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Jihun Jeong

Korea University · Engineering

About the Lab

Professor Jihun Jeong's research lab specializes in advanced energy harvesting technologies, with a primary focus on triboelectric nanogenerators (TENGs) and hybrid energy conversion systems. The lab explores innovative mechanisms such as ion-enhanced field emission, flutter-driven TENGs, and water-based TENGs to overcome limitations in output power and environmental adaptability. Key research directions include structural design optimization for multifunctional energy harvesting, surface engineering for superhydrophobicity and charge control, and the integration of TENGs with renewable energy sources like wind and water flow.

triboelectric nanogeneratorsenergy harvestingsurface engineeringhybrid energy systemsfield emission

Research Overview

Papers
105
Total Citations
2,883
Papers (5y)
49
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
49total
2022
2023
2024
2025
2026
Citations per year (5y)
960total
20222023202420252026

Selected Papers

15
1
Article|92 citations·2004
In-tandem deposition and sintering of printed gold nanoparticle inks induced by continuous Gaussian laser irradiation
Jihoon Chung, Nicole R. Bieri, Seung Hwan Ko, Costas P. Grigoropoulos, Dimos Poulikakos
SJR Q2Applied Physics A
Atmospheric ScienceEarth and Planetary Sciences
2
Article|83 citations·2007
Effect of thickness of ZnO active layer on ZnO-TFT's characteristics
Jihoon Chung, J.Y. Lee, Hong‐Gyu Kim, N. W. Jang, J.H. Kim
SJR Q2Thin Solid Films
Electrical and Electronic EngineeringEngineering
3
Article|80 citations·2019
Ion‐Enhanced Field Emission Triboelectric Nanogenerator
Jihoon Chung, Deokjae Heo, Gunsub Shin, Dukhyun Choi, Kyungwho Choi, Dongseob Kim, Sangmin Lee
SJR Q1Advanced Energy Materials

Abstract As interest in triboelectric nanogenerators (TENGs) continues to increase, some studies have reported that certain limitations exist in TENG due to high potential difference, resulting in air breakdown and field emission. In addition, with known limitations such as extremely low voltage at low external resistance, a breakthrough is required to overcome the limitations of TENG. Here, a new TENG mechanism is reported, utilizing ion‐enhanced field emission (IEFE). Using a simple IEFE‐induc

Biomedical EngineeringEngineering
4
Article|62 citations·2021
Triangulated Cylinder Origami-Based Piezoelectric/Triboelectric Hybrid Generator to Harvest Coupled Axial and Rotational Motion
Jihoon Chung, Myunghwan Song, Seh‐Hoon Chung, Woojin Choi, Sanghyun Lee, Sanghyun Lee, Zong‐Hong Lin, Jinkee Hong, Sangmin Lee, Sangmin Lee
SJR Q1ResearchOA

Piezoelectric nanogenerators (PENGs) and triboelectric nanogenerators (TENGs) are representative technologies that can harvest mechanical energy. In general, piezoelectric/triboelectric hybrid generators can harvest considerable energy with a limited input; however, PENGs and TENGs entail different requirements for harvesting energy. Specifically, PENGs produce a large output when a large mechanical strain is applied, and TENGs require a large surface area to produce a high power. Therefore, it

Biomedical EngineeringEngineering
5
Article|56 citations·2023
Ultrahigh Performance, Serially Stackable, Breeze Driven Triboelectric Generator via Ambient Air Ionizing Channel
Jin-Ho Son, Seh‐Hoon Chung, Kyunghwan Cha, Sunghan Kim, Zong‐Hong Lin, Jinkee Hong, Jihoon Chung, Sangmin Lee
SJR Q1Advanced Materials

Abstract Currently, wind energy harvesting is in the limelight. However, with the existing electromagnetic wind generators, it is difficult to harvest multifariously‐wasted breezes. To harvest energy from winds at a wide range of speeds, wind‐driven triboelectric nanogenerators (TENGs) are studied. However, a critical limitation of general wind‐driven TENGs is that their power output is low. Therefore, an innovative strategy is necessary to generate high output power even from breeze. Herein, an

Biomedical EngineeringEngineering
6
Article|56 citations·2016
Cylindrical Water Triboelectric Nanogenerator via Controlling Geometrical Shape of Anodized Aluminum for Enhanced Electrostatic Induction
Su‐Kyung Lee, Jihoon Chung, Dae Yun Kim, Jung‐Yeul Jung, Seong Hyuk Lee, Sangmin Lee, Seong Hyuk Lee, Sangmin Lee, Sangmin Lee
SJR Q1ACS Applied Materials & Interfaces

We demonstrate a cylindrical water triboelectric nanogenerator (CW-TENG) that generates sustainable electrical output. The inner surface of the cylinder was patterned into superhydrophobic and hydrophilic parts to control water flow inside the packaged design of CW-TENG. Here, various thicknesses and roughnesses of the superhydrophobic surface, generated using aluminum oxide nanostructures for enhanced electrostatic induction, were measured to obtain the maximum output and superhydrophobicity. A

