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Jongill Hong

Yonsei University · 物理学・天文学

研究室紹介

Professor Jongill Hong's research lab specializes in advanced nanomaterials and spintronic devices, focusing on the development and characterization of 2D materials like graphene and complex oxide heterostructures. Key research directions include defect-engineered graphene for tunable wettability and electronic properties, spin-transfer torque and spin-orbit torque in magnetic tunnel junctions for next-generation memory devices, and nondestructive nano-patterning techniques using low-energy ion irradiation. The lab also investigates diluted magnetic semiconductors and oxide-based spin valves to explore quantum phenomena and enhanced magnetoresistance effects.

spintronics2D materialsmagnetic nanostructuresnondestructive patterningmagnetoresistance

Research Overview

Papers
172
Total Citations
4,450
Papers (5y)
14
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)
14total
2021
2022
2024
2025
2026
Citations per year (5y)
78total
20212022202420252026

Selected Papers

15
1
Article|188 citations·2016
Hydrogenated monolayer graphene with reversible and tunable wide band gap and its field-effect transistor
Jangyup Son, Soogil Lee, Sang Jin Kim, Byung Cheol Park, Han-Koo Lee, Sanghoon Kim, Jae Hoon Kim, Byung Hee Hong, Jongill Hong
SJR Q1Nature CommunicationsOA

Graphene is currently at the forefront of cutting-edge science and technology due to exceptional electronic, optical, mechanical, and thermal properties. However, the absence of a sizeable band gap in graphene has been a major obstacle for application. To open and control a band gap in functionalized graphene, several gapping strategies have been developed. In particular, hydrogen plasma treatment has triggered a great scientific interest, because it has been known to be an efficient way to modi

Materials ChemistryMaterials Science
2
Article|48 citations·2012
Nanoscale patterning of complex magnetic nanostructures by reduction with low-energy protons
Sanghoon Kim, Soogil Lee, Jungho Ko, Jangyup Son, Minseok Kim, Shinill Kang, Jongill Hong
SJR Q1Nature Nanotechnology
Atomic and Molecular Physics, and OpticsPhysics and Astronomy
3
Article|43 citations·2020
Impact of Spin-Orbit Torque on Spin-Transfer Torque Switching in Magnetic Tunnel Junctions
Sachin Pathak, Chanyoung Youm, Jongill Hong
SJR Q1Scientific ReportsOA

Abstract The paper presents our simulated results showing the substantial improvement of both switching speed and energy consumption in a perpendicular magnetic tunnel junction (p-MTJ), a core unit of Spin-Transfer-Torque Magnetic Random Access Memory (STT-MRAM), by the help of additional Spin-Orbit-Torque (SOT) write pulse current (WP SOT ). An STT-SOT hybrid torque module for OOMMF simulation is implemented to investigate the switching behavior of a 20 nm cell in the p-MTJ. We found that the a

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
4
Article|31 citations·2020
Tunable Wettability of Graphene through Nondestructive Hydrogenation and Wettability-Based Patterning for Bioapplications
Jangyup Son, Jong‐Young Lee, Nalae Han, Jongin Cha, Jonghyun Choi, Junyoung Kwon, SungWoo Nam, Kyung‐Hwa Yoo, Gwan‐Hyoung Lee, Jongill Hong
SJR Q1Nano Letters

The wettability of graphene has been extensively studied and successfully modified by chemical functionalization. Nevertheless, the unavoidable introduction of undesired defects and the absence of systematic and local control over wettability by previous methods have limited the use of graphene in applications. In addition, microscale patterning, according to wettability, has not been attempted. Here, we demonstrate that the wettability of graphene can be systematically controlled and surface pa

Materials ChemistryMaterials Science
5
Article|26 citations·2014
An Array of Ferromagnetic Nanoislands Nondestructively Patterned via a Local Phase Transformation by Low-Energy Proton Irradiation
Sanghoon Kim, Soogil Lee, Jongill Hong
SJR Q1ACS Nano

Low-energy proton irradiation was applied to pattern an array of metallic, ferromagnetic nanoislands through the local phase transformation of an oxidic, paramagnetic phase in a complex superlattice composed of repetitions of an oxidic and metallic layer. The irradiation inflicted minimal damage on the structure, resulting in the absence of unwanted defects and side effects. This nondestructive pattern transfer was clearly confirmed by the contrast between irradiated and unirradiated regions in

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
6
Article|26 citations·2002
Spin-valve head with specularly reflective oxide layers for over 100 Gb/in/sup 2/
Jongill Hong, J. Kane, Jun Hashimoto, M. Yamagishi, K. Noma, H. Kanai
SJR Q2IEEE Transactions on Magnetics

We have developed spin valves with thin oxide reflective layers, which exhibit a greatly improved magnetoresistance (MR) performance while keeping other good properties, such as an exchange bias field of over 1000 Oe and a coercivity and an interlayer coupling field of less than 10 Oe. The giant magnetoresistance (GMR) values reached over 12% for the spin valve with a single specular layer and over 15% for the spin valve with double specular layers. The oxide reflective layers helped improve MR

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
7
Article|23 citations·1988
Diluted magnetic semiconductor superlattices for magnetic studies of dimensional crossover (invited)
Jongill Hong, D. D. Awschalom, L. L. Chang, Armin Segmüller
SJR Q2Journal of Applied Physics

Diluted magnetic semiconductor Cd1−xMnxTe-CdTe superlattices with x=0.069, 0.13, 0.15, and 0.20 and various layer thicknesses were grown by molecular-beam epitaxy for optical and magnetic studies of dimensional crossover. X-ray diffraction patterns, low-temperature photoluminescence spectra, and ac magnetic susceptibility measurements were used to verify the integrity of these structures. In particular, the magnetic studies showed the spin-glass transition present in the thicker magnetic layers

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
8
Article|19 citations·2003
Very large giant magnetoresistance of spin valves with specularly reflective oxide layers
Jongill Hong, K. Noma, Eiichi Kanda, H. Kanai
SJR Q1Applied Physics Letters

We developed a spin valve with oxide specular layers that shows a giant magnetoresistance value of 20%. The spin valve also showed an exchange bias field of over 1000 Oe. The giant magnetoresistance was mainly due to an increase in the sheet resistance change and resulted from additional specular reflection at the interface of the free layer. The method we used was to modify specularly reflective oxide layers of the free and the capping layers.

