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Yoo, Hyobin

Seoul National University · Physics and Astronomy

About the Lab

Professor Yoo Hyobin's research lab specializes in the design, fabrication, and characterization of two-dimensional van der Waals heterostructures and twisted 2D materials, with a focus on engineering quantum electronic phenomena. The lab explores correlated electron systems in moiré superlattices, including superconductivity, topological states, and unconventional quantum phases, using advanced nanoscale imaging and transport techniques. A key emphasis is on manipulating quantum order through twist engineering and interface control in transition metal oxides and 2D semiconductors. The lab also develops flexible optoelectronic devices based on GaN and graphene heterostructures for next-generation flexible and wearable technologies.

twisted 2D materialsquantum heterostructuresvan der Waals heterostructurescorrelated electronsflexible optoelectronics

Research Overview

Papers
72
Total Citations
2,789
Papers (5y)
30
Primary Field
Physics and Astronomy

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
30total
2021
2022
2023
2024
2025
Citations per year (5y)
548total
20212022202320242025

Selected Papers

15
1
Article|528 citations
Tunable spin-polarized correlated states in twisted double bilayer graphene
Xiaomeng Liu, Zeyu Hao, Eslam Khalaf, Jong Yeon Lee, Yuval Ronen, Hyobin Yoo, Danial Haei Najafabadi, Kenji Watanabe, Takashi Taniguchi, Ashvin Vishwanath, Philip Kim
RePEc: Research Papers in Economics

Abstract Reducing the energy bandwidth of electrons in a lattice below the long-range Coulomb interaction energy promotes correlation effects. Moiré superlattices—which are created by stacking van der Waals heterostructures with a controlled twist angle1–3—enable the engineering of electron band structure. Exotic quantum phases can emerge in an engineered moiré flat band. The recent discovery of correlated insulator states, superconductivity and the quantum anomalous Hall effect in the flat band

Materials ChemistryMaterials Science
2
Article|396 citations·2018
Photonic crystals for nano-light in moiré graphene superlattices
Sai Sunku, Guangxin Ni, Bor‐Yuan Jiang, Hyobin Yoo, Aaron Sternbach, Alexander McLeod, Tobias Stauber, Lin Xiong, Takashi Taniguchi, Kenji Watanabe, Philip Kim, M. M. Fogler
SJR Q1ScienceOA

Graphene is an atomically thin plasmonic medium that supports highly confined plasmon polaritons, or nano-light, with very low loss. Electronic properties of graphene can be drastically altered when it is laid upon another graphene layer, resulting in a moiré superlattice. The relative twist angle between the two layers is a key tuning parameter of the interlayer coupling in thus-obtained twisted bilayer graphene (TBG). We studied the propagation of plasmon polaritons in TBG by infrared nano-ima

Biomedical EngineeringEngineering
3
Article|252 citations·2018
Heterointerface effects in the electrointercalation of van der Waals heterostructures
D. Kwabena Bediako, Mehdi Rezaee, Hyobin Yoo, Daniel T. Larson, Sai Zhao, Takashi Taniguchi, Kenji Watanabe, Tina Brower-Thomas, Efthimios Kaxiras, Philip Kim
SJR Q1NatureOA
Materials ChemistryMaterials Science
4
Article|183 citations·2020
Broken mirror symmetry in excitonic response of reconstructed domains in twisted MoSe2/MoSe2 bilayers
Jiho Sung, You Zhou, Giovanni Scuri, Viktor Zólyomi, Trond I. Andersen, Hyobin Yoo, Dominik S. Wild, Andrew Y. Joe, Ryan J. Gelly, Hoseok Heo, S. J. Magorrian, Damien Bérubé
SJR Q1Nature NanotechnologyOA
Materials ChemistryMaterials Science
5
Article|141 citations·2023
Time-reversal symmetry breaking superconductivity between twisted cuprate superconductors
S. Y. Frank Zhao, Xiaomeng Cui, Pavel A. Volkov, Hyobin Yoo, Sangmin Lee, Jules Gardener, Austin J. Akey, Rebecca Engelke, Yuval Ronen, Ruidan Zhong, Genda Gu, Stephan Plugge
SJR Q1ScienceOA

