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Sang Hoon Park

Hanyang University · Engineering

About the Lab

Professor Sang Hoon Park's research lab specializes in advanced energy materials and power electronics, with a strong focus on nanomaterials for energy storage and conversion. The lab develops high-performance graphene-based nanomaterials through innovative synthesis methods, such as microwave-assisted exfoliation and spray-assisted self-assembly, to enhance electrochemical performance in supercapacitors and batteries. Additionally, the lab designs efficient power conversion systems, particularly soft-switching DC-DC converters, to improve energy efficiency in photovoltaic and electronic systems. The integration of nanomaterials with scalable device architectures is a central theme in advancing next-generation energy technologies.

nanomaterialsenergy storagepower electronicsgraphenesoft-switching converters

Research Overview

Papers
250
Total Citations
10,890
Papers (5y)
29
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
29total
2021
2022
2023
2024
2025
Citations per year (5y)
345total
20212022202320242025

Selected Papers

15
1
Article|464 citations·2019
High areal capacity battery electrodes enabled by segregated nanotube networks
Sang‐Hoon Park, Paul J. King, Ruiyuan Tian, Conor S. Boland, João Coelho, Chuanfang Zhang, Patrick McBean, Niall McEvoy, Matthias P. Kremer, Dermot Daly, Jonathan N. Coleman, Valeria Nicolosi
SJR Q1Nature EnergyOA
Electrical and Electronic EngineeringEngineering
2
Article|146 citations·2010
Solid-state microwave irradiation synthesis of high quality graphenenanosheets under hydrogen containing atmosphere
Sang‐Hoon Park, Seong‐Min Bak, Kwang-Heon Kim, Kwang-Heon Kim, Jong-Pil Jegal, Sang-Ick Lee, Jaeho Lee, Kwang-Bum Kim, Kwang-Bum Kim
Journal of Materials Chemistry

High quality graphene nanosheets were fabricated within 1 min by solid-state microwave irradiation of a mixture of graphite oxide and graphene nanosheets under a hydrogen atmosphere. The graphene nanosheets in the mixture acted as an effective microwave susceptor under microwave irradiation synthesis, and could provide sufficiently rapid heating for the effective exfoliation of graphite oxide. A hydrogen containing atmosphere played important roles in improving the quality of the graphene nanosh

Materials ChemistryMaterials Science
3
Article|116 citations·2009
Design and Application for PV Generation System Using a Soft-Switching Boost Converter With SARC
Sang‐Hoon Park, Gil-Ro Cha, Yong-Chae Jung, Chung-Yuen Won
SJR Q1IEEE Transactions on Industrial Electronics

In order to improve the efficiency of energy conversion for a photovoltaic (PV) system, a soft-switching boost converter using a simple auxiliary resonant circuit, which is composed of an auxiliary switch, a diode, a resonant inductor, and a resonant capacitor, is adopted in this paper. The conventional boost converter decreases the efficiency because of hard switching, which generates losses when the switches are turned on/off. During this interval, all switches in the adopted circuit perform z

Renewable Energy, Sustainability and the EnvironmentEnergy
4
Article|106 citations·2013
Life cycle carbon dioxide assessment tool for buildings in the schematic design phase
Cheonghoon Baek, Sang‐Hoon Park, Michiya Suzuki, Sang Ho Lee
SJR Q1Energy and Buildings
Environmental EngineeringEnvironmental Science
5
Article|101 citations·2014
Spray-Assisted Deep-Frying Process for the In Situ Spherical Assembly of Graphene for Energy-Storage Devices
Sang‐Hoon Park, Hyun‐Kyung Kim, Seung-Beom Yoon, Chang‐Wook Lee, Dongjoon Ahn, Sang-Ick Lee, Kwang Chul Roh, Kwang‐Bum Kim
SJR Q1Chemistry of MaterialsOA

High Resolution Image Download MS PowerPoint Slide To take full advantage of graphene in macroscale devices, it is important to integrate two-dimensional graphene nanosheets into a micro/macrosized structure that can fully utilize graphene’s nanoscale characteristics. To this end, we developed a novel spray-assisted self-assembly process to create a spherically integrated graphene microstructure (graphene microsphere) using a high-temperature organic solvent in a manner reminiscent of deep-fryin

Electronic, Optical and Magnetic MaterialsMaterials Science
6
Article|99 citations·2011
Changes in renovation policies in the era of sustainability
Cheonghoon Baek, Sang‐Hoon Park
SJR Q1Energy and Buildings
Social PsychologyPsychology
7
Article|98 citations·2010
Analysis and Design of a Soft-Switching Boost Converter With an HI-Bridge Auxiliary Resonant Circuit
Sang‐Hoon Park, So-Ri Park, Jae-Sung Yu, Yong-Chae Jung, Chung-Yuen Won
SJR Q1IEEE Transactions on Power Electronics

