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Kwanyong Seo

Ulsan National Institute of Science and Technology · 工学

研究室紹介

Professor Kwanyong Seo's research lab specializes in advanced nanomaterials and their applications in sustainable energy technologies. The lab focuses on designing and fabricating novel nanostructures—such as silicon and cobalt silicide nanowires, silver nanowire electrodes, and hybrid carbon-polymer composites—for next-generation photovoltaics, transparent electronics, and stretchable energy devices. Key research directions include the optical and magnetic properties of low-dimensional materials, monolithic integration of photovoltaic and battery functions, and scalable fabrication techniques for high-performance transparent and flexible energy devices. The lab combines experimental synthesis with advanced characterization and simulation to bridge fundamental science with practical applications in clean energy and wearable electronics.

nanomaterialstransparent photovoltaicsenergy storageflexible electronicsnanowires

Research Overview

Papers
135
Total Citations
5,025
Papers (5y)
31
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
31total
2022
2023
2024
2025
2026
Citations per year (5y)
217total
20222023202420252026

Selected Papers

15
1
Article|373 citations·2011
Multicolored Vertical Silicon Nanowires
Kwanyong Seo, Munib Wober, P. Steinvurzel, Ethan Schonbrun, Yaping Dan, Tal Ellenbogen, Kenneth B. Crozier
SJR Q1Nano Letters

We demonstrate that vertical silicon nanowires take on a surprising variety of colors covering the entire visible spectrum, in marked contrast to the gray color of bulk silicon. This effect is readily observable by bright-field microscopy, or even to the naked eye. The reflection spectra of the nanowires each show a dip whose position depends on the nanowire radii. We compare the experimental data to the results of finite difference time domain simulations to elucidate the physical mechanisms be

Biomedical EngineeringEngineering
2
Article|149 citations·2017
Monolithically integrated, photo-rechargeable portable power sources based on miniaturized Si solar cells and printed solid-state lithium-ion batteries
Han‐Don Um, Keun-Ho Choi, Inchan Hwang, Se Hee Kim, Kwanyong Seo, Sang‐Young Lee
SJR Q1Energy & Environmental Science

A monolithically integrated, single-unit PV–LIB device shows exceptional electrochemical performance that lies far beyond those achievable by conventional PVs or LIBs alone.

Electrical and Electronic EngineeringEngineering
3
Article|139 citations·2017
Cold Isostatic‐Pressured Silver Nanowire Electrodes for Flexible Organic Solar Cells via Room‐Temperature Processes
Ji Hoon Seo, Inchan Hwang, Han‐Don Um, Sojeong Lee, Kangmin Lee, Jeonghwan Park, HyeonOh Shin, Tae‐Hyuk Kwon, Seok Ju Kang, Kwanyong Seo
SJR Q1Advanced MaterialsOA

Transparent conducting electrodes (TCEs) are considered to be an essential structural component of flexible organic solar cells (FOSCs). Silver nanowire (AgNW) electrodes are widely used as TCEs owing to their excellent electrical and optical properties. The fabrication of AgNW electrodes has faced challenges in terms of forming large uniform interconnected networks so that high conductivity and reproducibility can be achieved. In this study, a simple method for creating an intimate contact betw

Electrical and Electronic EngineeringEngineering
4
Article|136 citations·2007
Magnetic Properties of Single-Crystalline CoSi Nanowires
Kwanyong Seo, Kumar S. K. Varadwaj, Paritosh Mohanty, Sunghun Lee, Younghun Jo, Myung‐Hwa Jung, Jinhee Kim, Bongsoo Kim
SJR Q1Nano Letters

We have observed unusual ferromagnetic properties in single-crystalline CoSi nanowire ensemble, in marked contrast to the diamagnetic CoSi in bulk. High-density freestanding CoSi nanowires with B20 crystal structure are synthesized by a vapor-transport-based method. The reaction of cobalt chloride precursor with a Si substrate produces high-aspect-ratio CoSi nanowires. The high-resolution transmission electron microscopy and electron diffraction studies reveal superlattice structure in CoSi nano

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
5
Article|133 citations·2020
The Development of Transparent Photovoltaics
Kangmin Lee, Han‐Don Um, Deokjae Choi, Jeonghwan Park, Namwoo Kim, Hyungwoo Kim, Kwanyong Seo
SJR Q1Cell Reports Physical ScienceOA

