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Sunghoon Park

Ulsan National Institute of Science and Technology · 工学

研究室紹介

Professor Sunghoon Park's research lab specializes in the design and engineering of advanced functional nanomaterials for energy and environmental applications. Key research directions include the development of nanostructured gas sensors for environmental monitoring, thermoelectric materials and devices for sustainable energy conversion, and carbon nanotube-based composites for thermal management and electromagnetic shielding. The lab emphasizes innovative material synthesis, interface engineering, and device integration to enhance performance in real-world conditions.

nanomaterialsthermoelectric materialsgas sensorscarbon nanotube compositesenergy conversion

Research Overview

Papers
400
Total Citations
12,966
Papers (5y)
55
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
55total
2021
2022
2023
2024
2025
Citations per year (5y)
721total
20212022202320242025

Selected Papers

15
1
Article|202 citations·2015
Synthesis, Structure, and Ethanol Gas Sensing Properties of In2O3Nanorods Decorated with Bi2O3Nanoparticles
Sung Hoon Park, Soohyun Kim, Gun‐Joo Sun, Chongmu Lee
SJR Q1ACS Applied Materials & Interfaces

Bi2O3-decorated In2O3 nanorods were synthesized using a one-step process, and their structure, as well as the effects of decoration of In2O3 nanorods with Bi2O3 on the ethanol gas-sensing properties were examined. The multiple networked Bi2O3-decorated In2O3 nanorod sensor showed responses of 171-1774% at ethanol concentrations of 10-200 ppm at 200 °C. The responses of the Bi2O3-decorated In2O3 nanorod sensor were stronger than those of the pristine-In2O3 nanorod sensors by 1.5-4.9 times at the

Electrical and Electronic EngineeringEngineering
2
Article|171 citations·2016
High-performance shape-engineerable thermoelectric painting
Sung Hoon Park, Seungki Jo, Beomjin Kwon, Fredrick Kim, Hyeong Woo Ban, Ji Eun Lee, Da Hwi Gu, Se Hwa Lee, Younghun Hwang, Jin-Sang Kim, Dow‐Bin Hyun, Sukbin Lee
SJR Q1Nature CommunicationsOA

Abstract Output power of thermoelectric generators depends on device engineering minimizing heat loss as well as inherent material properties. However, the device engineering has been largely neglected due to the limited flat or angular shape of devices. Considering that the surface of most heat sources where these planar devices are attached is curved, a considerable amount of heat loss is inevitable. To address this issue, here, we present the shape-engineerable thermoelectric painting, geomet

Materials ChemistryMaterials Science
3
Article|165 citations·2019
Modeling the electrical resistivity of polymer composites with segregated structures
Sung Hoon Park, Jinyoung Hwang, Gyeong-Su Park, Ji‐Hwan Ha, Minsu Zhang, Dongearn Kim, Dong‐Jin Yun, Sang-Eui Lee, Sang Hyun Lee, Sang Hyun Lee, Sang Hyun Lee
SJR Q1Nature CommunicationsOA

Hybrid carbon nanotube composites with two different types of fillers have attracted considerable attention for various advantages. The incorporation of micro-scale secondary fillers creates an excluded volume that leads to the increase in the electrical conductivity. By contrast, nano-scale secondary fillers shows a conflicting behavior of the decreased electrical conductivity with micro-scale secondary fillers. Although several attempts have been made in theoretical modeling of secondary-fille

Materials ChemistryMaterials Science
4
Article|158 citations·2010
Fast pyrolysis of rice husk under different reaction conditions
Hyeon Su Heo, Hyun Ju Park, Jong-In Dong, Sung Hoon Park, Seungdo Kim, Dong Jin Suh, Young‐Woong Suh, Seung-Soo Kim, Young‐Kwon Park
SJR Q1Journal of Industrial and Engineering Chemistry
Biomedical EngineeringEngineering
5
Article|150 citations·2010
Improved mechanical properties of carbon nanotube/polymer composites through the use of carboxyl-epoxide functional group linkages
Sung Hoon Park, Prabhakar R. Bandaru
SJR Q1Polymer
Materials ChemistryMaterials Science
6
Article|147 citations·2004
Thermophilic biohydrogen production from glucose with trickling biofilter
You‐Kwan Oh, Seo Hyoung Kim, Mi‐Sun Kim, Sung Hoon Park
SJR Q2Biotechnology and Bioengineering

Thermophilic H2 production from glucose was studied at 55-64 degrees C for 234 days using a continuous trickling biofilter reactor (TBR) packed with a fibrous support matrix. Important parameters investigated included pH, temperature, hydraulic retention time (HRT), and glucose concentration in the feed. The optimal pH and temperature were 5.5 and 60 degrees C, respectively. With decreasing HRT or increasing inlet glucose concentration, volumetric H2 production rate increased but the H2 producti

Building and ConstructionEngineering
7
Article|128 citations·2022
Electrical and Thermal Properties of Carbon Nanotube Polymer Composites with Various Aspect Ratios
Dong-Kwan Lee, Jongchan Yoo, Hyunwoo Kim, Byung‐Ho Kang, Sung Hoon Park
SJR Q2MaterialsOA

In response to the rising need for flexible and lightweight materials capable of efficient heat transport, many studies have been conducted to improve the thermal properties of polymers via nanofillers. Among the various nanofillers, carbon nanotubes (CNTs) are considered as the most promising, owing to their excellent thermal and electrical properties. Accordingly, CNT/polymer composites can be used as flexible and lightweight heat transfer materials, owing to their low density. In this study,

