Joon Hyung Shim
Joon Hyung Shim
Professor of Mechanical Engineering, Korea University
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Atomic layer deposition of yttria-stabilized zirconia for solid oxide fuel cells
JH Shim, CC Chao, H Huang, FB Prinz
Chemistry of materials 19 (15), 3850-3854, 2007
Solid oxide fuel cell with corrugated thin film electrolyte
PC Su, CC Chao, JH Shim, R Fasching, FB Prinz
Nano letters 8 (8), 2289-2292, 2008
Demonstrating the potential of yttrium-doped barium zirconate electrolyte for high-performance fuel cells
K Bae, DY Jang, HJ Choi, D Kim, J Hong, BK Kim, JH Lee, JW Son, ...
Nature communications 8 (1), 14553, 2017
Intermediate-temperature ceramic fuel cells with thin film yttrium-doped barium zirconate electrolytes
JH Shim, JS Park, J An, TM Gür, S Kang, FB Prinz
Chemistry of Materials 21 (14), 3290-3296, 2009
Low-frequency noise in multilayer MoS 2 field-effect transistors: the effect of high-k passivation
J Na, MK Joo, M Shin, J Huh, JS Kim, M Piao, JE Jin, HK Jang, HJ Choi, ...
Nanoscale 6 (1), 433-441, 2014
Enhanced oxygen exchange and incorporation at surface grain boundaries on an oxide ion conductor
JH Shim, JS Park, TP Holme, K Crabb, W Lee, YB Kim, X Tian, TM Gür, ...
Acta Materialia 60 (1), 1-7, 2012
Atomic layer deposition of thin-film ceramic electrolytes for high-performance fuel cells
JH Shim, S Kang, SW Cha, W Lee, YB Kim, JS Park, TM Guer, FB Prinz, ...
Journal of Materials Chemistry A 1 (41), 12695-12705, 2013
Electromagnetic interference shielding by using conductive polypyrrole and metal compound coated on fabrics
CY Lee, DE Lee, CK Jeong, YK Hong, JH Shim, J Joo, MS Kim, JY Lee, ...
Polymers for Advanced Technologies 13 (8), 577-583, 2002
Single-electron transistors operating at room temperature, fabricated utilizing nanocrystals created by focused-ion beam
TW Kim, DC Choo, JH Shim, SO Kang
Applied physics letters 80 (12), 2168-2170, 2002
High‐Performance Protonic Ceramic Fuel Cells with 1 µm Thick Y:Ba(Ce, Zr)O3 Electrolytes
K Bae, DH Kim, HJ Choi, JW Son, JH Shim
Advanced Energy Materials 8 (25), 1801315, 2018
Proton conduction in thin film yttrium-doped barium zirconate
JH Shim, TM Gür, FB Prinz
Applied Physics Letters 92 (25), 2008
Slurry spin coating of thin film yttria stabilized zirconia/gadolinia doped ceria bi-layer electrolytes for solid oxide fuel cells
HJ Kim, M Kim, KC Neoh, GD Han, K Bae, JM Shin, GT Kim, JH Shim
Journal of Power Sources 327, 401-407, 2016
Enhanced oxygen exchange on surface-engineered yttria-stabilized zirconia
CC Chao, JS Park, X Tian, JH Shim, TM Gür, FB Prinz
ACS nano 7 (3), 2186-2191, 2013
Fabrication and applications of conducting polymer nanotube, nanowire, nanohole, and double wall nanotube
J Joo, BH Kim, DH Park, HS Kim, DS Seo, JH Shim, SJ Lee, KS Ryu, ...
Synthetic metals 153 (1-3), 313-316, 2005
Theoretical design of lithium chloride superionic conductors for all-solid-state high-voltage lithium-ion batteries
D Park, H Park, Y Lee, SO Kim, HG Jung, KY Chung, JH Shim, S Yu
ACS applied materials & interfaces 12 (31), 34806-34814, 2020
Material Design Strategy for Halide Solid Electrolytes Li3MX6 (X = Cl, Br, and I) for All-Solid-State High-Voltage Li-Ion Batteries
K Kim, D Park, HG Jung, KY Chung, JH Shim, BC Wood, S Yu
Chemistry of Materials 33 (10), 3669-3677, 2021
Fabrication of lanthanum strontium cobalt ferrite (LSCF) cathodes for high performance solid oxide fuel cells using a low price commercial inkjet printer
GD Han, KC Neoh, K Bae, HJ Choi, SW Park, JW Son, JH Shim
Journal of Power Sources 306, 503-509, 2016
Ion conduction in nanoscale yttria-stabilized zirconia fabricated by atomic layer deposition with various doping rates
K Sik Son, K Bae, J Woo Kim, J Suk Ha, J Hyung Shim
Journal of Vacuum Science & Technology A 31 (1), 2013
Process–property relationship in high-k ALD SrTiO 3 and BaTiO 3: a review
JH Shim, HJ Choi, Y Kim, J Torgersen, J An, MH Lee, FB Prinz
Journal of Materials Chemistry C 5 (32), 8000-8013, 2017
Characterization of porous Pt films deposited via sputtering
I Chang, S Woo, MH Lee, JH Shim, Y Piao, SW Cha
Applied surface science 282, 463-466, 2013
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