Biomedical EngineeringEngineering
7
Article|55 citations·2020
Versatile surface for solid–solid/liquid–solid triboelectric nanogenerator based on fluorocarbon liquid infused surfaces
Jihoon Chung, Handong Cho, Hyungseok Yong, Deokjae Heo, You Seung Rim, Sangmin Lee
SJR Q1Science and Technology of Advanced MaterialsOA

The triboelectric nanogenerator (TENG) is a recent mechanical energy harvesting technology that has been attracting significant attention. Its working principle involves the combination of triboelectrification and electrostatic induction. The TENG can harvest electrical energy from both solid–solid and liquid–solid contact TENGs. Due to their physical difference, triboelectric materials in the solid–solid TENG need to have high mechanical properties and the surface of the liquid–solid contact TE

Biomedical EngineeringEngineering
8
Article|55 citations·2018
Superhydrophobic Water-Solid Contact Triboelectric Generator by Simple Spray-On Fabrication Method
Jihoon Chung, Deokjae Heo, Banseok Kim, Sangmin Lee
SJR Q2MicromachinesOA

Energy harvesting is a method of converting energy from ambient environment into useful electrical energy. Due to the increasing number of sensors and personal electronics, energy harvesting technologies from various sources are gaining attention. Among energy-harvesting technologies, triboelectric nanogenerator (TENG) was introduced as a device that can effectively generate electricity from mechanical motions by contact-electrification. Particularly, liquid-solid contact TENGs, which use the li

Biomedical EngineeringEngineering
9
Article|54 citations·2018
Hand‐Driven Gyroscopic Hybrid Nanogenerator for Recharging Portable Devices
Jihoon Chung, Hyungseok Yong, Haksung Moon, Quang Van Duong, Seung Tae Choi, Dongseob Kim, Sangmin Lee
SJR Q1Advanced ScienceOA

Abstract With the rise of portable and wearable electronics, a fast‐charging, long‐lasting power solution is needed; thus, there are attempts to harvest energy from the ambient environment. Mechanical energy harvesting through piezoelectric and triboelectric nanogenerators (PENG and TENG) is a promising approach due to their light weight, low cost, and high‐power density in comparison to other technologies. Both types of generators are capable of charging portable and smart devices on their own

Biomedical EngineeringEngineering
10
Article|51 citations·2018
Capacitor‐Integrated Triboelectric Nanogenerator Based on Metal–Metal Contact for Current Amplification
Jihoon Chung, Hyungseok Yong, Haksung Moon, Seung Tae Choi, Divij Bhatia, Dukhyun Choi, Dongseob Kim, Sangmin Lee
SJR Q1Advanced Energy Materials

Abstract The electrical power of triboelectric nanogenerators (TENGs) is increased by surface modifications, and they can successfully power portable devices alone. However, modifying the material and its surface may limit the device lifetime, and most of the portable applications demonstrated in previous studies have excessive input conditions. In this study, a capacitor‐integrated TENG (CI‐TENG) that uses the fundamental mechanisms of the Leyden jar is developed. In this device, a long sheet m

Biomedical EngineeringEngineering
11
Article|47 citations·2021
Dielectric liquid-based self-operating switch triboelectric nanogenerator for current amplification via regulating air breakdown
Jihoon Chung, Seh‐Hoon Chung, Zong‐Hong Lin, Youngho Jin, Jinkee Hong, Sangmin Lee
SJR Q1Nano Energy
Biomedical EngineeringEngineering
12
Article|46 citations·2023
Anomaly detection in additive manufacturing processes using supervised classification with imbalanced sensor data based on generative adversarial network
Jihoon Chung, Bo Shen, Zhenyu Kong
SJR Q1Journal of Intelligent Manufacturing
Industrial and Manufacturing EngineeringEngineering
13
Article|43 citations·2015
Self-packaging elastic bellows-type triboelectric nanogenerator
Jihoon Chung, Su‐Kyung Lee, Su‐Kyung Lee, Hyungseok Yong, Haksung Moon, Dukhyun Choi, Sangmin Lee, Sangmin Lee
SJR Q1Nano Energy
Biomedical EngineeringEngineering
14
Article|37 citations·2020
Water behavior based electric generation via charge separation
Jihoon Chung, Deokjae Heo, Gunsub Shin, Seh-Hoon Chung, Jinkee Hong, Sangmin Lee
SJR Q1Nano Energy
Electrical and Electronic EngineeringEngineering
15
Article|16 citations·2022
Sub-watt power triboelectric generator via polarization switching charge carrier
Seh‐Hoon Chung, Kyunghwan Cha, Myunghwan Song, Dongchang Kim, Deokjae Heo, Min‐Kun Kim, Heesoo Jung, Youngho Jin, Jinkee Hong, Jihoon Chung, Sangmin Lee
SJR Q1Nano Energy
Biomedical EngineeringEngineering

Research Areas

Biomedical EngineeringElectrical and Electronic EngineeringMaterials ChemistryMechanical EngineeringControl and Systems EngineeringAtmospheric Science

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