Search Results - "Kim, Kun Joong"
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Lithium‐Battery Anode Gains Additional Functionality for Neuromorphic Computing through Metal–Insulator Phase Separation
Published in Advanced materials (Weinheim) (01-03-2020)“…Specialized hardware for neural networks requires materials with tunable symmetry, retention, and speed at low power consumption. The study proposes lithium…”
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2
Solid‐State Li–Metal Batteries: Challenges and Horizons of Oxide and Sulfide Solid Electrolytes and Their Interfaces
Published in Advanced energy materials (01-01-2021)“…The introduction of new, safe, and reliable solid‐electrolyte chemistries and technologies can potentially overcome the challenges facing their liquid…”
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3
Processing thin but robust electrolytes for solid-state batteries
Published in Nature energy (01-03-2021)“…The widespread adoption of high-energy-density solid-state batteries (SSBs) requires cost-effective processing and the integration of solid electrolytes of…”
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4
Lattice strain-enhanced exsolution of nanoparticles in thin films
Published in Nature communications (01-04-2019)“…Nanoparticles formed on oxide surfaces are of key importance in many fields such as catalysis and renewable energy. Here, we control B-site exsolution via…”
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5
Switchable Photovoltaic Effects in Hexagonal Manganite Thin Films Having Narrow Band Gaps
Published in Chemistry of materials (10-11-2015)“…Ferroelectric photovoltaics (FPVs) are being extensively studied owing to their anomalously high photovoltages, coupled with reversibly switchable…”
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6
Lithium-film ceramics for solid-state lithionic devices
Published in Nature reviews. Materials (01-04-2021)“…The search for alternatives to traditional Li-ion batteries has sparked interest in the chemistry and manufacturing of solid-state Li-ion conductors. Li-ion…”
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7
A novel solid oxide electrolysis cell (SOEC) to separate anodic from cathodic polarization under high electrolysis current
Published in International journal of hydrogen energy (10-08-2015)“…A novel thick-film electrolyte-supported cell is constructed to separate cathodic (fuel electrode) from anodic (air electrode) polarization resistance Rp under…”
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8
Flexible solid oxide fuel cells supported on thin and porous metal
Published in International journal of hydrogen energy (15-06-2016)“…A thin metal (NiFe)-supported SOFC is fabricated by tape casting and co-sintering, and its mechanical flexibility is tested. A single cell, composed of…”
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Thermal cycling and electrochemical characteristics of solid oxide fuel cell supported on stainless steel with a new 3-phase composite anode
Published in Journal of power sources (30-06-2017)“…We report design, fabrication method, and fast thermal-cycling ability of solid oxide fuel cells (SOFCs) that use stainless steel (STS) as a support, and a new…”
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10
Y0.08Sr0.88TiO3–CeO2 composite as a diffusion barrier layer for stainless-steel supported solid oxide fuel cell
Published in Journal of power sources (01-03-2016)“…A new diffusion barrier layer (DBL) is proposed for solid oxide fuel cells (SOFCs) supported on stainless-steel where DBL prevents inter-diffusion of atoms…”
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11
Oxidation of porous stainless-steel coated with donor-doped SrTiO3 in anodic atmosphere of solid oxide fuel cell
Published in Journal of power sources (31-08-2017)“…This study evaluates the effect of donor-doped SrTiO3 (La0.2Sr0.8Ti0.9Ni0.1O3-δ, LSTN) coating on chromia growth on the surface of porous stainless steel…”
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12
Effect of Gd-doped ceria interlayer on the stability of solid oxide electrolysis cell
Published in Solid state ionics (01-11-2016)“…Gd0.2Ce0.8O2-δ (GDC) interlayers, positioned between La0.6Sr0.4Co0.2Fe0.8O3-δ (LSCF) anode (air electrode) and yttria-stabilized zirconia (Y0.16Zr0.84O2-d,…”
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13
Author Correction: Lattice strain-enhanced exsolution of nanoparticles in thin films
Published in Nature communications (02-05-2019)“…The original version of this Article contained an error in the Data Availability section, which incorrectly read ‘The data that support the findings of this…”
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14
Facet-Dependent in Situ Growth of Nanoparticles in Epitaxial Thin Films: The Role of Interfacial Energy
Published in Journal of the American Chemical Society (08-05-2019)“…Nucleation of nanoparticles using the exsolution phenomenon is a promising pathway to design durable and active materials for catalysis and renewable energy…”
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15
Polarization and stability of La2NiO4+δ in comparison with La0.6Sr0.4Co0.2Fe0.8O3−δ as air electrode of solid oxide electrolysis cell
Published in International journal of hydrogen energy (07-09-2016)“…Solid oxide electrolysis cells (SOECs) are promising due to high electrolysis efficiency, but at high operating temperature TOP ≥ 800 °C, they suffer from…”
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16
Effect of Ce0.43Zr0.43Gd0.1Y0.04O2−δ contact layer on stability of interface between GDC interlayer and YSZ electrolyte in solid oxide electrolysis cell
Published in Journal of power sources (15-06-2015)“…In solid oxide electrolysis cells (SOECs), a Gd0.2Ce0.8O2−δ (GDC) interlayer is often positioned between the (La,Sr) (Co,Fe)O3−δ (LSCF) anode (air electrode)…”
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17
Micro solid oxide fuel cell fabricated on porous stainless steel: a new strategy for enhanced thermal cycling ability
Published in Scientific reports (01-03-2016)“…Miniaturized solid oxide fuel cells (micro-SOFCs) are being extensively studied as a promising alternative to Li batteries for next generation portable power…”
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18
Low-temperature fabrication of protonic ceramic fuel cells with BaZr0.8Y0.2O3−δ electrolytes coated by aerosol deposition method
Published in International journal of hydrogen energy (19-02-2015)“…To overcome the difficulties of sintering yttrium (Y)-doped barium zirconate (BZY), an aerosol deposition (AD) method is suggested as an attractive alternative…”
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19
Stainless steel-supported solid oxide fuel cell with La0.2Sr0.8Ti0.9Ni0.1O3−δ/yttria-stabilized zirconia composite anode
Published in Journal of power sources (30-08-2016)“…A metal-supported solid oxide fuel cell (MS-SOFC) is fabricated by co-firing stainless steel (STS) support with a new reduction-resistant oxide-anode and…”
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20
Er0.4Bi1.6O3−δ – La0.8Sr0.2MnO3−δ nano-composite as a low-temperature firing cathode of solid oxide fuel cell
Published in Journal of power sources (15-03-2017)“…Er0.4Bi1.6O3−δ (ESB) composited with La0.8Sr0.2MnO3−δ (LSM) (2:3 or 3:2 wt:wt) with a bonding aid to decrease firing temperature TF are screen-printed on…”
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