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Yonsang Kim

Seoul National University · 工学

研究室紹介

Professor Yonsang Kim's research lab specializes in advanced energy conversion and flexible electronics, focusing on solution-processed, low-temperature fabrication of high-performance optoelectronic and piezoelectric devices. The lab pioneers innovative approaches in sustainable energy harvesting, including water motion-driven transducers, evaporation-induced electricity generation, and flexible nanogenerators based on doped oxide semiconductors. Core research directions include the development of alkali-metal-doped transparent oxide thin-film transistors and soft lithography techniques for 3D microstructures, all aimed at enabling next-generation wearable and flexible electronics.

energy harvestingflexible electronicssolution-processed devicespiezoelectric nanogeneratorstransparent oxide semiconductors

Research Overview

Papers
351
Total Citations
8,627
Papers (5y)
50
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
50total
2022
2023
2024
2025
2026
Citations per year (5y)
537total
20222023202420252026

Selected Papers

15
1
Article|215 citations·2012
Low‐Temperature, Solution‐Processed and Alkali Metal Doped ZnO for High‐Performance Thin‐Film Transistors
Si Yun Park, Beom Joon Kim, Kyongjun Kim, Moon Sung Kang, Keon‐Hee Lim, Tae Il Lee, Jae Min Myoung, Hong Koo Baik, Jeong Ho Cho, Youn Sang Kim
SJR Q1Advanced Materials

Transfer characteristics of ZnO thin-film transistors (TFTs) based on ZnO doped with various alkali metals. A new doping method is demonstrated by employing alkali metals to achieve high-performance and solution-processed ZnO TFTs with a low processing temperature (∼300 °C), which is applicable to flexible plastic substrates.

Electrical and Electronic EngineeringEngineering
2
Article|172 citations·2014
An effective energy harvesting method from a natural water motion active transducer
Soon-Hyung Kwon, Junwoo Park, Won Keun Kim, Young-Jun Yang, Eungkyu Lee, Chul Jong Han, Si Yun Park, Jeongno Lee, Youn Sang Kim
SJR Q1Energy & Environmental Science

We demonstrated a new water motion active transducer (WMAT) without any external bias-voltage sources or additional processes, which critically limit the use of conventional passive capacitive transducers that convert mechanical motion into electric energy. From a simple structure, we successfully turned on an LED using various kinds of natural water motion. The WMAT, which has wide applicability, has good potential to be a candidate for generating sustainable electric energy.

Mechanical EngineeringEngineering
3
Article|162 citations·2012
All‐Solution‐Processed Flexible Thin Film Piezoelectric Nanogenerator
Sung Yun Chung, Sun‐Young Kim, Sun‐Young Kim, Ju‐Hyuck Lee, Kyongjun Kim, Sang‐Woo Kim, Sang‐Woo Kim, Chong‐Yun Kang, Seok‐Jin Yoon, Youn Sang Kim
SJR Q1Advanced Materials

An all-solution-processed flexible thin film piezoelectric nanogenerator is demonstrated using reactive zinc hydroxo-condensation and a screen-printing method. The highly elastic thin film allows the piezoelectric energy to be generated through the mechanical rolling and muscle stretching of the piezoelectric unit. This flexible all solution-processed nanogenerator is promising for use in future energy harvesters such as wearable human patches and mobile electronics. Detailed facts of importance

Biomedical EngineeringEngineering
4
Article|144 citations·2001
Fabrication of three-dimensional microstructures by soft molding
Youn Sang Kim, K. Y. Suh, Hong H. Lee
SJR Q1Applied Physics Letters

We have developed soft molding as a method for meso-scale-area fabrication of three-dimensional structures. The soft molding, which is a form of soft lithography, involves placing an elastomeric mold on the surface of a spin-coated polymer film with a slight pressure (<1 N/cm2), allowing the mold to absorb solvent, releasing the pressure, and then letting the mold and the substrate remain undisturbed for a period of time. The three-dimensional structure thus formed is robust in that the p

