InGaP∕GaAs heterostructures, clean micromechanical resonators are fabricated and characterized. The nearly perfect selectivity of GaAs∕InGaP is demonstrated by realizing paddle-shaped resonators, which require significant lateral etching of the sacrificial layer. Doubly clamped beam resonators are also created, with a Q factor as high as 17 000 at 45mK. Both linear and nonlinear behaviors are observed in GaAs micromechanical resonators. Furthermore, a direct relati

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
7
Article|23 citations·2024
Suppressed terahertz dynamics of water confined in nanometer gaps
Hyosim Yang, Gangseon Ji, Min Choi, Seondo Park, Hyeonjun An, Hyoung-Taek Lee, Joonwoo Jeong, Joonwoo Jeong, Yun Daniel Park, K. W. Kim, Noejung Park, Jeeyoon Jeong
SJR Q1Science AdvancesOA

Nanoconfined waters exhibit low static permittivity mainly due to interfacial effects that span about one nanometer. The characteristic length scale may be much longer in the terahertz (THz) regime where long-range collective dynamics occur; however, the THz dynamics have been largely unexplored because of the lack of a robust platform. Here, we use metallic loop nanogaps to sharply enhance light-matter interactions and precisely measure real and imaginary THz refractive indices of nanoconfined

Electrical and Electronic EngineeringEngineering
8
Article|23 citations·2010
Investigation of Interface Formed between Top Electrodes and Epitaxial NiO Films for Bipolar Resistance Switching
Seung Ran Lee, Hoon Min Kim, Jung Hoon Bak, Yun Daniel Park, K. Char, Hong Woo Park, Deok‐Hwang Kwon, Miyoung Kim, Dong-Chirl Kim, Sunae Seo, Xiang‐Shu Li, Gyeong‐Su Park
SJR Q3Japanese Journal of Applied Physics

We investigated the resistance switching (RS) phenomenon in epitaxial NiO (epi-NiO) films by employing different types of top electrodes (TEs). Epi-NiO showed successive bipolar RS when Pt and CaRuO 3 (CRO) were used as the TEs, but not when Al and Ti were used. We studied the temperature dependence of the current–voltage ( I – V ) characteristics for various TEs and resistance states to understand the conduction properties of TE/epi-NiO. Pristine CRO/epi-NiO showed metallic behavior, while pris

Electrical and Electronic EngineeringEngineering
9
Article|22 citations·2015
Investigation of inelastic electron tunneling spectra of metal-molecule-metal junctions fabricated using direct metal transfer method
Hyunhak Jeong, Wang‐Taek Hwang, Pilkwang Kim, Dongku Kim, Yeonsik Jang, Mi‐Sook Min, Dong Xiang, Hyunwook Song, Yun Daniel Park, Heejun Jeong, Takhee Lee
SJR Q1Applied Physics Letters

We measured the inelastic electron tunneling spectroscopy (IETS) characteristics of metal-molecule-metal junctions made with alkanethiolate self-assembled monolayers. The molecular junctions were fabricated using a direct metal transfer method, which we previously reported for high-yield metal-molecule-metal junctions. The measured IETS data could be assigned to molecular vibration modes that were determined by the chemical structure of the molecules. We also observed discrepancies and device-to

Electrical and Electronic EngineeringEngineering
10
Article|22 citations·2003
Room temperature ferromagnetism in GaMnN and GaMnP
S. J. Pearton, M. E. Overberg, G. T. Thaler, C. R. Abernathy, J. Kim, F. Ren, Nikoleta Theodoropoulou, A. F. Hebard, Yun Daniel Park
physica status solidi (a)

Results on the synthesis of ferromagnetic GaMnN and GaMnP by both Molecular Beam Epitaxy or implantation of Mn directly into p-GaN or GaP(C) at elevated temperatures to avoid amorphization will be described. There is a relatively broad range of growth conditions under which single-crystal, single-phase material may be obtained with significant Mn concentrations. The effects of background doping level are discussed, along with a comparison of results on direct implantation of Fe and Ni instead of