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
9
Article|17 citations·1996
Granular magnetic cobalt metal/polymer thin film system
Jongill Hong, E. Kay, S.X. Wang
SJR Q2IEEE Transactions on Magnetics

Thin films consisting of granular dispersions of cobalt nano-particles in a hydrocarbon matrix are fabricated by simultaneous sputtering of cobalt and plasma induced polymerization of hydrocarbon monomers. It is confirmed that cobalt nano-particles with a hexagonal close-packed (hcp) structure are uniformly distributed throughout the amorphous hydrocarbon matrix. In-plane magnetic hysteresis loops obtained by MOKE (Magneto-Optic Kerr Effect) magnetometry measurements show significant differences

Biomedical EngineeringEngineering
10
Article|17 citations·2017
Analysis of the causes of recurrence after frontalis suspension using silicone rods for congenital ptosis
Chang Yeom Kim, Byeong Jae Son, Jangyup Son, Jongill Hong, Sang Yeul Lee
SJR Q1PLoS ONEOA

Recurrence of ptosis after frontalis suspension using silicone rod was associated with physical changes of implanted silicone rods, including positional migration, weakened tensile strength, and micromorphological changes in combination with patients' characteristics.

DermatologyMedicine
11
Article|17 citations·2001
Magnetic and electrical properties of spin valve with single and double specular oxide layers
Jongill Hong, K. Noma, H. Kanai, J. Kane
SJR Q2Journal of Applied Physics

Appropriate oxide capping on a spin valve significantly improved electrical and magnetic properties. The interlayer exchange coupling oscillated in the thickness range of a Cu spacer (between 20 and 30 Å). The coupling was antiferromagnetic and it allowed us to reduce the Cu spacer down to 20 Å without sacrificing the good properties of the spin valve. The improvement is due to enhanced specular reflection at the interface between the magnetic and the oxide layer and to less current shunting thr

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
12
Article|15 citations·1997
An experimental MDFE detector
Jongill Hong, Yuan Xing Lee, H. Mutoh, Qicheng Sun, H. Ueno, Jianjiang Wang, Roger Wood
SJR Q2IEEE Transactions on Magnetics

A 100 Mb/s experimental multilevel Decision Feedback Equalization read channel has been designed and prototyped in discrete-components. The analog forward equalizer consists of two bi-quads, based on the maximization of inner eye versus noise power plus uncancelled ISI at the input to the detector. The feedback equalizer consists of a 6-tap filter plus an RC exponential decay network which helps reduce hardware complexity. The digitally implemented timing/gain/dc-offset loops are adjusted only w

Biomedical EngineeringEngineering
13
Article|15 citations·2000
Effect of thin oxide capping on interlayer coupling in spin valves
Jongill Hong, Ken‐ichi Aoshima, J. Kane, K. Noma, H. Kanai
SJR Q2IEEE Transactions on Magnetics

We controlled interlayer coupling from ferromagnetic to antiferromagnetic by appropriately capping spin valves with thin oxides. The interlayer coupling field was -16.6 Oe at a Cu-spacer thickness of 30 /spl Aring/. The sign of coupling changed at a Cu-spacer thickness of 20 /spl Aring/. The antiferromagnetic coupling achieved in this way allowed a reduction of thickness of the Cu spacer down to 20 /spl Aring/ without loss of good magnetic and electrical properties, and this led to a significant

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
14
Article|12 citations·1991
An experimental 180 Mb/sec PRML channel for magnetic recording
Jongill Hong, Roger Wood, Daniel Kwang Guan Chan
SJR Q2IEEE Transactions on Magnetics

An experimental 180 Mbit/s partial-response maximum-likelihood (PRML) channel was developed in order to investigate various technical issues arising in very high speed magnetic disk recording systems. The channel was implemented with discrete analog and logic components. A thin-film 10-turn write head and an experimental high-resolution magnetoresistive read head were used with a high coercivity, thin-film disk. Linear densities of 4000 fc/mm were achieved at 45 m/s and 100 nm flying height. The

Computational Theory and MathematicsComputer Science
15
Article|12 citations·2021
Electrical Patterning of Graphene Circuitry by Hydrogenation for Transparent and Flexible Devices
Jangyup Son, Jongin Cha, Jongill Hong
SJR Q1Chemistry of Materials

Preventing or reducing side effects caused by defects created during patterning processes has long posed a major challenge to device fabrications. Such defects on the surfaces and at the boundaries can fatally impair device performance. This is particularly the case for graphene-based devices because graphene is a surface itself, and its surface states exclusively determine the properties. Here, we show that our hydrogenated patterning of graphene can be a breakthrough in electrical patterning f

Materials ChemistryMaterials Science

Research Areas

Atomic and Molecular Physics, and OpticsMaterials ChemistryElectrical and Electronic EngineeringBiomedical EngineeringCondensed Matter PhysicsElectronic, Optical and Magnetic Materials

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