33 results on '"Sun, Seho"'
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2. Poly(aniline)-multiwall carbon nanotube (PANI@MWCNT) composite as high-cost Pt free counter electrode for dye-sensitized solar cells
3. Improved Li-ion kinetics of the anode by kneading process of binder for lithium-ion batteries with high energy density
4. Sacrificial cathode additives for enhanced cycle performance for liquid and all–solid–state anode–free lithium secondary batteries
5. Modulation of Molybdenum oxidation state via Catalytic-oxidation
6. Design of inorganic/organic bi-layered Li protection layer enabled dendrite-free practical Li metal battery
7. Fe-substituted silica via lattice dissolution–reprecipitation replacement for tungsten chemical mechanical planarization
8. Simultaneous electrical and defect engineering of nickel iron metal-organic-framework via co-doping of metalloid and non-metal elements for a highly efficient oxygen evolution reaction
9. Regulating Li electrodeposition by constructing Cu–Sn nanotube thin layer for reliable and robust anode‐free all‐solid‐state batteries.
10. Formamidinium Lead Iodide‐Based Perovskite Solar Cell Fabrication With an Electrospun‐Reduced Graphene Oxide Back Electrode: A Novel Approach.
11. Highly reversible cycling with Dendrite-Free lithium deposition enabled by robust SEI layer with low charge transfer activation energy
12. Heterostructure design of Fe2(MoO4)3 decorated MoO3 nanorods for boosting catalytic activity in high-performance lithium sulfur batteries
13. Dendrite-free lithium plating enabled by yolk shell structured ZnO/C sphere coated polyethylene separator for stable lithium metal anodes
14. A robust solid electrolyte interphase layer coated on polyethylene separator surface induced by Ge interlayer for stable Li-metal batteries
15. Galvanic corrosion inhibition from aspect of bonding orbital theory in Cu/Ru barrier CMP
16. A self-buffering structure for application in high-performance sodium-ion batteries
17. Engineering SiO2 Nanoparticles: A Perspective on Chemical Mechanical Planarization Slurry for Advanced Semiconductor Processing
18. Sacrificial Cathode Additives for Enhanced Cycle Performance for Liquid and All–Solid–State Anode–Free Lithium Secondary Batteries
19. Interface-reinforcing sintering step for highly stable operation of proton-conducting fuel cell stack
20. Tailored Electronic Structure of Ir in High Entropy Alloy for Highly Active and Durable Bifunctional Electrocatalyst for Water Splitting under an Acidic Environment.
21. Multilayered Graphene-Coated Metal Current Collectors with High Electrical Conductivity and Corrosion Resistivity for Flow-Electrode Capacitive Mixing
22. Modulation of Molybdenum Oxidation State Via Catalytic-Oxidation
23. Modulating SEI formation via tuning the solvation sheath for lithium metal batteries
24. Hydrogenated ceria nanoparticles for high-efficiency silicate adsorption
25. Ion‐Conducting Channel Implanted Anode Matrix for All‐Solid‐State Batteries with High Rate Capability and Stable Anode/Solid Electrolyte Interface
26. Stable artificial solid electrolyte interphase with lithium selenide and lithium chloride for dendrite-free lithium metal anodes
27. Galvanic Corrosion Inhibition from Aspect of Bonding Orbital Theory: Case Study of Copper/Ruthenium Coupled Film Using 3- Pyridinecarboxylic Acid
28. Controlled swelling behavior and stable cycling of silicon/graphite granular composite for high energy density in lithium ion batteries
29. Copper Nitride Nanowires Printed Li with Stable Cycling for Li Metal Batteries in Carbonate Electrolytes
30. Facile ex situ formation of a LiF–polymer composite layer as an artificial SEI layer on Li metal by simple roll-press processing for carbonate electrolyte-based Li metal batteries
31. Electrochemically activated cobalt nickel sulfide for an efficient oxygen evolution reaction: partial amorphization and phase control
32. Electrochemically activated cobalt nickel sulfide for an efficient oxygen evolution reaction: partial amorphization and phase control
33. Hydroxylated carbon nanotube enhanced sulfur cathodes for improved electrochemical performance of lithium–sulfur batteries
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