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Sungjune Jung

Pohang University of Science and Technology · 工学

研究室紹介

Professor Sungjune Jung's research lab specializes in advanced additive manufacturing techniques for flexible and wearable electronics, with a focus on inkjet printing and 3D integration of organic electronic devices. The lab pioneers scalable, high-yield fabrication of printed thin-film transistors, organic photovoltaics, and bio-integrated systems, emphasizing performance, stability, and miniaturization. A key research direction involves the development of direct-write printing methods for complex, multi-layered circuits and functional biological models, including 3D organotypic cell cultures for disease modeling and drug screening.

inkjet printingprinted electronics3D integrationorganic field-effect transistorsbiofabrication

Research Overview

Papers
176
Total Citations
5,667
Papers (5y)
56
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
56total
2022
2023
2024
2025
2026
Citations per year (5y)
596total
20222023202420252026

Selected Papers

15
1
Article|278 citations·2018
Three-dimensional monolithic integration in flexible printed organic transistors
Jimin Kwon, Yasunori Takeda, Rei Shiwaku, Shizuo Tokito, Kilwon Cho, Sungjune Jung
SJR Q1Nature CommunicationsOA

Direct printing of thin-film transistors has enormous potential for ubiquitous and lightweight wearable electronic applications. However, advances in printed integrated circuits remain very rare. Here we present a three-dimensional (3D) integration approach to achieve technology scaling in printed transistor density, analogous to Moore's law driven by lithography, as well as enhancing device performance. To provide a proof of principle for the approach, we demonstrate the scalable 3D integration

Biomedical EngineeringEngineering
2
Article|161 citations·2014
All‐Inkjet‐Printed, All‐Air‐Processed Solar Cells
Sungjune Jung, Antony Sou, K.K. Banger, Doo‐Hyun Ko, Philip C. Y. Chow, Christopher R. McNeill, Henning Sirringhaus
SJR Q1Advanced Energy Materials

The prospective of using direct‐write printing techniques for the manufacture of organic photovoltaics (OPVs) has made these techniques highly attractive. OPVs have the potential to revolutionize small‐scale portable electronic applications by directly providing electric power to the systems. However, no route is available for monolithically integrating the energy‐harvesting units into a system in which other components, such as transistors, sensors, or displays, are already fabricated. Here, th

Electrical and Electronic EngineeringEngineering
3
Article|135 citations·2016
Three-Dimensional, Inkjet-Printed Organic Transistors and Integrated Circuits with 100% Yield, High Uniformity, and Long-Term Stability
Jimin Kwon, Yasunori Takeda, Kenjiro Fukuda, Kilwon Cho, Shizuo Tokito, Sungjune Jung
SJR Q1ACS Nano

In this paper, we demonstrate three-dimensional (3D) integrated circuits (ICs) based on a 3D complementary organic field-effect transistor (3D-COFET). The transistor-on-transistor structure was achieved by vertically stacking a p-type OFET over an n-type OFET with a shared gate joining the two transistors, effectively halving the footprint of printed transistors. All the functional layers including organic semiconductors, source/drain/gate electrodes, and interconnection paths were fully inkjet-

Electrical and Electronic EngineeringEngineering
4
Article|131 citations·2021
Spatiotemporal Measurement of Arterial Pulse Waves Enabled by Wearable Active-Matrix Pressure Sensor Arrays
Sanghoon Baek, Youngoh Lee, Jin‐Hyeok Baek, Jimin Kwon, Seongju Kim, Seungjae Lee, Karl‐Philipp Strunk, Sebastian Stehlin, Christian Melzer, Sung‐Min Park, Hyunhyub Ko, Sungjune Jung
SJR Q1ACS Nano

Wearable pressure sensors have demonstrated great potential in detecting pulse pressure waves on the skin for the noninvasive and continuous diagnosis of cardiac conditions. However, difficulties lie in positioning conventional single-point sensors on an invisible arterial line, thereby preventing the detection of adequate signal amplitude for accurate pulse wave analysis. Herein, we introduce the spatiotemporal measurements of arterial pulse waves using wearable active-matrix pressure sensors t