Twisted interfaces between stacked van der Waals (vdW) cuprate crystals present a platform for engineering superconducting order parameters by adjusting stacking angles. Using a cryogenic assembly technique, we construct twisted vdW Josephson junctions (JJs) at atomically sharp interfaces between Bi 2 Sr 2 CaCu 2 O 8+ x crystals, with quality approaching the limit set by intrinsic JJs. Near 45° twist angle, we observe fractional Shapiro steps and Fraunhofer patterns, consistent with the existenc

Condensed Matter PhysicsPhysics and Astronomy
6
Article|132 citations·2023
Operando electron microscopy investigation of polar domain dynamics in twisted van der Waals homobilayers
Kahyun Ko, Ayoung Yuk, Rebecca Engelke, Stephen Carr, Hak Jun Kim, Daesung Park, Hoseok Heo, Hyun-Mi Kim, Seul‐Gi Kim, Hyeongkeun Kim, Takashi Taniguchi, Kenji Watanabe
SJR Q1Nature Materials
Materials ChemistryMaterials Science
7
Article|114 citations·2014
Growth and characterizations of GaN micro-rods on graphene films for flexible light emitting diodes
Kunook Chung, Hyeonjun Beak, Youngbin Tchoe, Hongseok Oh, Hyobin Yoo, Miyoung Kim, Gyu‐Chul Yi
SJR Q1APL MaterialsOA

We report the growth of GaN micro-rods and coaxial quantum-well heterostructures on graphene films, together with structural and optical characterization, for applications in flexible optical devices. Graphene films were grown on Cu foil by means of chemical vapor deposition, and used as the substrates for the growth of the GaN micro-rods, which were subsequently transferred onto SiO2/Si substrates. Highly Si-doped, n-type GaN micro-rods were grown on the graphene films using metal–organic chemi

Condensed Matter PhysicsPhysics and Astronomy
8
Article|87 citations·2019
Sign-Reversing Hall Effect in Atomically Thin High-Temperature Bi2.1Sr1.9CaCu2.0O8+δ Superconductors
Sai Zhao, Nicola Poccia, Margaret G. Panetta, Cyndia Yu, Jedediah W. Johnson, Hyobin Yoo, Ruidan Zhong, Genda Gu, Kenji Watanabe, Takashi Taniguchi, С. В. Постолова, V. M. Vinokur
SJR Q1Physical Review LettersOA

We developed novel techniques to fabricate atomically thin Bi_{2.1}Sr_{1.9}CaCu_{2.0}O_{8+δ} van der Waals heterostructures down to two unit cells while maintaining a transition temperature T_{c} close to the bulk, and carry out magnetotransport measurements on these van der Waals devices. We find a double sign change of the Hall resistance R_{xy} as in the bulk system, spanning both below and above T_{c}. Further, we observe a drastic enlargement of the region of sign reversal in the temperatur

Condensed Matter PhysicsPhysics and Astronomy
9
Article|84 citations·2012
Gallium nitride nanostructures for light-emitting diode applications
Moon Sung Kang, Chul‐Ho Lee, Jun Beom Park, Hyobin Yoo, Gyu‐Chul Yi
SJR Q1Nano Energy
Condensed Matter PhysicsPhysics and Astronomy
10
Article|84 citations·2016
Flexible GaN Light‐Emitting Diodes Using GaN Microdisks Epitaxial Laterally Overgrown on Graphene Dots
Kunook Chung, Hyobin Yoo, Jerome K. Hyun, Hongseok Oh, Youngbin Tchoe, Keundong Lee, Hyeonjun Baek, Miyoung Kim, Gyu‐Chul Yi
SJR Q1Advanced Materials

The epitaxial lateral overgrowth (ELOG) of GaN microdisks on graphene microdots and the fabrication of flexible light-emitting diodes (LEDs) using these microdisks is reported. An ELOG technique with only patterned graphene microdots is used, without any growth mask. The discrete micro-LED arrays are transferred onto Cu foil by a simple lift-off technique, which works reliably under various bending conditions.

