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Byun, Kyung Min

Kyung Hee University · 工学

研究室紹介

Professor Byun Kyung Min's research lab specializes in nanophotonics, plasmonics, and bio-integrated nanomaterials, focusing on the development of advanced optical and photothermal nanosystems for biomedical applications. The lab pioneers innovative approaches in targeted hyperthermia using functionalized nanoparticles, such as mitochondria-targeted iron oxide nanoplatforms, and explores plasmonic nanomaterials—particularly gold nanorods and gold nanowires—for highly sensitive and selective biosensing and neural stimulation. Their work emphasizes the design of nanostructures that enhance surface plasmon resonance (SPR) sensitivity, stability, and signal transduction, with applications in disease detection, cancer therapy, and neuromodulation. The lab integrates experimental validation with rigorous theoretical modeling to advance next-generation optoelectronic and biosensing platforms.

plasmonicsnanoparticlesbiosensorssurface plasmon resonancephotothermal therapy

Research Overview

Papers
117
Total Citations
2,457
Papers (5y)
15
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
15total
2022
2023
2024
2025
2026
Citations per year (5y)
97total
20222023202420252026

Selected Papers

15
1
Article|179 citations·2015
Enhanced NIR Radiation-Triggered Hyperthermia by Mitochondrial Targeting
Hyo Sung Jung, Jiyou Han, Jaehong Lee, Ji Ha Lee, Jong-Min Choi, Hee-Seok Kweon, J. H. Han, Jong‐Hoon Kim, Kyung Min Byun, Jong Hwa Jung, Chulhun Kang, Jong Seung Kim
SJR Q1Journal of the American Chemical Society

Mitochondria are organelles that are readily susceptible to temperature elevation. We selectively delivered a coumarin-based fluorescent iron oxide nanoparticle, Mito-CIO, to the mitochondria. Upon 740 nm laser irradiation, the intracellular temperature of HeLa cells was elevated by 2.1 °C within 5 min when using Mito-CIO, and the treatment resulted in better hyperthermia and a more elevated cytotoxicity than HeLa cells treated with coumarin iron oxide (CIO), which was missing the mitochondrial

Biomedical EngineeringEngineering
2
Article|169 citations·2014
Enhanced Infrared Neural Stimulation using Localized Surface Plasmon Resonance of Gold Nanorods
Kyungsik Eom, Jin-Hyung Kim, Jong Min Choi, Taekyeong Kang, Jin Woo Chang, Kyung Min Byun, Sang Beom Jun, Sung June Kim
SJR Q1SmallOA

An advanced optical activation of neural tissues is demonstrated using pulsed infrared light and plasmonic gold nanorods. Photothermal effect localized in plasma membrane triggers action potentials of in vivo neural tissues. Compared with conventional infrared stimulation, the suggested method can increase a neural responsivity and lower a threshold stimulation level significantly, thereby reducing a requisite radiant exposure and the concern of tissue damage.

Cellular and Molecular NeuroscienceNeuroscience
3
Article|127 citations·2007
Experimental study of sensitivity enhancement in surface plasmon resonance biosensors by use of periodic metallic nanowires
Kyung Min Byun, Soon Joon Yoon, Donghyun Kim, Sung June Kim
SJR Q1Optics Letters

We have experimentally confirmed sensitivity enhancement of a nanowire-based surface plasmon resonance (SPR) sensor structure. Gold nanowires with periods of 200 and 500 nm were fabricated, respectively, by electron-beam and interference lithography on a gold/SF10 substrate. Sensitivity enhancement was measured to be 44% compared with a conventional thin-film-based SPR structure for nanowires of 200 nm period and 31% for 500 nm when evaluated using ethanol at a varied concentration. This result

Biomedical EngineeringEngineering
4
Article|120 citations·2005
Design study of highly sensitive nanowire-enhanced surface plasmon resonance biosensors using rigorous coupled wave analysis
Kyung Min Byun, Sung June Kim, Donghyun Kim
SJR Q1Optics ExpressOA

In this study, we investigated the sensitivity enhancement in nanowire-based surface plasmon resonance (SPR) biosensors using rigorous coupled wave analysis (RCWA). The enhancement, enabled by the excitation of localized surface plasmons in gold nanowires, offers improved performance in sensitivity as well as in reproducibility and customizability. Calculation results found that a T-profile provides higher sensitivity than an inverse T-profile in general and also determined optimum design parame

Biomedical EngineeringEngineering
5
Article|107 citations·2007
Grating-coupled transmission-type surface plasmon resonance sensors based on dielectric and metallic gratings
Kyung Min Byun, Sung June Kim, Donghyun Kim
SJR Q2Applied Optics

We investigated grating-coupled transmission-type surface plasmon resonance (SPR) for sensing applications. In the transmission-type SPR structure, propagating surface plasmons are outcoupled to radiation modes by dielectric and metallic gratings on a metal film. The results calculated in air and water suggest that the proposed structures present extremely linear sensing characteristics. In terms of a figure of merit, a metallic grating-based structure performs 5.4 and 3.7 times better than that

Biomedical EngineeringEngineering
6
Article|63 citations·2011
Fabrication of nanoscale plasmonic structures and their applications to photonic devices and biosensors
Woo Kyung Jung, Kyung Min Byun
SJR Q2Biomedical Engineering Letters
Biomedical EngineeringEngineering
7
Article|55 citations·2009
Effect of target localization on the sensitivity of a localized surface plasmon resonance biosensor based on subwavelength metallic nanostructures
Kyung Min Byun, Seong Min Jang, Sung June Kim, Donghyun Kim
SJR Q2Journal of the Optical Society of America A

