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Kyung Hyun Choi

Researcher at Jeju National University

Publications -  285
Citations -  5452

Kyung Hyun Choi is an academic researcher from Jeju National University. The author has contributed to research in topics: Thin film & PEDOT:PSS. The author has an hindex of 32, co-authored 270 publications receiving 4132 citations. Previous affiliations of Kyung Hyun Choi include KAIST & Pusan National University.

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3D printing for soft robotics - a review.

TL;DR: The development of key 3D printing technologies and new materials along with composites for soft robotic applications is investigated and a brief summary of 3D-printed soft devices suitable for medical to industrial applications is included.
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Fabrication of 3D Biocompatible/Biodegradable Micro-Scaffolds Using Dynamic Mask Projection Microstereolithography

TL;DR: In this article, a Digital Micromirror Device (DMD) was used for dynamic pattern generation and an ultraviolet (UV) lamp filtered at 365nm for crosslinking the photoreactive polymer solution.
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Resistive Switching in All-Printed, Flexible and Hybrid MoS 2 -PVA Nanocomposite based Memristive Device Fabricated by Reverse Offset.

TL;DR: The fabrication of a memory device with the configuration of PET/Ag/MoS2-PVA/Ag via an all printed, hybrid, and state of the art fabrication approach displayed characteristic bistable, nonvolatile and rewritable resistive switching behavior at a low operating voltage.
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Determination of fabricating orientation and packing in SLS process

TL;DR: In this paper, an orientation and packing of multiple parts in selective laser sintering (SLS) processing is considered to maximize the utilization of space in the build vat and reduce build time.
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Fabrication of TiO2 thin film memristor device using electrohydrodynamic inkjet printing

TL;DR: In this paper, the authors reported the fabrication of memristor device (Ag/TiO 2 /Cu) using electrohydrodynamic inkjet printing technology, where the metal electrodes were patterned by using EHDD printing technique and the crystalline nature, surface morphology and optical properties of as deposited TiO 2 films were characterized using X-ray diffraction, scanning electron microscope (SEM) and UV-visible spectroscopic analysis respectively.