Biomedical EngineeringEngineering
5
Article|105 citations·2013
UV–Visible Spectroscopic Analysis of Electrical Properties in Alkali Metal‐Doped Amorphous Zinc Tin Oxide Thin‐Film Transistors
Keon‐Hee Lim, Kyongjun Kim, Seonjo Kim, Si Yun Park, Hyungjun Kim, Youn Sang Kim
SJR Q1Advanced Materials

Solution-processed and alkali metals, such as Li and Na, are introduced in doped amorphous zinc tin oxide (ZTO) semiconductor TFTs, which show better electrical performance, such as improved field effect mobility, than intrinsic amorphous ZTO semiconductor TFTs. Furthermore, by using spectroscopic UV-visible analysis we propose a comprehensive technique for monitoring the improved electrical performance induced by alkali metal doping in terms of the change in optical properties. The change in th

Electrical and Electronic EngineeringEngineering
6
Article|101 citations·2019
Natural Evaporation-Driven Ionovoltaic Electricity Generation
Sun Geun Yoon, Young-Jun Yang, Jeeyoung Yoo, Huding Jin, Won Hyung Lee, Jun‐Woo Park, Youn Sang Kim
SJR Q1ACS Applied Electronic Materials

Evaporation-induced electricity generation, harnessing natural vaporization of water, is spotlighted as a promising energy conversion system with showing off remarkable characteristics such as continuous generation without artificial water motions. However, the vague origin and mechanism of this phenomenon are obstacles for practical application. Herein, the origin of the evaporation-induced electricity generation was verified in terms of the "ionovoltaic" effect, ionic motion-induced charge car

Renewable Energy, Sustainability and the EnvironmentEnergy
7
Article|98 citations·2014
Gate Capacitance‐Dependent Field‐Effect Mobility in Solution‐Processed Oxide Semiconductor Thin‐Film Transistors
Eungkyu Lee, Jieun Ko, Keon‐Hee Lim, Kyongjun Kim, Si Yun Park, Jae Min Myoung, Youn Sang Kim
SJR Q1Advanced Functional Materials

Solution‐processed oxide semiconductors (OSs) used as channel layer have been presented as a solution to the demand for flexible, cheap, and transparent thin‐film transistors (TFTs). In order to produce high‐performance and long‐sustainable portable devices with the solution‐processed OS TFTs, the low‐operational voltage driving current is a key issue. Experimentally, increasing the gate‐insulator capacitances by high‐ k dielectrics in the OS TFTs has significantly improved the field‐effect mobi

Electrical and Electronic EngineeringEngineering
8
Article|92 citations·2007
A simple fabrication route to a highly transparent super-hydrophobic surface with a poly(dimethylsiloxane) coated flexible mold
Mihee Kim, Kyunghoon Kim, Nae Yoon Lee, Kyusoon Shin, Youn Sang Kim
SJR Q1Chemical Communications

A super-hydrophobic and highly transparent nanostructured film was fabricated via imprinting and conformally uniform chemical anchoring of poly(dimethylsiloxane) on a controlled nanoscopic dimension.

Surfaces, Coatings and FilmsMaterials Science
9
Article|91 citations·2017
Identification of Droplet-Flow-Induced Electric Energy on Electrolyte–Insulator–Semiconductor Structure
Junwoo Park, Suhwan Song, Young-Jun Yang, Soon-Hyung Kwon, Eunji Sim, Youn Sang Kim
SJR Q1Journal of the American Chemical Society

Recently, various energy transducers driven by the relative motion of solids and liquids have been demonstrated. However, in relation to the energy transducer, a proper understanding of the dynamic behavior of ions remains unclear. Moreover, the energy density is low for practical usage mainly due to structural limitations, a lack of material development stemming from the currently poor understanding of the mechanisms, and the intermittently generated electricity given the characteristics of the

Biomedical EngineeringEngineering
10
Article|87 citations·2014
Facile Synthesis of Oxidation‐Resistant Copper Nanowires toward Solution‐Processable, Flexible, Foldable, and Free‐Standing Electrodes
Zhenxing Yin, Chaedong Lee, Sanghun Cho, Jeeyoung Yoo, Yuanzhe Piao, Youn Sang Kim
SJR Q1Small

Oxidation-resistant copper nanowires (Cu NWs) are synthesized by a polyol reduction method. These Cu NWs show excellent oxidation resistance, good dispersibility, and have a low sintering temperature. A Cu NW-based flexible, foldable, and free-standing electrode is fabricated by filtration and a sintering process. The electrode also exhibits high electrical conductivity even bending, folding, and free-standing.