Condensed Matter PhysicsPhysics and Astronomy
11
Article|77 citations·2011
Microstructures of GaN Thin Films Grown on Graphene Layers
Hyobin Yoo, Kunook Chung, Yong Seok Choi, Chan Soon Kang, Kyu Hwan Oh, Miyoung Kim, Gyu‐Chul Yi
SJR Q1Advanced Materials

Plan-view and cross-sectional transmission electron microscopy images show the microstructural properties of GaN thin films grown on graphene layers, including dislocation types and density, crystalline orientation and grain boundaries. The roles of ZnO nanowalls and GaN intermediate layers in the heteroepitaxial growth of GaN on graphene, revealed by cross-sectional transmission electron microscopy, are also discussed.

Condensed Matter PhysicsPhysics and Astronomy
12
Article|70 citations·2012
Position‐ and Morphology‐Controlled ZnO Nanostructures Grown on Graphene Layers
Yong‐Jin Kim, Hyobin Yoo, Chul‐Ho Lee, Jun Beom Park, Hyeonjun Baek, Miyoung Kim, Gyu‐Chul Yi
SJR Q1Advanced Materials

Position- and morphology-controlled ZnO nanostructures are grown on an oxygen plasma-treated selective area of graphene layers using metal-organic vapor-phase epitaxy. The structural and optical characteristics examined by electron microscopy, cathodoluminescence and photoluminescence techniques indicate that high-quality nanostructures are prepared on graphene layers. This approach to grow the controlled ZnO nanostructures selectively on graphene layers enables us to fabricate various nanodevic

Materials ChemistryMaterials Science
13
Article|61 citations·2016
Structural-relaxation-driven electron doping of amorphous oxide semiconductors by increasing the concentration of oxygen vacancies in shallow-donor states
Han‐Wool Yeon, Seungmin Lim, Jung‐Kyu Jung, Hyobin Yoo, Young Ju Lee, Ho‐Young Kang, Yongjin Park, Miyoung Kim, Young‐Chang Joo
SJR Q1NPG Asia MaterialsOA

The electronic states of oxygen vacancies (VO s) in amorphous oxide semiconductors are shallow donors, deep donors or electron traps; these are determined by the local atomic structure. Because the amorphous phase is metastable compared with the crystalline phase, the degree of structural disorder is likely to decrease, which is referred to as structural relaxation (SR). Thus SR can affect the VO electronic state by changing the local atomic conditions. In this study, we demonstrated that electr

Electrical and Electronic EngineeringEngineering
14
Article|49 citations·2020
Nano-photocurrent Mapping of Local Electronic Structure in Twisted Bilayer Graphene
Sai Sunku, Alexander McLeod, Tobias Stauber, Hyobin Yoo, Dorri Halbertal, Guangxin Ni, Aaron Sternbach, Bor‐Yuan Jiang, Takashi Taniguchi, Kenji Watanabe, Philip Kim, M. M. Fogler
SJR Q1Nano LettersOA

We report a combined nano-photocurrent and infrared nanoscopy study of twisted bilayer graphene (TBG) enabling access to the local electronic phenomena at length scales as short as 20 nm. We show that the photocurrent changes sign at carrier densities tracking the local superlattice density of states of TBG. We use this property to identify domains of varying local twist angle by local photothermoelectric effect. Consistent with the photocurrent study, infrared nanoimaging experiments reveal opt

Materials ChemistryMaterials Science
15
Article|41 citations·2011
Conversion from unipolar to bipolar resistance switching by inserting Ta2O5 layer in Pt/TaOx/Pt cells
Hyobin Yoo, Shinbuhm Lee, Jae Sung Lee, Seo Hyoung Chang, Moon Jee Yoon, Y. S. Kim, B. S. Kang, Myoung‐Jae Lee, C. J. Kim, B. Kahng, Tae Won Noh
SJR Q1Applied Physics Letters

We observed unipolar resistance switching in Pt/TaOx/Pt cells. We could make the cell have the bipolar resistance switching by inserting a stoichiometric Ta2O5 layer between Pt and TaOx layers. Bipolar resistance switching in Pt/Ta2O5/TaOx/Pt cells occurred reliably without applying an external compliance current. With increase in the Ta2O5 layer thickness, the current value at the low-resistance state became decreased but the forming voltage became increased. We could explain these intriguing p

Electrical and Electronic EngineeringEngineering

Research Areas

Materials ChemistryCondensed Matter PhysicsElectrical and Electronic EngineeringAtomic and Molecular Physics, and OpticsBiomedical EngineeringMechanics of Materials

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