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Dae-Hwan Kang

Pohang University of Science and Technology · 医学

研究室紹介

Professor Dae-Hwan Kang's research lab specializes in advanced functional materials and nanoscale devices, with a primary focus on phase change memory (PCM) technologies for next-generation non-volatile memory applications. The lab investigates fundamental thermal and electrical behaviors in PCM devices, including heat confinement, resistance fluctuations, and low-power operation through innovative electrode and barrier layer engineering (e.g., TiN, TiON). Additionally, the lab explores bio-inspired computing using PCM cells for neuromorphic applications and develops stimuli-responsive nanocarriers for targeted cancer therapy, particularly in drug-resistant cancers. The integration of materials science, device physics, and biomedical engineering defines the lab’s multidisciplinary approach.

phase change memorynanomaterialsneuromorphic computingdrug deliverystimuli-responsive nanoparticles

Research Overview

Papers
114
Total Citations
979
Papers (5y)
10
Primary Field
医学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
10total
2020
2021
2022
2023
2025
Citations per year (5y)
37total
20202021202220232025

Selected Papers

15
1
Article|148 citations·2003
One-dimensional heat conduction model for an electrical phase change random access memory device with an 8F2 memory cell (F=0.15 μm)
Dae-Hwan Kang, Dong-Ho Ahn, Ki‐Bum Kim, J. F. Webb, Kyung‐Woo Yi
SJR Q2Journal of Applied Physics

A one-dimensional heat conduction model is developed for a phase change random access memory device with an 8F2 memory cell structure (F=0.15 μm). The required current level for a reset operation, which corresponds to the phase switching from a crystalline (“1” state) to an amorphous phase (“0” state) of Ge2Sb2Te5, was investigated by calculating one-dimensional temperature profiles for the memory cell structure. It is revealed that a reset operation is not achieved at the current level (2 mA) r

Materials ChemistryMaterials Science
2
Article|51 citations·2006
An experimental investigation on the switching reliability of a phase change memory device with an oxidized TiN electrode
Dae-Hwan Kang, In Ho Kim, Jeung-hyun Jeong, Byung‐ki Cheong, Dong-Ho Ahn, Dongbok Lee, Hyun-Mi Kim, Ki‐Bum Kim, Soo‐Hyun Kim
SJR Q2Journal of Applied Physics

Fluctuations (or drifts) in switching voltages such as programming set/reset voltages and threshold voltage pose serious obstacles to the reliable operation of electrical phase change memory devices. Using a phase change memory device having a GeSb2Te4 phase change material and TiN electrode, these fluctuations are demonstrated to result from device resistances varying with programming cycles. Fluctuating resistances appear to stem primarily from large contact resistances at the interface betwee

Materials ChemistryMaterials Science
3
Article|39 citations·2009
The role of hedgehog signaling during gastric regeneration
Dae-Hwan Kang, Myoung‐Eun Han, Moo-Ho Song, Young-Suk Lee, Eunhee Kim, Hyun‐Jung Kim, Gwang-Ha Kim, Dong‐Heon Kim, Sik Yoon, Sun‐Yong Baek, Bong-Seon Kim, Jae-Bong Kim
SJR Q1Journal of Gastroenterology
Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
Article|37 citations·2004
Lower Voltage Operation of a Phase Change Memory Device with a Highly Resistive TiON Layer
Dae-Hwan Kang, Dong-Ho Ahn, Min-Ho Kwon, Hyuk-Soon Kwon, Ki‐Bum Kim, Kyeong-Seok Lee, Byung‐ki Cheong
SJR Q3Japanese Journal of Applied Physics

The electrical switching behaviors of an offset-type phase change memory device with a highly resistive TiON layer were investigated, where the TiON layer (7 nm thick) was formed at a 70 nm wide contact between Ge 1 Sb 2 Te 4 and TiN layers. Reversible transitions between crystalline (set) and amorphous (reset) phases were found to occur at relatively lower reset and set voltages, as compared with a device having no TiON layer. These results hold a high promise for a low-power operation of a pha