Materials ChemistryMaterials Science
8
Article|127 citations·2009
Enhanced Electromagnetic Interference Shielding Through the Use of Functionalized Carbon-Nanotube-Reactive Polymer Composites
Sung Hoon Park, Paul Theilmann, P.M. Asbeck, Prabhakar R. Bandaru
SJR Q2IEEE Transactions on Nanotechnology

We report on a new principle yielding enhanced electromagnetic shielding, using as an example a composite comprised of carbon nanotubes (CNTs) integrated with a reactive ethylene terpolymer (RET). Such composites were synthesized through the chemical reaction of the functional groups on the CNT with the epoxy linkage of the RET polymer. The main advantages of these composites include good dispersion with low electrical percolation volume fractions (~0.1 volume%), yielding outstanding microwave s

Electronic, Optical and Magnetic MaterialsMaterials Science
9
Article|124 citations·2016
Removal of copper(II) in aqueous solution using pyrolytic biochars derived from red macroalga Porphyra tenera
Sung Hoon Park, Hye Jung Cho, Changkook Ryu, Young‐Kwon Park
SJR Q1Journal of Industrial and Engineering Chemistry
Water Science and TechnologyEnvironmental Science
10
Article|120 citations·2016
Synergistic Effects of a Combination of Cr2O3-Functionalization and UV-Irradiation Techniques on the Ethanol Gas Sensing Performance of ZnO Nanorod Gas Sensors
Sung Hoon Park, Gun-Joo Sun, Changhyun Jin, Hyoun Woo Kim, Sangmin Lee, Chongmu Lee
SJR Q1ACS Applied Materials & Interfaces

There have been very few studies on the effects of combining two or more techniques on the sensing performance of nanostructured sensors. Cr2O3-functionalized ZnO nanorods were synthesized using carbothermal synthesis involving the thermal evaporation of a mixture of ZnO and graphite powders followed by a solvothermal process for Cr2O3-functionalization. The ethanol gas-sensing properties of multinetworked pristine and Cr2O3-functionalized ZnO nanorod sensors under UV illumination were examined

Electrical and Electronic EngineeringEngineering
11
Article|120 citations·2015
Oxidizing gas sensing properties of the n-ZnO/p-Co3O4 composite nanoparticle network sensor
Sung Hoon Park, Soo‐Hyun Kim, Hyejoon Kheel, Chongmu Lee
SJR Q1Sensors and Actuators B Chemical
Electrical and Electronic EngineeringEngineering
12
Article|118 citations·2014
Smart conducting polymer composites having zero temperature coefficient of resistance
Kunmo Chu, Sung-Chul Lee, Sang-Eui Lee, Dongearn Kim, Changyoul Moon, Sung Hoon Park
SJR Q1Nanoscale

Zero temperature coefficient of resistance (TCR) is essential for the precise control of temperature in heating element and sensor applications. Many studies have focused on developing zero-TCR systems with inorganic compounds; however, very few have dealt with developing zero-TCR systems with polymeric materials. Composite systems with a polymer matrix and a conducting filler show either a negative (NTC) or a positive temperature coefficient (PTC) of resistance, depending on several factors, e.

Polymers and PlasticsMaterials Science
13
Review|108 citations·2017
Properties and applications of starch modifying enzymes for use in the baking industry
Sung Hoon Park, Yerim Na, Jung-Woo Kim, Shin Dal Kang, Kwan‐Hwa Park
SJR Q2Food Science and BiotechnologyOA
Nutrition and DieteticsNursing
14
Article|101 citations·2009
Enhanced dielectric constants and shielding effectiveness of, uniformly dispersed, functionalized carbon nanotube composites
Sung Hoon Park, Paul Thielemann, P.M. Asbeck, Prabhakar R. Bandaru
SJR Q1Applied Physics Letters

It was seen that composites constituted of functionalized single-walled nanotubes (SWNTs) dispersed in a reactive ethylene terpolymer (RET) matrix possess a complex dielectric permittivity an order of magnitude larger than composites composed of pristine SWNTs and two orders of magnitude larger than functionalized multiwalled nanotube-RET composites. We seek to understand such an enhancement, both in terms of uniform nanotube dispersion and through a parallel resistor-capacitor model. We subsequ

Electronic, Optical and Magnetic MaterialsMaterials Science
15
Article|94 citations·2017
A Simple Parameterization for the Rising Velocity of Bubbles in a Liquid Pool
Sung Hoon Park, Changhwan Park, JinYong Lee, Byungchul Lee
SJR Q2Nuclear Engineering and TechnologyOA

The determination of the shape and rising velocity of gas bubbles in a liquid pool is of great importance in analyzing the radioactive aerosol emissions from nuclear power plant accidents in terms of the fission product release rate and the pool scrubbing efficiency of radioactive aerosols. This article suggests a simple parameterization for the gas bubble rising velocity as a function of the volume-equivalent bubble diameter; this parameterization does not require prior knowledge of bubble shap

Biomedical EngineeringEngineering

Research Areas

Biomedical EngineeringMaterials ChemistryElectrical and Electronic EngineeringMechanical EngineeringElectronic, Optical and Magnetic MaterialsRenewable Energy, Sustainability and the Environment

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