Biomedical EngineeringEngineering
5
Article|125 citations·2021
All‐Inkjet‐Printed 3D Alveolar Barrier Model with Physiologically Relevant Microarchitecture
Dayoon Kang, Ju An Park, Woojo Kim, Seongju Kim, Hwa‐Rim Lee, Woo Jong Kim, Joo‐Yeon Yoo, Sungjune Jung
SJR Q1Advanced ScienceOA

With the outbreak of new respiratory viruses and high mortality rates of pulmonary diseases, physiologically relevant models of human respiratory system are urgently needed to study disease pathogenesis, drug efficacy, and pharmaceutics. In this paper, a 3D alveolar barrier model fabricated by printing four human alveolar cell lines, namely, type I and II alveolar cells (NCI-H1703 and NCI-H441), lung fibroblasts (MRC5), and lung microvascular endothelial cells (HULEC-5a) is presented. Automated

Biomedical EngineeringEngineering
6
Article|101 citations·2017
Freeform micropatterning of living cells into cell culture medium using direct inkjet printing
Ju An Park, Sejeong Yoon, Jimin Kwon, Hesung Now, Young Kwon Kim, Woo Jong Kim, Joo‐Yeon Yoo, Sungjune Jung
SJR Q1Scientific ReportsOA

Microfabrication methods have widely been used to control the local cellular environment on a micron scale. However, accurately mimicking the complexity of the in vivo tissue architecture while maintaining the freedom of form and design is still a challenge when co-culturing multiple types of cells on the same substrate. For the first time, we present a drop-on-demand inkjet printing method to directly pattern living cells into a cell-friendly liquid environment. High-resolution control of cell

Biomedical EngineeringEngineering
7
Article|86 citations·2018
Inkjet–Spray Hybrid Printing for 3D Freeform Fabrication of Multilayered Hydrogel Structures
Sejeong Yoon, Ju An Park, Hwa‐Rim Lee, Woong Yoon, Dong Soo Hwang, Sungjune Jung
SJR Q1Advanced Healthcare Materials

Here, a new bioprinting process by combining drop-on-demand inkjet printing with a spray-coating technique, which enables the high-resolution, high-speed, and freeform fabrication of large-scale cell-laden hydrogel structures is reported. Hydrogel structures with various shapes and composed of different materials, including alginate, cellulose nanofiber, and fibrinogen, are fabricated using the inkjet-spray printing. To manufacture cell-friendly hydrogel structures with controllable stiffness, g

Biomedical EngineeringEngineering
8
Article|76 citations·2012
The impact and spreading of a small liquid drop on a non-porous substrate over an extended time scale
Sungjune Jung, Ian M. Hutchings
SJR Q2Soft MatterOA

High-speed imaging has been used to analyse the impact and spreading of sub-30 μm drops of Newtonian fluids (diethyl phthalate and glycerol–water mixture) on smooth glass surfaces with controlled wettabilities at velocities from 3 to 8 m s−1. Data on drop height and spreading diameter were generated with high time and spatial resolution, over eight orders of magnitude in time scale. During the initial kinematic phase, the contact diameter followed a simple power-law independent of impact speed a

Computational MechanicsEngineering
9
Article|68 citations·2013
Inkjet-printed resistors with a wide resistance range for printed read-only memory applications
Sungjune Jung, Antony Sou, E. Gili, Henning Sirringhaus
SJR Q2Organic Electronics
Electrical and Electronic EngineeringEngineering
10
Article|66 citations·2018
Substituents engineered deep-red to near-infrared phosphorescence from tris-heteroleptic iridium(iii) complexes for solution processable red-NIR organic light-emitting diodes
Hae Un Kim, Sunyoung Sohn, Wanuk Choi, Minjun Kim, Seung Un Ryu, Taiho Park, Sungjune Jung, K. S. Bejoymohandas
SJR Q1Journal of Materials Chemistry C

Substituent effects on the photophysics of deep-red to near-infrared emissive iridium(<sc>iii</sc>) complexes.