Materials ChemistryMaterials Science
5
Article|24 citations·2007
Endoscopic Sphincterotomy Plus Large Balloon Dilation Versus Endoscopic Sphincterotomy for Removal of Bile Duct Stones
Dae-Hwan Kang, Jeung-Ho Heo, Sun-M.I. Lee, Gwang-H.A. Kim, Tae-Oh Kim, Jeung Ho Heo, Geun-Am Song, Mong Cho
SJR Q1Gastrointestinal Endoscopy
Pulmonary and Respiratory MedicineMedicine
6
Article|23 citations·2015
Emulation of spike-timing dependent plasticity in nano-scale phase change memory
Dae-Hwan Kang, Hyun-Goo Jun, Kyung‐Chang Ryoo, Hongsik Jeong, Hyunchul Sohn
SJR Q1NeurocomputingOA

The spike-timing dependent plasticity (STDP) of biological synapses, which is known to be a function of the formulated Hebbian learning rule of human cognition, learning and memory abilities, was emulated with two-phase change memory (2-PCM) cells built with 39 nm technology. For this, we designed a novel time-modulated voltage (TMV) scheme for changing the conductance of 2-PCM cells, that could produce both long-term potentiation (LTP) and long-term depression (LTD) by applying variable (decrea

Electrical and Electronic EngineeringEngineering
7
Article|15 citations·2004
Ion energy distribution change at the transition of power-coupling modes in an immersed-coil-type inductively coupled Ar discharge
Dae-Hwan Kang, Dong-Kak Lee, Ki‐Bum Kim, Jung-Joong Lee, Junghoon Joo
SJR Q1Applied Physics Letters

The power-coupling mode was changed from a capacitively coupled (E-mode) to an inductively coupled (H-mode) with an increase of rf input power in an immersed-coil-type inductively coupled Ar discharge at 1 mTorr. It was identified that the bimodal-shaped ion energy distribution (IED) of the capacitively coupled discharge was dominant below 100 W (E-mode), while the single peak due to the inductively coupled discharge became dominant above 250 W (H-mode). In addition, it was possible to quantitat

Electrical and Electronic EngineeringEngineering
8
Article|14 citations·2022
pH and Redox-Dual Sensitive Chitosan Nanoparticles Having Methyl Ester and Disulfide Linkages for Drug Targeting against Cholangiocarcinoma Cells
Ju-Il Yang, Hye Lim Lee, Je-Jung Yun, Jungsoo Kim, Kyoung-Ha So, Young‐Il Jeong, Dae-Hwan Kang
SJR Q2MaterialsOA

The aim of this study is to prepare pH- and redox-sensitive nanoparticles for doxorubicin (DOX) delivery against DOX-resistant HuCC-T1 human cholangiocarcinoma (CCA) cells. For this purpose, L-histidine methyl ester (HIS) was attached to chitosan oligosaccharide (COS) via dithiodipropionic acid (abbreviated as ChitoHISss). DOX-incorporated nanoparticles of ChitoHISss conjugates were fabricated by a dialysis procedure. DOX-resistant HuCC-T1 cells were prepared by repetitive exposure of HuCC-T1 ce

SurgeryMedicine
9
Article|10 citations·2012
Understanding on the current-induced crystallization process and faster set write operation thereof in non-volatile phase change memory
Dae-Hwan Kang, Nan Young Kim, Hongsik Jeong, Byung‐ki Cheong
SJR Q1Applied Physics Letters

We experimentally demonstrate that the crystallization process of Ge-Sb-Te crystallites during the set operation in non-volatile phase change memory commences after threshold switching event. It is also shown that the nucleation and growth rates have opposite behaviors with the increase of set operation power: the incubation time in nucleation stage can be minimized at higher power, whereas the percolation time in growth stage is smaller at lower power. Based on these results, we introduce a two

Materials ChemistryMaterials Science
10
Article|10 citations·1998
Evaluation of the ion bombardment energy for growing diamondlike carbon films in an electron cyclotron resonance plasma enhanced chemical vapor deposition
Dae-Hwan Kang, Seung-Chul Ha, Ki‐Bum Kim, Seok‐Hong Min
SJR Q2Journal of Vacuum Science & Technology A Vacuum Surfaces and FilmsOA

