170 results on '"Yu, Wonjong"'
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2. Impact of yttria-stabilized zirconia contents in nickel cermet anodes for intermediate temperature-operated syngas-fueled thin film solid oxide fuel cells
3. High-performance low-temperature solid oxide fuel cell with nanostructured lanthanum strontium cobaltite/yttria-stabilized zirconia cathode via advanced co-sputtering
4. Nanostructured thin film SrCo0.8Nb0.1Ta0.1O3-δ cathode for low-temperature solid oxide fuel cells
5. Highly active and stable nanocomposite anode for solid oxide fuel cells on non-conductive substrate
6. Effect of Ni–GDC anode thickness by Co-sputtering on the high-performance thin film solid oxide fuel cells on a nanoporous substrate for low-temperature operation
7. Tailoring 3D structured nanofibrous nickel/gadolinium-doped ceria anodes for high-performance thin-film solid oxide fuel cells
8. Effect of nanostructured grains in co-sputtered Ni-GDC thin-film anode on methane conversion kinetics for low temperature solid oxide fuel cells operating on nearly dry methane
9. Blue laser-induced selective vasorelaxation by the activation of NOSs
10. Validation of defect association energy on modulating oxygen ionic conductivity in low temperature solid oxide fuel cell
11. Enhanced performance of nanostructured thin film anode through Pt plasma enhanced atomic layer deposition for low temperature solid oxide fuel cells
12. Ultrathin sputtered platinum–gadolinium doped ceria cathodic interlayer for enhanced performance of low temperature solid oxide fuel cells
13. Three dimensional YSZ interface engineering layer for enhancement of oxygen reduction reactions of low temperature solid oxide fuel cells
14. Effect of plasma-enhanced atomic layer deposited YSZ inter-layer on cathode interface of GDC electrolyte in thin film solid oxide fuel cells
15. Effects of Microstructure of Ni Anode on Nanotemplate Based Low Temperature Solid Oxide Fuel Cells
16. Effects of Nanoscale PEALD YSZ Interlayer for AAO Based Thin Film Solid Oxide Fuel Cells
17. Optimization of Y2O3 dopant concentration of yttria stabilized zirconia thin film electrolyte prepared by plasma enhanced atomic layer deposition for high performance thin film solid oxide fuel cells
18. Improved Reversibility of Thin-Film Solid Oxide Cells at 500 °C by Tailoring Sputtering Processes for Depositing Yttria-Stabilized Zirconia Electrolyte
19. Nanocrystal Engineering of Thin-Film Yttria-Stabilized Zirconia Electrolytes for Low-Temperature Solid-Oxide Fuel Cells
20. Nickel-based bilayer thin-film anodes for low-temperature solid oxide fuel cells
21. Scalable lattice-strain in preferentially oriented acceptor-doped cerium oxide film and its impact on oxygen ion transport kinetics
22. Fabrication of Low-Temperature Solid Oxide Fuel Cells via Development of Magnetron Sputtering Process
23. Corrigendum to “Electrochemical study on the effect of catalytic current collecting layer on thin film La0.6Sr0.4Co0.8Fe0.2O3−δ (LSCF) cathode” [Appl. Surf. Sci. 509 (2020) 145224]
24. Effect of 20%O2 reactive gas on RF-sputtered Ni-SDC cermet anodes for intermediate temperature solid oxide fuel cells
25. Carbon nanotube sheet as a current collector for low-temperature solid oxide fuel cells
26. High Performance, Enhanced Structural Stability of Co-sputtered Nanocomposite Anode with Neutral Stress State for Low-Temperature Solid Oxide Fuel Cells
27. A Self-Crystallized Nanofibrous Ni-GDC Anode by Magnetron Sputtering for Low-Temperature Solid Oxide Fuel Cells
28. The Effect of Task-Oriented Activities Training on Upper-Limb Function, Daily Activities, and Quality of Life in Chronic Stroke Patients: A Randomized Controlled Trial
29. Characterization of thin film solid oxide fuel cells with variations in the thickness of nickel oxide-gadolinia doped ceria anode
30. Performance enhancement of thin film LSCF cathodes by gold current collecting layer
31. Differential expression profiles of miRNA in the serum of sarcopenic rats
32. Characterization of atomic layer deposited and sputtered yttria-stabilized-zirconia thin films for low-temperature solid oxide fuel cells
33. Plasma Driven Exsolution for Nanoscale Functionalization of Perovskite Oxides
34. Nanoporous nickel thin film anode optimization for low-temperature solid oxide fuel cells
35. Erratum to “Validation of defect association energy on modulating oxygen ionic conductivity in low temperature solid oxide fuel Cell” [J. Power sources 480 (2020) 229106]
36. A Study on the Optimum Estimation of Flammable Liquid Release Rate for the Classification of Hazardous Area
37. Effect of Tai Chi Combined with Mental Imagery on Cutaneous Microcirculatory Function and Blood Pressure in a Diabetic and Elderly Population
38. Investigation of Reducing In-Plane Resistance of Nickel Oxide-Samaria-Doped Ceria Anode in Thin-Film Solid Oxide Fuel Cells
39. Electrochemical study on the effect of catalytic current collecting layer on thin film La0.6Sr0.4Co0.8Fe0.2O3−δ (LSCF) cathode
40. Geometrical scale dependency of thin film solid oxide fuel cells
41. Preparation of SrCo0.8Nb0.1Ta0.1O3-δ as a Cathode for Solid Oxide Fuel Cells by Pulsed Laser Deposition
42. Low-temperature, high-performance thin-film solid oxide fuel cells with tailored nano-column structures of a sputtered Ni anode
43. A novel method to fabricate nanoporous gadolinium-doped ceria interlayer by combining wet-etching and thin film deposition
44. Effect of Microstructure Control of Thin Film Yttria Stabilized Zirconia Electrolyte for Solid Oxide Fuel Cells by Adjusting Oblique Angle and Target Substrate Distance of Sputtering Process
45. Effects of Nanoscale PEALD YSZ Interlayer for AAO Based Thin Film Solid Oxide Fuel Cells
46. Hydrogen peroxide constricts rat arteries by activating Na+-permeable and Ca2+-permeable cation channels
47. A nanoporous substrate-based low temperature solid oxide fuel cell using a thin film Ni anode
48. Enhanced Thermal Stability of Ultrathin Nanostructured Pt cathode by PdO: In Situ Nanodecoration for Low-Temperature Solid Oxide Fuel Cell
49. Pulsed Laser Deposition of SrCo0.8Nb0.1Ta0.1O3-Δ As a Cathode for Thin Film Solid Oxide Fuel Cells
50. Thin Film Solid Oxide Fuel Cells Operating Below 600°C: A Review
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