Transparent photovoltaics (TPVs), which combine visible transparency and solar energy conversion, are being developed for applications in which conventional opaque solar cells are unlikely to be feasible, such as windows of buildings or vehicles. In this paper, we review recent progress in TPVs along with strategies that enable the transparency of conventional photovoltaics, including thin-film technology, selective light-transmission technology, and luminescent solar concentrator technology. Fr

Electrical and Electronic EngineeringEngineering
6
Article|107 citations·2016
Dopant-Free All-Back-Contact Si Nanohole Solar Cells Using MoOxand LiF Films
Han‐Don Um, Namwoo Kim, Kangmin Lee, Inchan Hwang, Ji Hoon Seo, Kwanyong Seo
SJR Q1Nano Letters

We demonstrate novel all-back-contact Si nanohole solar cells via the simple direct deposition of molybdenum oxide (MoOx) and lithium fluoride (LiF) thin films as dopant-free and selective carrier contacts (SCCs). This approach is in contrast to conventionally used high-temperature thermal doping processes, which require multistep patterning processes to produce diffusion masks. Both MoOx and LiF thin films are inserted between the Si absorber and Al electrodes interdigitatedly at the rear cell

Biomedical EngineeringEngineering
7
Article|103 citations·2019
Neutral-Colored Transparent Crystalline Silicon Photovoltaics
Kangmin Lee, Namwoo Kim, Kwang‐Jin Kim, Han‐Don Um, Wonjoo Jin, Deokjae Choi, Jeonghwan Park, Kyung Jin Park, Seungwoo Lee, Kwanyong Seo
SJR Q1Joule
Electrical and Electronic EngineeringEngineering
8
Article|102 citations·2018
Jabuticaba‐Inspired Hybrid Carbon Filler/Polymer Electrode for Use in Highly Stretchable Aqueous Li‐Ion Batteries
Woo‐Jin Song, Jeonghwan Park, Dong Hyup Kim, Sohyun Bae, Myung‐Jun Kwak, Myoungsoo Shin, Sungho Kim, Sungho Kim, Sungho Choi, Ji‐Hyun Jang, Tae Joo Shin, So Youn Kim
SJR Q1Advanced Energy Materials

Abstract Stretchable electronics are considered as next‐generation devices; however, to realize stretchable electronics, it is first necessary to develop a deformable energy device. Of the various components in energy devices, the fabrication of stretchable current collectors is crucial because they must be mechanically robust and have high electrical conductivity under deformation. In this study, the authors present a conductive polymer composite composed of Jabuticaba‐like hybrid carbon filler

Electrical and Electronic EngineeringEngineering
9
Article|92 citations·2005
Chirality- and Diameter-Dependent Reactivity of NO2 on Carbon Nanotube Walls
Kwanyong Seo, Kyung Ah Park, Changwook Kim, Seungwu Han, Bongsoo Kim, Young Hee Lee
SJR Q1Journal of the American Chemical Society

We report the density-functional calculations of NO2 adsorption on single-walled carbon nanotube walls. A single molecular adsorption was endothermic with an activation barrier, but a collective adsorption with several molecules became exothermic without an activation barrier. We find that NO2 adsorption is strongly electronic structure- and strain-dependent. The NO2 adsorption on metallic nanotubes was energetically more favorable than that on semiconducting nanotubes and furthermore the adsorp

Materials ChemistryMaterials Science
10
Article|81 citations·2018
Flexible crystalline silicon radial junction photovoltaics with vertically aligned tapered microwires
Inchan Hwang, Han‐Don Um, Byeong‐Su Kim, Munib Wober, Kwanyong Seo
SJR Q1Energy & Environmental Science

Flexible crystalline silicon radial junction photovoltaics with tapered microwires are presented, which simultaneously show high flexibility and efficiency.

