Journal
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2024 |
Approaching High Rate All-Solid-State Lithium-Sulfur Batteries via Promoted Sulfur Conversion with Nickel Oxide Nanoparticle Electrocatalyst
임원광 Chemical Engineering Journal, v.490, pp.1-9 |
7 |
원문
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Journal
|
2024 |
Approaching High Rate All-Solid-State Lithium-Sulfur Batteries via Promoted Sulfur Conversion with Nickel Oxide Nanoparticle Electrocatalyst
Seok Hun Kang Chemical Engineering Journal, v.490, pp.1-9 |
7 |
원문
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Journal
|
2023 |
Enhancing performance of all-solid-state battery by establishment of interconnected Li7La3Zr2O12 network in graphite composite anode
Oh Jimin JOURNAL OF ENERGY STORAGE, v.68, pp.1-9 |
7 |
원문
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Journal
|
2023 |
Effect of Lithium Substitution Ratio of Polymeric Binders on Interfacial Conduction within All-Solid-State Battery Anodes
Shin Dong Ok ACS Applied Materials & Interfaces, v.15, no.10, pp.13131-13143 |
6 |
원문
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Journal
|
2023 |
Effect of Lithium Substitution Ratio of Polymeric Binders on Interfacial Conduction within All-Solid-State Battery Anodes
김형준 ACS Applied Materials & Interfaces, v.15, no.10, pp.13131-13143 |
6 |
원문
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Journal
|
2022 |
A trade-off-free fluorosulfate-based flame-retardant electrolyte additive for high-energy lithium batteries
Oh Jimin Journal of Materials Chemistry A, v.10, no.41, pp.21933-21940 |
11 |
원문
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Journal
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2016 |
All-solid-state Lithium-ion Batteries with TiS2 Nanosheets and Sulphide Solid Electrolytes
오대양 Journal of Materials Chemistry A : Materials for Energy and Sustainability, v.4, no.26, pp.10329-10335 |
95 |
원문
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Journal
|
2016 |
Supercapacitive Properties of Activated Carbon Electrode in Potassium-Polyacrylate Hydrogel Electrolytes
Kim Kwang Man Journal of Applied Electrochemistry, v.46, no.5, pp.567-573 |
15 |
원문
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Journal
|
2016 |
Supercapacitive Properties of Composite Electrode Consisting of Activated Carbon and Di(1-aminopyrene)quinone
Kim Kwang Man ETRI Journal, v.38, no.2, pp.252-259 |
8 |
원문
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Journal
|
2015 |
Enhanced Separator Properties by Coating Alumina Nanoparticles with Poly(2-Acrylamido-2-Methyl-1-Propanesulfonic Acid) Binder for Lithium-Ion batteries
Kim Kwang Man Korean Journal of Chemical Engineering, v.32, no.4, pp.717-722 |
18 |
원문
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Journal
|
2015 |
Bendable and Thin Sulfide Solid Electrolyte Film: A New Electrolyte Opportunity for Free-Standing and Stackable High-Energy All-Solid-State Lithium-Ion Batteries
남영진 Nano Letters, v.15, no.5, pp.3317-3323 |
267 |
원문
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Journal
|
2014 |
Improvement of Lithium-Ion Battery Performance at Low Temperature by Adopting Polydimethylsiloxane-Based Electrolyte Additives
Kim Kwang Man Electrochimica Acta, v.136, pp.182-188 |
56 |
원문
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Journal
|
2014 |
Graphite/Silicon Hybrid Electrodes Using a 3D Current Collector for Flexible Batteries
김상우 Advanced Materials, v.26, no.19, pp.2977-2982 |
59 |
원문
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Journal
|
2014 |
Electrochemical Properties of TiO2 Nanotube-Carbon Nanotube Composites as Anode Material of Lithium-Ion Batteries
Kang Kunyoung Journal of Electroceramics, v.32, no.2-3, pp.246-254 |
10 |
원문
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Journal
|
2014 |
Enhanced Separator Properties by Thermal Curing of Poly(Ethylene Glycol)Diacrylate-Based Gel Polymer Electrolytes for Lithium-Ion Batteries
Kim Kwang Man Electrochimica Acta, v.120, pp.159-166 |
21 |
원문
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Journal
|
2012 |
Electrochemical Properties of Carbon-coated TiO2 Nanotubes as a Lithium Battery Anode Material
Kang Kunyoung Materials Chemistry and Physics, v.137, no.1, pp.169-176 |
20 |
원문
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Journal
|
2012 |
Electrochemical Properties of TiO2 Nanotube-Li4Ti5O12 Composite Anodes for Lithium-Ion Batteries
Kim Kwang Man Current Applied Physics, v.12, no.4, pp.1199-1206 |
45 |
원문
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Journal
|
2010 |
Anode Properties of Titanium Oxide Nanotube and Graphite Composites for Lithium-Ion Batteries
Choi Min Gyu Journal of Power Sources, v.195, no.24, pp.8289-8296 |
28 |
원문
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Journal
|
2010 |
Lithium-Ion Battery Anode Properties of TiO2 Nanotubes Prepared by the Hydrothermal Synthesis of Mixed (Anatase and Rutile) Particles
Choi Min Gyu Electrochimica Acta, v.55, no.20, pp.5975-5983 |
91 |
원문
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Journal
|
2009 |
Electrochemical properties of mixed cathode consisting of μm-sized LiCoO2 and nm-sized Li[Co0.1Ni0.15Li0.2Mn0.55]O2 in lithium rechargeable batteries
Kim Kwang Man Journal of Applied Electrochemistry, v.39, no.9, pp.1487-1495 |
13 |
원문
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Journal
|
2008 |
Effect of Co3(PO4)2 coating on Li[Co0.1Ni0.15Li0.2Mn0.55]O2 cathode material for lithium rechargeable batteries
Lee Sang Hyo Journal of Power Sources, v.184, no.1, pp.276-283 |
78 |
원문
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Journal
|
2007 |
3-Chloroanisole for Overcharge Protection of a Li-Ion Cell
Young-Gi Lee Electrochimica Acta, v.52, no.25, pp.7404-7408 |
26 |
원문
|