A localized surface plasmon resonance (LSPR) biosensor using surface relief nanostructures was investigated to evaluate the importance of target localization on the sensitivity enhancement. The LSPR device was modeled as periodic metallic nanowires with a square profile on a gold film and the target as a self-assembled monolayer in buffer solution. The numerical results using rigorous coupled-wave analysis and the finite-difference time domain method demonstrated localized plasmonic fields induc

Biomedical EngineeringEngineering
8
Article|55 citations·2019
Sensitivity and Stability Enhancement of Surface Plasmon Resonance Biosensors based on a Large-Area Ag/MoS2 Substrate
Nak‐Hyeon Kim, Munsik Choi, Tae Woo Kim, Woong Choi, Sang Yoon Park, Kyung Min Byun
SJR Q1SensorsOA

Surface plasmon resonance (SPR) sensors based on a silver film suffer from signal degradation due to silver oxidation in aqueous sensing environments. To overcome this limitation, we fabricated the planar plasmonic substrate employing an atomic MoS2 layer on a silver surface. Successful production of a large-area MoS2 monolayer blocks the penetration of oxygen and water molecules. In addition, we theoretically and experimentally found that MoS2 layer on the silver film can improve the SPR sensit

Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
Article|51 citations·2008
Sensitivity Enhancement of Surface Plasmon Resonance Imaging Using Periodic Metallic Nanowires
Kyung Min Byun, Michael L. Shuler, Sung June Kim, Soon Joon Yoon, Donghyun Kim
SJR Q1Journal of Lightwave Technology

A nanowire-mediated surface plasmon resonance (SPR) imaging is numerically investigated for enhanced sensitivity. The results calculated by rigorous coupled-wave analysis present that interplays between localized surface plasmons and surface plasmon polaritons contribute to sensitivity enhancement. Compared to conventional thin film-based SPR imaging measurement, an optimal nanowire structure can provide sensitivity enhancement by 3.44 times as well as highly linear detection property for quanti

Biomedical EngineeringEngineering
10
Review|47 citations·2022
Miniaturized Raman Instruments for SERS-Based Point-of-Care Testing on Respiratory Viruses
Ahmed Ali, Ezekiel Edward Nettey-Oppong, Elijah Effah, Chan Yeong Yu, Riaz Muhammad, Toufique Ahmed Soomro, Kyung Min Byun, Seung Ho Choi
SJR Q1BiosensorsOA

As surface-enhanced Raman scattering (SERS) has been used to diagnose several respiratory viruses (e.g., influenza A virus subtypes such as H1N1 and the new coronavirus SARS-CoV-2), SERS is gaining popularity as a method for diagnosing viruses at the point-of-care. Although the prior and quick diagnosis of respiratory viruses is critical in the outbreak of infectious disease, ELISA, PCR, and RT-PCR have been used to detect respiratory viruses for pandemic control that are limited for point-of-ca

Biomedical EngineeringEngineering
11
Article|36 citations·2007
Sensitivity analysis of a nanowire-based surface plasmon resonance biosensor in the presence of surface roughness
Kyung Min Byun, Soon Joon Yoon, Donghyun Kim, Sung June Kim
SJR Q2Journal of the Optical Society of America A

We have investigated the effect of surface roughness on the sensitivity of conventional and nanowire-based surface plasmon resonance (SPR) biosensors. The theoretical research was conducted using rigorous coupled-wave analysis with Gaussian surface profiles of gold films determined by atomic force microscopy. The results suggest that, when surface roughness ranges near 1 nm, the sensitivity of a conventional SPR system is not significantly affected regardless of the correlation length. For a nan

Biomedical EngineeringEngineering
12
Article|35 citations·2011
Surface plasmon resonance biosensing based on target-responsive mobility switch of magnetic nanoparticles under magnetic fields
Kyung Sig Lee, Mongryong Lee, Kyung Min Byun, In Su Lee
Journal of Materials Chemistry

A novel surface plasmon resonance (SPR) detection technique based on the programmed assembly of superparamagnetic iron oxide nanoparticles (SPIONs) and the corresponding change in mobility under external magnetic fields was demonstrated. In this approach, SPIONs act as a magnetophoretic mobility switch undergoing aggregation only in the presence of target analytes. The aggregated SPIONs which were magnetically attracted to a metal film create a layer over the sensor surface with a refractive ind

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|34 citations·2005
Investigation of the profile effect on the sensitivity enhancement of nanowire-mediated localized surface plasmon resonance biosensors
Kyung Min Byun, Donghyun Kim, Sung June Kim
SJR Q1Sensors and Actuators B Chemical
Biomedical EngineeringEngineering
14
Article|32 citations·2014
Design study on photoacoustic probe to detect prostate cancer using 3D Monte Carlo simulation and finite element method
Sherif H. ElGohary, Mohamed K. Metwally, Seyoung Eom, Seung Hyun Jeon, Kyung Min Byun, Tae‐Seong Kim
SJR Q2Biomedical Engineering Letters
Biomedical EngineeringEngineering
15
Article|32 citations·2010
Development of Nanostructured Plasmonic Substrates for Enhanced Optical Biosensing
변경민

Plasmonic-based biosensing technologies have been successfully commercialized and applied for monitoring various biomolecular interactions occurring at a sensor surface. In particular, the recent advances in nanofabrication methods and nanoparticle syntheses provide a new route to overcome the limitations of a conventional surface plasmon resonance biosensor, such as detection limit, sensitivity, selectivity, and throughput. In this paper, optical and physical properties of plasmonic nanostructu

Research Areas

Biomedical EngineeringMolecular BiologyAtomic and Molecular Physics, and OpticsElectronic, Optical and Magnetic MaterialsCellular and Molecular NeuroscienceBiophysics

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