Biomedical EngineeringEngineering
11
Article|67 citations·2017
Enhancement of Light Absorption in Photovoltaic Devices using Textured Polydimethylsiloxane Stickers
Inchan Hwang, Deokjae Choi, Sojeong Lee, Ji Hoon Seo, Ka‐Hyun Kim, Ilsun Yoon, Kwanyong Seo
SJR Q1ACS Applied Materials & Interfaces

We designed and fabricated a random-size inverted-pyramid-structured polydimethylsiloxane (RSIPS-PDMS) sticker to enhance the light absorption of solar cells and thus increase their efficiency. The fabricated sticker was laminated onto bare glass and crystalline silicon (c-Si) surfaces; consequently, low solar-weighted reflectance values were obtained for these surfaces (6.88 and 17.2%, respectively). In addition, we found that incident light was refracted at the PDMS-air interface of each RSIPS

Surfaces, Coatings and FilmsMaterials Science
12
Article|65 citations·2007
Synthesis and Electrical Properties of Single Crystalline CrSi2 Nanowires
Kwanyong Seo, Kumar S. K. Varadwaj, Dongkyu Cha, Juneho In, Jiyoung Kim, Jeunghee Park, BongSoo Kim
SJR Q1The Journal of Physical Chemistry C

Free-standing CrSi 2 nanowires are synthesized by a vapor transport based method for the first time. High-quality CrSi 2 nanowires with a hexagonal cross section are produced by the reaction of a CrCl 2 precursor and a Si substrate without using any metal catalyst. We have studied the crystal structure and electrical transport properties of CrSi 2 nanowires. Transmission electron microscopy and X-ray diffraction studies confirm the single-crystalline nature of the CrSi 2 nanowires of a C40 type

Electrical and Electronic EngineeringEngineering
13
Article|62 citations·2017
Embedded Metal Electrode for Organic–Inorganic Hybrid Nanowire Solar Cells
Han‐Don Um, Deokjae Choi, Ahreum Choi, Ji Hoon Seo, Kwanyong Seo
SJR Q1ACS Nano

We demonstrate here an embedded metal electrode for highly efficient organic–inorganic hybrid nanowire solar cells. The electrode proposed here is an effective alternative to the conventional bus and finger electrode which leads to a localized short circuit at a direct Si/metal contact and has a poor collection efficiency due to a nonoptimized electrode design. In our design, a Ag/SiO 2 electrode is embedded into a Si substrate while being positioned between Si nanowire arrays underneath poly(3,

Biomedical EngineeringEngineering
14
Article|48 citations·2009
Composition-Tuned ConSi Nanowires: Location-Selective Simultaneous Growth along Temperature Gradient
Kwanyong Seo, Sunghun Lee, Hana Yoon, Juneho In, Kumar S. K. Varadwaj, Younghun Jo, Myung‐Hwa Jung, Jinhee Kim, Bongsoo Kim
SJR Q1ACS Nano

We report the simultaneous and selective synthesis of single-crystalline Co(n)Si NWs (n = 1-3) and their corresponding crystal structures--simple cubic (CoSi), orthorhombic (Co(2)Si), and face-centered cubic (Co(3)Si)--following a composition change. Co(n)Si NWs were synthesized by placing the sapphire substrates along a temperature gradient. The synthetic process is a successful demonstration of tuning the chemical composition in Co(n)Si NWs. The synthesis and detailed crystal structure of sing

Electronic, Optical and Magnetic MaterialsMaterials Science
15
Article|47 citations·2010
Diffusion-Driven Crystal Structure Transformation: Synthesis of Heusler Alloy Fe3Si Nanowires
Kwanyong Seo, Nitin Bagkar, Siin Kim, Juneho In, Hana Yoon, Younghun Jo, Bongsoo Kim
SJR Q1Nano Letters

We report fabrication of Heusler alloy Fe(3)Si nanowires by a diffusion-driven crystal structure transformation method from paramagnetic FeSi nanowires. Magnetic measurements of the Fe(3)Si nanowire ensemble show high-temperature ferromagnetic properties with T(c) >> 370 K. This methodology is also successfully applied to Co(2)Si nanowires in order to obtain metal-rich nanowires (Co) as another evidence of the structural transformation process. Our newly developed nanowire crystal transformation

Electronic, Optical and Magnetic MaterialsMaterials Science

Research Areas

Electrical and Electronic EngineeringBiomedical EngineeringMaterials ChemistryAtomic and Molecular Physics, and OpticsElectronic, Optical and Magnetic MaterialsRenewable Energy, Sustainability and the Environment

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