The amorphous hydrogenated carbon (a-C:H) films were deposited on (100) silicon substrates using a divergent Ar+CH4 electron cyclotron resonance plasma. During the deposition sequence, the rf bias was applied to the substrate to increase the ion bombardment energy. The results of the microhardness test and the Raman spectroscopy revealed that these films showed abrupt changes in the mechanical properties and in the bonding characteristics from polymerlike to diamondlike when the rf substrate bia

Materials ChemistryMaterials Science
11
Article|7 citations·1999
Investigation of thickness effects on AlN coated metal tips by in situ I–V measurement
Dae-Hwan Kang, V.V. Zhirnov, G. J. Wojak, Edward A. Preble, Wonbong Choi, J. J. Hren, J. J. Cuomo
Journal of Vacuum Science & Technology B Microelectronics and Nanometer Structures Processing Measurement and Phenomena

The effects of the aluminum nitride coating thickness on molybdenum emitter tips were investigated by an in situ I–V measurement technique inside a typical magnetron sputtering system. AlN was deposited on Mo tips using a dc-modulated 1 kW power source at 200 °C. Each I/V measurement was carried out immediately following a 15 s AlN deposition. Significantly improved field emission was observed as well as a strong emission thickness dependence, which we attribute to the influence of space charge.

Condensed Matter PhysicsPhysics and Astronomy
12
Article|7 citations·2013
Is high-dose nafamostat mesilate effective for the prevention of post-ERCP pancreatitis, especially in high-risk patients?
Dae-Hwan Kang, Cheol Woong Choi, S.B. Park, H.W. Kim, J.H. Park, M.D. Kim
SJR Q1Pancreatology
Pulmonary and Respiratory MedicineMedicine
13
Article|6 citations·2013
Synthesis of Dextran/Methoxy Poly(ethylene glycol) Block Copolymer
Young‐Il Jeong, Dong-Gon Kim, Dae-Hwan Kang
SJR Q2Journal of ChemistryOA

We synthesized a block copolymer composed of dextran and methoxy poly(ethylene glycol) (mPEG). To accomplish this, the end group of dextran was modified by reductive amination. The aminated dextran (Dextran‐NH 2 ) showed the intrinsic peaks of both dextran at 3~5.5 ppm and hexamethylene diamine at 1~2.6 ppm at 1 H nuclear magnetic resonance (NMR) spectrum. The amino end group of dextran was conjugated with mPEG to make the block copolymer consisting of dextran/mPEG (abbreviated as DexPEG). The s

Organic ChemistryChemistry
14
Article|3 citations·1999
Surface Treatment Effects on the Electron Emission Characteristics of Ultra Thin AIN Coated Molybdenum Tips
Dae-Hwan Kang, V.V. Zhirnov, G. J. Wojak, R. C. Sanwald, M. Park, J. J. Hren, J. J. Cuomo
MRS Proceedings
Materials ChemistryMaterials Science
15
Article|3 citations·2021
Reactive Oxygen Species-Sensitive Nanophotosensitizers of Methoxy Poly(ethylene glycol)-Chlorin e6/Phenyl Boronic Acid Pinacol Ester Conjugates Having Diselenide Linkages for Photodynamic Therapy of Cervical Cancer Cells
Ju-Il Yang, Hye-Lim Lee, Seon-Hee Choi, Jungsoo Kim, Young-Beob Yu, Young‐Il Jeong, Dae-Hwan Kang
SJR Q2MaterialsOA

The aim of this study is to fabricate nanophotosensitizers composed of methoxy poly(ethylene glycol) (mPEG), chlorin e6 (Ce6), and phenylboronic acid pinacol ester (PBAP) with diselenide linkages for reactive oxygen species (ROS)-sensitive photodynamic therapy (PDT) of cervical cancer cells. To fabricate nanophotosensitizers, Ce6 was conjugated with mPEG via selenocystamine linkage and then remaining carboxylic acid groups of Ce6 was attached to PBAP (mPEGseseCe6PBAP conjugates). Nanophotosensit

Biomedical EngineeringEngineering

Research Areas

SurgeryMaterials ChemistryElectrical and Electronic EngineeringPulmonary and Respiratory MedicineGastroenterologyCondensed Matter Physics

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