Electrical and Electronic EngineeringEngineering
11
Article|86 citations·2015
Novel Synthesis, Coating, and Networking of Curved Copper Nanowires for Flexible Transparent Conductive Electrodes
Zhenxing Yin, Seung Keun Song, Duck‐Jae You, Yeongun Ko, Sanghun Cho, Jeeyoung Yoo, Si Yun Park, Yuanzhe Piao, Suk Tai Chang, Youn Sang Kim
SJR Q1Small

In this work, a whole manufacturing process of the curved copper nanowires (CCNs) based flexible transparent conductive electrode (FTCE) is reported with all solution processes, including synthesis, coating, and networking. The CCNs with high purity and good quality are designed and synthesized by a binary polyol coreduction method. In this reaction, volume ratio and reaction time are the significant factors for the successful synthesis. These nanowires have an average 50 nm in width and 25-40 μ

Electrical and Electronic EngineeringEngineering
12
Article|83 citations·2020
Identification of water-infiltration-induced electrical energy generation by ionovoltaic effect in porous CuO nanowire films
Huding Jin, Sun Geun Yoon, Won Hyung Lee, Yong Hyun Cho, Junghyup Han, Junwoo Park, Youn Sang Kim
SJR Q1Energy & Environmental Science

We verified the origin of water-infiltration-induced electricity generation by an ionovoltaic effect, specifically, ion–surface interaction induced potential asymmetry in a porous CuO nanowire film.

Materials ChemistryMaterials Science
13
Article|82 citations·2003
High density nanostructure transfer in soft molding using polyurethane acrylate molds and polyelectrolyte multilayers
Youn Sang Kim, Hong H. Lee, Paula T. Hammond
SJR Q2Nanotechnology

Here we present an alternative, new, unconventional lithographic technique developed to create dense and multilevel nanostructure pattern transfer using a highly accurate polyurethane acrylate (PU, MINS101m, Minuta Tech.) mold and a polyelectrolyte multilayer as the adhesion promotion layer. Specifically, we demonstrate the pattern transfer of periodic 80 nm lines with 400 nm height and complex and multilevel nanostructures to a polymer layer on various substrates, such as Si or SiO2 wafers, gla

Biomedical EngineeringEngineering
14
Article|78 citations·2020
Evaporative electrical energy generation via diffusion-driven ion-electron-coupled transport in semiconducting nanoporous channel
Sun Geun Yoon, Huding Jin, Won Hyung Lee, Junghyup Han, Yong Hyun Cho, Youn Sang Kim
SJR Q1Nano Energy
Biomedical EngineeringEngineering
15
Article|71 citations·2013
Solution-processed amorphous hafnium-lanthanum oxide gate insulator for oxide thin-film transistors
Jieun Ko, Joohee Kim, Si Yun Park, Eungkyu Lee, Kyongjun Kim, Keon‐Hee Lim, Youn Sang Kim
SJR Q1Journal of Materials Chemistry C

Solution-processed high-K dielectrics for oxide thin-film transistors (TFTs) have been widely studied with the objective of achieving high performance and low-cost TFTs for next-generation displays. In this study, we introduce an amorphous hafnium-lanthanum oxide (HfLaOx) gate insulator with high electrical permittivity which was fabricated by the simple spin-coating method. In particular, the solution-processed HfLaOx dielectric layer, which was achieved by a mixture of two Hf and La metal hydr

Electrical and Electronic EngineeringEngineering

Research Areas

Electrical and Electronic EngineeringBiomedical EngineeringMaterials ChemistryElectronic, Optical and Magnetic MaterialsRenewable Energy, Sustainability and the EnvironmentAtomic and Molecular Physics, and Optics

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