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Heungjoo Shin

Ulsan National Institute of Science and Technology · Engineering

About the Lab

Professor Heungjoo Shin's research lab specializes in advanced micro- and nanofabrication technologies for next-generation biosensors and lab-on-a-chip devices. The lab focuses on developing low-cost, wafer-scale fabrication methods using carbon microelectromechanical systems (C-MEMS) and nanostructured materials such as gold nanoparticles and hierarchical porous carbon to enable highly sensitive, selective, and miniaturized electrochemical sensors. Key research directions include the integration of nanomaterials with microelectromechanical systems for real-time, ultralow-power sensing applications in environmental monitoring, biomedical diagnostics, and electronic noses.

C-MEMSelectrochemical sensorsnanomaterialslab-on-a-chipbiosensors

Research Overview

Papers
105
Total Citations
1,229
Papers (5y)
18
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
18total
2022
2023
2024
2025
2026
Citations per year (5y)
113total
20222023202420252026

Selected Papers

15
1
Article|67 citations·2017
Development of a Sensitive Electrochemical Enzymatic Reaction-Based Cholesterol Biosensor Using Nano-Sized Carbon Interdigitated Electrodes Decorated with Gold Nanoparticles
Deepti Sharma, Jong‐Min Lee, Junyoung Seo, Heungjoo Shin
SJR Q1SensorsOA

We developed a versatile and highly sensitive biosensor platform. The platform is based on electrochemical-enzymatic redox cycling induced by selective enzyme immobilization on nano-sized carbon interdigitated electrodes (IDEs) decorated with gold nanoparticles (AuNPs). Without resorting to sophisticated nanofabrication technologies, we used batch wafer-level carbon microelectromechanical systems (C-MEMS) processes to fabricate 3D carbon IDEs reproducibly, simply, and cost effectively. In additi

Electrical and Electronic EngineeringEngineering
2
Article|56 citations·2013
Monolithic carbon structures including suspended single nanowires and nanomeshes as a sensor platform
Yeongjin Lim, Jeong-Il Heo, Marc Madou, Heungjoo Shin
SJR Q1Nanoscale Research LettersOA

With the development of nanomaterial-based nanodevices, it became inevitable to develop cost-effective and simple nanofabrication technologies enabling the formation of nanomaterial assembly in a controllable manner. Herein, we present suspended monolithic carbon single nanowires and nanomeshes bridging two bulk carbon posts, fabricated in a designed manner using two successive UV exposure steps and a single pyrolysis step. The pyrolysis step is accompanied with a significant volume reduction, r

Materials ChemistryMaterials Science
3
Article|48 citations·2015
Highly sensitive hydrogen gas sensor based on a suspended palladium/carbon nanowire fabricated via batch microfabrication processes
Yeongjin Lim, Yun-Jeong Lee, Jeong-Il Heo, Heungjoo Shin
SJR Q1Sensors and Actuators B Chemical
Electrical and Electronic EngineeringEngineering
4
Article|44 citations·2007
Batch Fabrication of Atomic Force Microscopy Probes with Recessed Integrated Ring Microelectrodes at a Wafer Level
Heungjoo Shin, Peter J. Hesketh, Boris Mizaikoff, Christine Kranz
SJR Q1Analytical Chemistry

A batch fabrication process at the wafer-level integrating ring microelectrodes into atomic force microscopy (AFM) tips is presented. The fabrication process results in bifunctional scanning probes combining atomic force microscopy with scanning electrochemical microscopy (AFM-SECM) with a ring microelectrode integrated at a defined distance above the apex of the AFM tip. Silicon carbide is used as AFM tip material, resulting in reduced mechanical tip wear for extended usage. The presented appro

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
5
Article|43 citations·2017
Self-heating hydrogen gas sensor based on an array of single suspended carbon nanowires functionalized with palladium nanoparticles
Junyoung Seo, Yeongjin Lim, Heungjoo Shin
SJR Q1Sensors and Actuators B ChemicalOA
Electrical and Electronic EngineeringEngineering
6
Review|39 citations·2016
Unconventional micro-/nanofabrication technologies for hybrid-scale lab-on-a-chip
Dogyeong Ha, Jisoo Hong, Heungjoo Shin, Taesung Kim
SJR Q1Lab on a Chip

Micro-/nanofabrication-based lab-on-a-chip (LOC) technologies have recently been substantially advanced and have become widely used in various inter-/multidisciplinary research fields, including biological, (bio-)chemical, and biomedical fields. However, such hybrid-scale LOC devices are typically fabricated using microfabrication and nanofabrication processes in series, resulting in increased cost and time and low throughput issues. In this review, after briefly introducing the conventional mic

