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Joo-Kang Kang

Ulsan National Institute of Science and Technology · Engineering

About the Lab

Professor Joo-Kang Kang's research lab specializes in microfluidic and micromagnetic systems for biomedical applications, with a focus on the isolation and culture of circulating tumor cells and the purification of nanomaterials such as single-walled carbon nanotubes. The lab integrates advanced materials science, including organic semiconductors like pentacene, with microfabrication techniques to develop high-performance devices for diagnostics and drug testing. Key research directions include the design of functional microfluidic platforms with enhanced performance through computational modeling and innovative magnetic architectures.

microfluidicsnanomaterial purificationcancer diagnosticsorganic semiconductorsmagnetic separation

Research Overview

Papers
114
Total Citations
2,288
Papers (5y)
45
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
45total
2022
2023
2024
2025
2026
Citations per year (5y)
202total
20222023202420252026

Selected Papers

15
1
Article|310 citations·2014
An extracorporeal blood-cleansing device for sepsis therapy
Joo H. Kang, Michael Super, Chong Wing Yung, Ryan M. Cooper, Karel Domanský, Amanda Graveline, Tadanori Mammoto, Julia Hicks‐Berthet, Heather Tobin, Mark Cartwright, Alexander L. Watters, Martin Rottman
SJR Q1Nature Medicine
Biomedical EngineeringEngineering
2
Article|275 citations·2012
A combined micromagnetic-microfluidic device for rapid capture and culture of rare circulating tumor cells
Joo H. Kang, Silva Krause, Heather Tobin, Akiko Mammoto, Mathumai Kanapathipillai, Donald E. Ingber
SJR Q1Lab on a Chip

Here we describe a combined microfluidic-micromagnetic cell separation device that has been developed to isolate, detect and culture circulating tumor cells (CTCs) from whole blood, and demonstrate its utility using blood from mammary cancer-bearing mice. The device was fabricated from polydimethylsiloxane and contains a microfluidic architecture with a main channel and redundant 'double collection' channel lined by two rows of dead-end side chambers for tumor cell collection. The microdevice de

Biomedical EngineeringEngineering
3
Article|148 citations·2005
Shallow trap states in pentacene thin films from molecular sliding
Joo H. Kang, Demétrio A. da Silva Filho, Jean‐Luc Brédas, Xiaolu Zhu
SJR Q1Applied Physics Letters

Petacene is one of the most promising organic semiconductors for thin-film transistors. Transport measurements in the past have established the presence of shallow traps but their origins have remained a mystery. Here we show that shallow traps in vapor-deposited crystalline pentacene thin films are due to local defects resulting from the sliding of pentacene molecules along their long molecular axis, while two-dimensional crystalline packing is maintained. Electronic structural calculation conf

Electrical and Electronic EngineeringEngineering
4
Article|117 citations·2003
Pi-stacked pentacene thin films grown on Au(111)
Joo H. Kang, Xiaolu Zhu
SJR Q1Applied Physics Letters

Scanning tunneling microscopy with high impedance has been used to image the growth of pentacene thin films on Au(111). Instead of the herringbone structure in bulk solid, pentacene molecules in these thin films form a cofacial, π-stacked crystalline phase with their molecular planes parallel to the surface. The growth of this crystalline phase is attributed to the formation of a close-packed, crystalline monolayer which seeds the growth of the π-stacked multilayer film.

Electrical and Electronic EngineeringEngineering
5
Article|93 citations·2007
Analysis of pressure-driven air bubble elimination in a microfluidic device
Joo H. Kang, Yu Chang Kim, Je‐Kyun Park
SJR Q1Lab on a Chip

We report an analysis of pressure-driven bubble elimination for a gas-permeable microfluidic device. In this study, we described bubble elimination in a microfluidic device employing a gas permeation model and calculated the removal efficiency of bubbles. The correction factor for the simplified model was estimated with respect to the applied pressure. Based on the established model, the required time to remove a trapped bubble with a certain area was shown to be within an error of 11.58% by com

Biomedical EngineeringEngineering
6
Article|77 citations·2019
Robust chemical bonding of PMMA microfluidic devices to porous PETE membranes for reliable cytotoxicity testing of drugs
Thao Thi Phuong Nguyen, Su Hyun Jung, Min Seok Lee, Tae‐Eun Park, Suk‐kyun Ahn, Joo H. Kang
SJR Q1Lab on a Chip

) was robust enough to flow culture medium through the device without leakage even at a gauge pressure of above 135 kPa. For validation of its utility in drugs testing, we successfully demonstrated that human lung adenocarcinoma cells cultured in the PMMA devices show more reliable cytotoxicity results for vincristine in comparison to conventional polydimethylsiloxane (PDMS) devices due to the inherent property of PMMA of it being impervious to small molecules. Given that the current organ-on-a-

Biomedical EngineeringEngineering
7
Article|53 citations·2007
Magnetophoretic Continuous Purification of Single‐Walled Carbon Nanotubes from Catalytic Impurities in a Microfluidic Device
Joo H. Kang, Je‐Kyun Park
SJR Q1Small

A magnetophoretic continuous purification method is presented of single-walled carbon nanotubes (SWCNTs) from the superparamagnetic iron-catalyst impurities in a microfluidic device without any influence on inherent SWCNT properties. By employing microfluidics and a magnetic-field-induced saw-tooth nickel microstructure, a highly enhanced magnetic force in adjoining microchannels is exploited. The iron impurities of SWCNTs are attracted towards areas of higher magnetic-flux density in the microc