A new soft-switching boost converter is proposed in this paper. The conventional boost converter generates switching losses at turn on and off, and this causes a reduction in the whole system's efficiency. The proposed boost converter utilizes a soft-switching method using an auxiliary circuit with a resonant inductor and capacitor, auxiliary switch, and diodes. Therefore, the proposed soft-switching boost converter reduces switching losses more than the conventional hard-switching converter. Th

Electrical and Electronic EngineeringEngineering
8
Article|75 citations·2014
Evaluation of the thermal performance of a Thermally Activated Building System (TABS) according to the thermal load in a residential building
Sang‐Hoon Park, Woong June Chung, Myoung Souk Yeo, Kwang Woo Kim
SJR Q1Energy and Buildings
Building and ConstructionEngineering
9
Article|66 citations·2019
Quantifying the Trade‐Off between Absolute Capacity and Rate Performance in Battery Electrodes
Sang‐Hoon Park, Ruiyuan Tian, João Coelho, Valeria Nicolosi, Jonathan N. Coleman
SJR Q1Advanced Energy MaterialsOA

Abstract Among other things, battery electrodes need to display large absolute capacities coupled with high rate performance. However, enhancing areal capacity, for example via increased electrode thickness, results in reductions in rate performance. The basis for this negative correlation has not been studied in a quantitative fashion. Here, a semiempirical model is used to analyze capacity versus rate data for electrodes fabricated from a number of materials, each measured at various thickness

Electrical and Electronic EngineeringEngineering
10
Article|55 citations·2009
Design and analysis of flash translation layers for multi-channel NAND flash-based storage devices
Sang‐Hoon Park, Seung-Hwan Ha, Kwanhu Bang, Eui-Young Chung
SJR Q1IEEE Transactions on Consumer Electronics

NAND Flash-based Storage Devices (NFSDs) have been replacing the conventional magnetic storage devices in many consumer electronic systems. One of the advantages of NFSDs is their read/write bandwidth, which is higher than that of the magnetic storage devices. For further increase of their bandwidth, high-end NFSDs employ multichannel and multi-way architectures in which it is possible to access the NAND Flash Memories (NFMs) in parallel for amortizing the long latency of NFMs. Even though this

Computer Networks and CommunicationsComputer Science
11
Article|48 citations·2013
Self-assembly of Si entrapped graphene architecture for high-performance Li-ion batteries
Sang‐Hoon Park, Hyun‐Kyung Kim, Dong Joon Ahn, Sang-Ick Lee, Kwang Chul Roh, Kwang‐Bum Kim
SJR Q2Electrochemistry CommunicationsOA
Electrical and Electronic EngineeringEngineering
12
Article|32 citations·2014
Spine-like Nanostructured Carbon Interconnected by Graphene for High-performance Supercapacitors
Sang‐Hoon Park, Seung-Beom Yoon, Hyun‐Kyung Kim, Joong Tark Han, Hae Woong Park, Joah Han, Seok‐Min Yun, Han Gi Jeong, Kwang Chul Roh, Kwang‐Bum Kim
SJR Q1Scientific ReportsOA

Recent studies on supercapacitors have focused on the development of hierarchical nanostructured carbons by combining two-dimensional graphene and other conductive sp(2) carbons, which differ in dimensionality, to improve their electrochemical performance. Herein, we report a strategy for synthesizing a hierarchical graphene-based carbon material, which we shall refer to as spine-like nanostructured carbon, from a one-dimensional graphitic carbon nanofiber by controlling the local graphene/graph

Electronic, Optical and Magnetic MaterialsMaterials Science
13
Article|30 citations·1986
pH dependence of the kinetic parameters for oxalacetate decarboxylation and pyruvate reduction reactions catalyzed by malic enzyme
Sang‐Hoon Park, Ben G. Harris, Paul Cook
SJR Q1Biochemistry

Both chicken liver NADP-malic enzyme and Ascaris suum NAD-malic enzyme catalyze the metal-dependent decarboxylation of oxalacetate. Both enzymes catalyze the reaction either in the presence or in the absence of dinucleotide. The presence of dinucleotide increases the affinity of oxalacetate for the chicken liver NADP-malic enzyme, but this information could not be obtained in the case of A. suum NAD-malic enzyme because of the low affinity of free enzyme for NAD. The kinetic mechanism for oxalac

BiochemistryBiochemistry, Genetics and Molecular Biology
14
Article|29 citations·1984
The effect of chemical reaction on effective diffusivity within biporous catalysts—I
Sang‐Hoon Park, Young Gul Kim
SJR Q1Chemical Engineering Science
Physical and Theoretical ChemistryChemistry
15
Article|28 citations·1999
Consistency in the amount of linear polymerization shrinkage in syringe-type composites
Sang‐Hoon Park, Ivo Krejci, F Lutz
SJR Q1Dental MaterialsOA
Safety ResearchSocial Sciences

Research Areas

Electrical and Electronic EngineeringMaterials ChemistryElectronic, Optical and Magnetic MaterialsComputer Networks and CommunicationsMolecular BiologyMechanical Engineering

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