Biomedical EngineeringEngineering
7
Article|39 citations·2017
Increase in graphitization and electrical conductivity of glassy carbon nanowires by rapid thermal annealing
Yeongjin Lim, Jae Hwan Chu, Do Hee Lee, Soon‐Yong Kwon, Heungjoo Shin
SJR Q1Journal of Alloys and CompoundsOA
Materials ChemistryMaterials Science
8
Article|37 citations·2015
Glucose sensor based on redox-cycling between selectively modified and unmodified combs of carbon interdigitated array nanoelectrodes
Deepti Sharma, Yeongjin Lim, Yun-Jeong Lee, Heungjoo Shin
SJR Q1Analytica Chimica Acta
Electrical and Electronic EngineeringEngineering
9
Article|36 citations·2024
Ultralow-Power Single-Sensor-Based E-Nose System Powered by Duty Cycling and Deep Learning for Real-Time Gas Identification
Taejung Kim, Yonggi Kim, Wootaek Cho, Jong-Hyun Kwak, Jeonghoon Cho, Youjang Pyeon, Jae Joon Kim, Heungjoo Shin
SJR Q1ACS Sensors

This study presents a novel, ultralow-power single-sensor-based electronic nose (e-nose) system for real-time gas identification, distinguishing itself from conventional sensor-array-based e-nose systems, whose power consumption and cost increase with the number of sensors. Our system employs a single metal oxide semiconductor (MOS) sensor built on a suspended 1D nanoheater, driven by duty cycling─characterized by repeated pulsed power inputs. The sensor's ultrafast thermal response, enabled by

Electrical and Electronic EngineeringEngineering
10
Article|35 citations·2018
An electrochemical immunosensor based on a 3D carbon system consisting of a suspended mesh and substrate-bound interdigitated array nanoelectrodes for sensitive cardiac biomarker detection
Deepti Sharma, Jong‐Min Lee, Heungjoo Shin
SJR Q1Biosensors and Bioelectronics
Electrical and Electronic EngineeringEngineering
11
Article|32 citations·2017
Effects of hole patterns on surface temperature distributions in pool boiling
Seok Bin Seo, Yeongjin Lim, Heungjoo Shin, In Cheol Bang
SJR Q1International Journal of Heat and Mass TransferOA
Mechanical EngineeringEngineering
12
Article|28 citations·2021
Hierarchical Porous Carbon Electrodes with Sponge-Like Edge Structures for the Sensitive Electrochemical Detection of Heavy Metals
Jong‐Min Lee, Soosung Kim, Heungjoo Shin
SJR Q1SensorsOA

This article presents the development of a highly sensitive electrochemical heavy metal sensor based on hierarchical porous carbon electrodes with sponge-like edge structures. Micrometer-scale hierarchical nanoporous carbon electrodes were fabricated at a wafer-scale using cost-effective batch microfabrication technologies, including the carbon microelectromechanical systems technology and oxygen plasma etching. The sponge-like hierarchical porous structure and sub-micrometer edges of the nanopo

ElectrochemistryChemistry
13
Article|28 citations·2008
Development of wafer-level batch fabrication for combined atomic force–scanning electrochemical microscopy (AFM–SECM) probes
Heungjoo Shin, Peter J. Hesketh, Boris Mizaikoff, Christine Kranz
SJR Q1Sensors and Actuators B Chemical
ElectrochemistryChemistry
14
Article|28 citations·2013
The effect of channel height and electrode aspect ratio on redox cycling at carbon interdigitated array nanoelectrodes confined in a microchannel
Jeong-Il Heo, Yeongjin Lim, Heungjoo Shin
SJR Q2The Analyst

Redox cycling is a commonly used electrochemical sensing scheme for enhancing faradaic current signals. This effect can be improved by either optimizing electrode geometries or restricting electrochemical reactions within a limited volume. Here, we demonstrate a simple batch fabrication of 1 : 1 aspect ratio carbon interdigitated array nanoelectrodes integrated in a polydimethylsiloxane microchannel that enables current amplification by up to 1116 times. We also examine the factors that influenc

ElectrochemistryChemistry
15
Article|28 citations·2013
Fabrication and application of a stacked carbon electrode set including a suspended mesh made of nanowires and a substrate-bound planar electrode toward for an electrochemical/biosensor platform
Yeongjin Lim, Jeong-Il Heo, Heungjoo Shin
SJR Q1Sensors and Actuators B Chemical
Electrical and Electronic EngineeringEngineering

Research Areas

Electrical and Electronic EngineeringElectrochemistryBiomedical EngineeringMaterials ChemistryBioengineeringAtomic and Molecular Physics, and Optics

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