Sang-Hyun Oh

Sang-Hyun Oh

University of Minnesota-Twin Cities

H-index: 63

North America-United States

About Sang-Hyun Oh

Sang-Hyun Oh, With an exceptional h-index of 63 and a recent h-index of 45 (since 2020), a distinguished researcher at University of Minnesota-Twin Cities, specializes in the field of Plasmonics, nanophotonics, nanofabrication, biosensing, BioMEMS.

His recent articles reflect a diverse array of research interests and contributions to the field:

Gradient High‐Q Dielectric Metasurfaces for Broadband Sensing and Control of Vibrational Light‐Matter Coupling

Simultaneous generation and manipulation of terahertz waves based on nonlinear leaky-waveguide antennas with integrated bianisotropic metasurfaces

Graphene plasmon resonators

Wirelessly powered electric actuation of particles and molecules

Planar hyperbolic polaritons in 2D van der Waals materials

Engineering electrode interfaces for telecom-band photodetection in MoS2/Au heterostructures via sub-band light absorption

Optical response of metallic nanostructures using quantum hydrodynamic theory and a hybridizable discontinuous Galerkin method

A novel 3D bilayer hydrogel tri-culture system for studying functional motor units

Sang-Hyun Oh Information

University

Position

Professor of ECE

Citations(all)

15953

Citations(since 2020)

7814

Cited By

11269

hIndex(all)

63

hIndex(since 2020)

45

i10Index(all)

155

i10Index(since 2020)

121

Email

University Profile Page

Google Scholar

Sang-Hyun Oh Skills & Research Interests

Plasmonics

nanophotonics

nanofabrication

biosensing

BioMEMS

Top articles of Sang-Hyun Oh

Gradient High‐Q Dielectric Metasurfaces for Broadband Sensing and Control of Vibrational Light‐Matter Coupling

Advanced Materials

2024/3/21

Simultaneous generation and manipulation of terahertz waves based on nonlinear leaky-waveguide antennas with integrated bianisotropic metasurfaces

Optics Express

2024/2/12

Sang-Hyun Oh
Sang-Hyun Oh

H-Index: 44

Minseok Kim
Minseok Kim

H-Index: 2

Graphene plasmon resonators

2024/1/30

Wirelessly powered electric actuation of particles and molecules

2024/1/11

Engineering electrode interfaces for telecom-band photodetection in MoS2/Au heterostructures via sub-band light absorption

Light: Science & Applications

2023/11/23

Optical response of metallic nanostructures using quantum hydrodynamic theory and a hybridizable discontinuous Galerkin method

Journal of Computational Physics

2023/9/15

A novel 3D bilayer hydrogel tri-culture system for studying functional motor units

Cell & Bioscience

2023/9/12

Electrodes formed from 2D materials for dielectrophoresis and systems and methods for utilizing the same

2023/7/25

Photodetectors

2023/6/27

Switching the symmetry of graphene plasmons with nanoemitters for ultimate infrared-light confinement

Physical Review Applied

2023/6/12

Terahertz wave-visible light conversion device and image sensing device including the same

2023/5/25

Nanoparticle-enhanced RT-QuIC (Nano-QuIC) diagnostic assay for misfolded proteins

Nano letters

2023/4/26

Peter A Larsen
Peter A Larsen

H-Index: 17

Sang-Hyun Oh
Sang-Hyun Oh

H-Index: 44

Nanofabrication: the unsung hero in enabling advances in nanophotonics

2023/4/25

Telecom-band photodetection in MoS2/Au heterostructures via sub-band light absorption

2023/2/14

Wireless dielectrophoresis trapping and remote impedance sensing via resonant wireless power transfer

Nature communications

2023/1/6

Blood-based Nano-QuIC: Accelerated and Inhibitor-resistant Detection of Misfolded Alpha-synuclein

bioRxiv

2023

Microfluidic Quaking-Induced Conversion (Micro-QuIC) for Rapid On-Site Amplification and Detection of Misfolded Proteins

BioRxiv

2023

Low-voltage microfluidic devices

2022/12/15

Subwavelength Terahertz Resonance Imaging (STRING) for Molecular Fingerprinting

Nano letters

2022/12/12

See List of Professors in Sang-Hyun Oh University(University of Minnesota-Twin Cities)

Co-Authors

academic-engine