Biomedical EngineeringEngineering
8
Article|46 citations·2006
Layer-by-Layer Growth of Incommensurate, Polycrystalline, Lying-Down Pentacene Thin Films on Au(111)
Joo H. Kang, Xiaolu Zhu
SJR Q1Chemistry of Materials

Pentacene, as well as other polyacenes, is known to adsorb on metal surfaces in a lying-down geometry, that is, with the molecular plane parallel to the surface. Here we show using scanning tunneling microscopy that the lying-down pentacene monolayer seeds the growth of a multilayer polycrystalline film in a layer-by-layer fashion, with the molecular planes parallel to the substrate surface. Growth in the submonolayer region is characterized by a large number of ordered molecular structures as c

Electrical and Electronic EngineeringEngineering
9
Article|44 citations·2018
Magnetic activated cell sorting (MACS) pipette tip for immunomagnetic bacteria separation
Sein Oh, Su Hyun Jung, Hyekyung Seo, Mun-Kyeong Min, Byeongyeon Kim, Young Ki Hahn, Joo H. Kang, Sungyoung Choi
SJR Q1Sensors and Actuators B ChemicalOA
Biomedical EngineeringEngineering
10
Article|42 citations·2015
Optimization of Pathogen Capture in Flowing Fluids with Magnetic Nanoparticles
Joo H. Kang, Eujin Um, Alexander J. Diaz, Harry Driscoll, Melissa Rodas, Karel Domanský, Alexander L. Watters, Michael Super, Howard A. Stone, Donald E. Ingber
SJR Q1Small

Magnetic nanoparticles have been employed to capture pathogens for many biological applications; however, optimal particle sizes have been determined empirically in specific capturing protocols. Here, a theoretical model that simulates capture of bacteria is described and used to calculate bacterial collision frequencies and magnetophoretic properties for a range of particle sizes. The model predicts that particles with a diameter of 460 nm should produce optimal separation of bacteria in buffer

EndocrinologyBiochemistry, Genetics and Molecular Biology
11
Article|39 citations·2007
Isomagnetophoresis to Discriminate Subtle Difference in Magnetic Susceptibility
Joo H. Kang, Sungyoung Choi, Wonhye Lee, Je‐Kyun Park
SJR Q1Journal of the American Chemical Society

We report an improved magnetophoretic method, isomagnetophoresis, employing the magnetic susceptibility gradient across a microfluidic channel applied by magnetic field, and we have successfully discriminated the polystyrene (PS; 14.78 ± 0.20 μm in diameter), poly(methyl methacrylate) (PMMA; 15.00 ± 0.77 μm) and borosilicate (BS; 14.01 ± 1.00 μm) microspheres, where PS and PMMA particles have similar diamagnetic susceptibility that cannot be distinguished by conventional magnetophoresis. This pl

Biomedical EngineeringEngineering
12
Article|37 citations·2018
Advection Flows‐Enhanced Magnetic Separation for High‐Throughput Bacteria Separation from Undiluted Whole Blood
Su Hyun Jung, Young Ki Hahn, Sein Oh, Seyong Kwon, Eujin Um, Sungyoung Choi, Joo H. Kang
SJR Q1Small

Abstract A major challenge to scale up a microfluidic magnetic separator for extracorporeal blood cleansing applications is to overcome low magnetic drag velocity caused by viscous blood components interfering with magnetophoresis. Therefore, there is an unmet need to develop an effective method to position magnetic particles to the area of augmented magnetic flux density gradients while retaining clinically applicable throughput. Here, a magnetophoretic cell separation device, integrated with s

Biomedical EngineeringEngineering
13
Article|30 citations·2009
Fabrication of a poly(dimethylsiloxane) membrane with well-defined through-holes for three-dimensional microfluidic networks
Joo H. Kang, Eujin Um, Je‐Kyun Park
SJR Q2Journal of Micromechanics and Microengineering

We report a simple method for the fabrication of a poly(dimethylsiloxane) (PDMS) membrane with through-holes by blowing a residual prepolymer away from a photoresist (PR)-patterned Si wafer. The fabrication method for the perforated polymer membrane is crucial to achieve both complicated three-dimensional microfluidic devices and polymer sieve sheets. This method has several advantages over the previous methods in that we can repeatedly make the well-defined holes on the PDMS membranes even if t

Biomedical EngineeringEngineering
14
Article|29 citations·2001
The timing and characterization of p53 mutations in progression from atypical ductal hyperplasia to invasive lesions in the breast cancer
Joo H. Kang, Sun Jung Kim, Dong‐Young Noh, Kuk Jin Choe, Eun Young Lee, Han-Sung Kang
SJR Q1Journal of Molecular Medicine
OncologyMedicine
15
Article|27 citations·2016
Application of a Halbach magnetic array for long-range cell and particle separations in biological samples
Joo H. Kang, Harry Driscoll, Michael Super, Donald E. Ingber
SJR Q1Applied Physics Letters

Here, we describe a versatile application of a planar Halbach permanent magnet array for an efficient long-range magnetic separation of living cells and microparticles over distances up to 30 mm. A Halbach array was constructed from rectangular bar magnets using 3D-printed holders and compared to a conventional alternating array of identical magnets. We theoretically predicted the superiority of the Halbach array for a long-range magnetic separation and then experimentally validated that the Hal

Biomedical EngineeringEngineering

Research Areas

Biomedical EngineeringMolecular BiologyElectrical and Electronic EngineeringClinical BiochemistrySurgeryOcean Engineering

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