Electrical and Electronic EngineeringEngineering
11
Article|63 citations·2023
3D Inkjet-Bioprinted Lung-on-a-Chip
Wookyeom Kim, Yunji Lee, Dayoon Kang, Taejeong Kwak, Hwa‐Rim Lee, Sungjune Jung
SJR Q1ACS Biomaterials Science & Engineering

There is an urgent need for physiologically relevant and customizable biochip models of human lung tissue to provide a niche for lung disease modeling and drug efficacy. Although various lung-on-a-chips have been developed, the conventional fabrication method has been limited in reconstituting a very thin and multilayered architecture and spatial arrangements of multiple cell types in a microfluidic device. To overcome these limitations, we developed a physiologically relevant human alveolar lun

Biomedical EngineeringEngineering
12
Article|62 citations·2012
The role of viscoelasticity in drop impact and spreading for inkjet printing of polymer solution on a wettable surface
Sungjune Jung, Stephen D. Hoath, Ian M. Hutchings
SJR Q2Microfluidics and Nanofluidics
Electrical and Electronic EngineeringEngineering
13
Article|62 citations·2010
Atomization patterns produced by the oblique collision of two Newtonian liquid jets
Sungjune Jung, Stephen D. Hoath, Graham D. Martin, Ian M. Hutchings
SJR Q1Physics of FluidsOA

This paper reports a detailed experimental investigation of the formation, destabilization, and atomization of the liquid sheets created by the oblique impact of two laminar jets of a Newtonian liquid. Glycerol-water mixtures with viscosities between 4 and 30 mPa s were used to investigate the effects of viscosity and jet velocity. The jets were ejected from parallel cylindrical nozzles with an internal diameter of 0.85 mm. Collision of the jets resulted in various regimes of behavior which depe

Computational MechanicsEngineering
14
Article|48 citations·2019
Low-Temperature Solution-Processed Soluble Polyimide Gate Dielectrics: From Molecular-Level Design to Electrically Stable and Flexible Organic Transistors
Hyunjin Park, Sungmi Yoo, Hyungju Ahn, Joohee Bang, Yuri Jeong, Mihye Yi, Jong Chan Won, Sungjune Jung, Yun Ho Kim
SJR Q1ACS Applied Materials & Interfaces

Aromatic soluble polyimides (PIs) have been widely used in organic field-effect transistors (OFETs) as gate dielectric layers due to their promising features such as outstanding chemical resistance, thermal stability, low-temperature processability, and mechanical flexibility. However, the molecular structures of soluble PIs on the electrical characteristics of OFETs are not yet fully understood. In this work, the material, dielectric, and electrical properties are evaluated to systematically in

Polymers and PlasticsMaterials Science
15
Article|48 citations·2023
Monolithically printed all-organic flexible photosensor active matrix
Luis Arturo Ruiz‐Preciado, Sanghoon Baek, Noah Strobel, Kai Xia, Mervin Seiberlich, Sung‐Min Park, Uli Lemmer, Sungjune Jung, Gerardo Hernandez‐Sosa
SJR Q1npj Flexible ElectronicsOA

Abstract Upcoming technologies in the fields of flexible electronics require the cost-efficient fabrication of complex circuitry in a streamlined process. Digital printing techniques such as inkjet printing can enable such applications thanks to their inherent freedom of design permitting the mask-free deposition of multilayer optoelectronic devices without the need for subtracting techniques. Here we present an active matrix sensor array comprised of 100 inkjet-printed organic thin film transis

Biomedical EngineeringEngineering

Research Areas

Electrical and Electronic EngineeringBiomedical EngineeringComputational MechanicsPolymers and PlasticsMaterials ChemistryPulmonary and Respiratory Medicine

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