Electronic, Optical and Magnetic MaterialsMaterials Science
11
Article|21 citations·2014
A new approach for high-yield metal–molecule–metal junctions by direct metal transfer method
Hyunhak Jeong, Dongku Kim, Pilkwang Kim, Michael Cho, Wang‐Taek Hwang, Yeonsik Jang, Kyungjune Cho, Mi‐Sook Min, Dong Xiang, Yun Daniel Park, Heejun Jeong, Takhee Lee
SJR Q2Nanotechnology

The realization of high-yield, stable molecular junctions has been a long-standing challenge in the field of molecular electronics research, and it is an essential prerequisite for characterizing and understanding the charge transport properties of molecular junctions prior to their device applications. Here, we introduce a new approach for obtaining high-yield, vertically structured metal-molecule-metal junctions in which the top metal electrodes are formed on alkanethiolate self-assembled mono

Electrical and Electronic EngineeringEngineering
12
Article|19 citations·2005
Fabrication and Thickness Dependent Properties of Ferroelectric Heterostructure
김용수, 노태원, D.H. Kim, J.D. Kim, 윤종걸, J.H. Kong, 부상돈, 박윤

A high quality epitaxial SrRuO3(SRO)/BaTiO3(BTO)/SRO/SrTiO3 (001) heterostructure was grown by pulsed laser deposition with in situ re ection high-energy electron diraction. The growth mode and crystallinity of the heterostructure were veried by X-ray diraction and atomic force microscopy. Ferroelectric (FE) hysteresis loops could be observed down to 9 nm of BTO thickness. Remanent polarization decreased as the FE layer thickness decreased. In addition, all the capacitors showed imprint phenomen

13
Article|17 citations·2018
Strong Two-Mode Parametric Interaction and Amplification in a Nanomechanical Resonator
Sungwan Cho, Sung Un Cho, Myunglae Jo, Junho Suh, Hee Chul Park, Sang Goon Kim, Seung‐Bo Shim, Yun Daniel Park
SJR Q1Physical Review Applied

Recent research on nanomechanical resonators has shown that their mechanical motion can be controlled via the interactions between different flexural modes, in diverse structures. Strong coupling in flexural modes has been attributed to strain mediation, but further study is needed to harness the dynamics for applications. The authors use a doubly clamped resonator to demonstrate coupling between flexural modes of different parity, and then use theory to show that the thermomechanical motion of

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
14
Article|11 citations·2005
A Study on the Validity of the Skew Scattering Model for the Anomalous Hall Effect in Low-Temperature Molecular Beam Epitaxy Gallium Manganese Arsenide
김용승, 박윤, H.K. Choi, I.T. Jeong, J.C. Woo, J.S. Lee, 김기훈, S.H. Chun, 오윤석, Z.G. Khim

We report on an investigation of the applicability of the skew scattering model for the anomalous Hall Effect in (Ga,Mn)As prepared using low-temperature molecular beam epitaxy. Specifically, we study the relationship between the Hall resistivity (xy) and the longitudinal resistivity (xx) for differing Mn concentrations incorporated into the IIIGa site. The growth conditions for single-phase (Ga,Mn)As were carefully determined by using in-situ reflection high-energy electron diffraction, exsitu

15
Article|11 citations·2014
High performance CNT point emitter with graphene interfacial layer
Jeong Seok Lee, Taewoo Kim, Seul‐Gi Kim, Michael Cho, Dong Kyun Seo, Minwoo Lee, Seontae Kim, Dae Weon Kim, Gun‐Sik Park, Dae Hong Jeong, Yun Daniel Park, Ji-Beom Yoo
SJR Q2Nanotechnology

Carbon nanotubes (CNTs) have great potential in the development of high-power electron beam sources. However, for such a high-performance electronic device, the electric and thermal contact problem between the metal and CNTs must be improved. Here, we report graphene as an interfacial layer between the metal and CNTs to improve the interfacial contact. The interfacial graphene layer results in a dramatic decrease of the electrical contact resistance by an order of 2 and an increase of the interf

Materials ChemistryMaterials Science

Research Areas

Atomic and Molecular Physics, and OpticsMaterials ChemistryElectrical and Electronic EngineeringBiomedical EngineeringElectronic, Optical and Magnetic MaterialsCondensed Matter Physics

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