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Park Hea-Lim
Park Hea-Lim
seoultech.ac.kr의 이메일 확인됨
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Flexible neuromorphic electronics for computing, soft robotics, and neuroprosthetics
HL Park, Y Lee, N Kim, DG Seo, GT Go, TW Lee
Advanced Materials 32 (15), 1903558, 2020
3532020
Retina‐inspired carbon nitride‐based photonic synapses for selective detection of UV light
HL Park, H Kim, D Lim, H Zhou, YH Kim, Y Lee, S Park, TW Lee
Advanced Materials 32 (11), 1906899, 2020
2592020
Versatile neuromorphic electronics by modulating synaptic decay of single organic synaptic transistor: From artificial neural networks to neuro-prosthetics
DG Seo, Y Lee, GT Go, M Pei, S Jung, YH Jeong, W Lee, HL Park, ...
Nano Energy 65, 104035, 2019
1252019
Organic electronic synapses with low energy consumption
Y Lee, HL Park, Y Kim, TW Lee
Joule 5 (4), 794-810, 2021
892021
Reliable organic memristors for neuromorphic computing by predefining a localized ion-migration path in crosslinkable polymer
HL Park, MH Kim, MH Kim, SH Lee
Nanoscale 12 (44), 22502-22510, 2020
742020
Organic and perovskite memristors for neuromorphic computing
HL Park, TW Lee
Organic Electronics 98, 106301, 2021
642021
Interfacial triggering of conductive filament growth in organic flexible memristor for high reliability and uniformity
SH Lee, HL Park, MH Kim, S Kang, SD Lee
ACS applied materials & interfaces 11 (33), 30108-30115, 2019
602019
Fluoropolymer-based organic memristor with multifunctionality for flexible neural network system
MH Kim, HL Park, MH Kim, J Jang, JH Bae, IM Kang, SH Lee
npj Flexible Electronics 5 (1), 34, 2021
432021
Organic flexible memristor with reduced operating voltage and high stability by interfacial control of conductive filament growth
SH Lee, HL Park, CM Keum, IH Lee, MH Kim, SD Lee
physica status solidi (RRL)–Rapid Research Letters 13 (6), 1900044, 2019
402019
Introduction of interfacial load polymeric layer to organic flexible memristor for regulating conductive filament growth
HL Park, MH Kim, SH Lee
Advanced Electronic Materials 6 (10), 2000582, 2020
342020
Control of conductive filament growth in flexible organic memristor by polymer alignment
HL Park, MH Kim, SH Lee
Organic Electronics 87, 105927, 2020
332020
Vertical organic light-emitting transistor showing a high current on/off ratio through dielectric encapsulation for the effective charge pathway
G Lee, IH Lee, HL Park, SH Lee, J Han, C Lee, CM Keum, SD Lee
Journal of Applied Physics 121 (2), 2017
312017
Organic synaptic transistors for bio‐hybrid neuromorphic electronics
KN Kim, MJ Sung, HL Park, TW Lee
Advanced Electronic Materials 8 (1), 2100935, 2022
302022
Effect of morphological and physicochemical properties of dielectric-organic semiconductor interfaces on photoresponse of organic phototransistors
HL Park, IH Lee, CM Keum, SH Lee, SD Lee
Thin Solid Films 619, 297-301, 2016
242016
Self‐Selective Organic Memristor by Engineered Conductive Nanofilament Diffusion for Realization of Practical Neuromorphic System
HL Park, MH Kim, H Kim, SH Lee
Advanced Electronic Materials 7 (8), 2100299, 2021
222021
Raman spectrum in monoclinic BiVO4
MS Jang, HL Park, JN Kim, JH Ro, YH Park
Japanese Journal of Applied Physics 24 (S2), 506, 1985
221985
Organic synaptic transistors for flexible and stretchable artificial sensory nerves
DG Seo, GT Go, HL Park, TW Lee
MRS Bulletin 46, 321-329, 2021
212021
Realization of biomimetic synaptic functions in a one-cell organic resistive switching device using the diffusive parameter of conductive filaments
SH Lee, HL Park, MH Kim, MH Kim, BG Park, SD Lee
ACS Applied Materials & Interfaces 12 (46), 51719-51728, 2020
202020
Biodegradable and flexible polymer‐based memristor possessing optimized synaptic plasticity for eco‐friendly wearable neural networks with high energy efficiency
S Oh, H Kim, SE Kim, MH Kim, HL Park, SH Lee
Advanced Intelligent Systems 5 (5), 2200272, 2023
172023
Organic memristor‐based flexible neural networks with bio‐realistic synaptic plasticity for complex combinatorial optimization
H Kim, M Kim, A Lee, HL Park, J Jang, JH Bae, IM Kang, ES Kim, SH Lee
Advanced Science 10 (19), 2300659, 2023
112023
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