Kang Xu researcher (ORCID 0000-0002-6946-8635)
Xu, Kang, 19..-...., chimiste
Xu, Kang (Chimiste)
Xu, Kang (Chemist)
VIAF ID: 309833569 (Personal)
Permalink: http://viaf.org/viaf/309833569
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Works
Title | Sources |
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Achieving Na-ion Battery Advancements Through Decoding Degradation Pathways and Electrolyte Engineering | |
Aligned Li+ Tunnels in Core-Shell Li(NixMnyCoz)O2@LiFePO4 Enhances Its High Voltage Cycling Stability as Li-ion Battery Cathode | |
Architecturing hierarchical function layers on self-assembled viral templates as 3D nano-array electrodes for integrated Li-ion microbatteries | |
Atomic force microscopy studies on molybdenum disulfide flakes as sodium-ion anodes. | |
Cation- and pH-Dependent Hydrogen Evolution and Oxidation Reaction Kinetics | |
Confined Sulfur in Microporous Carbon Renders Superior Cycling Stability in Li/S Batteries | |
Correlating Li+-Solvation Structure and its Electrochemical Reaction Kinetics with Sulfur in Subnano Confinement. | |
Deciphering the Ethylene Carbonate-Propylene Carbonate Mystery in Li-Ion Batteries. | |
Depolarized and fully active cathode based on Li(Ni0.5Co0.2Mn0.3)O2 embedded in carbon nanotube network for advanced batteries | |
Differentiating contributions to "ion transfer" barrier from interphasial resistance and Li+ desolvation at electrolyte/graphite interface | |
Ectopic expression of Cripto-1 in transgenic mouse embryos causes hemorrhages, fatal cardiac defects and embryonic lethality. | |
Electrolytes for lithium and lithium-ion batteries | |
Energy storage emerging: A perspective from the Joint Center for Energy Storage Research | |
Enhancing the reversibility of Mg/S battery chemistry through Li(+) mediation. | |
Flexible Aqueous Li-Ion Battery with High Energy and Power Densities. | |
Fluorinated hybrid solid-electrolyte-interphase for dendrite-free lithium deposition | |
Free-standing Na(2/3)Fe(1/2)Mn(1/2)O(2)@graphene film for a sodium-ion battery cathode | |
Graphene sheets stabilized on genetically engineered M13 viral templates as conducting frameworks for hybrid energy-storage materials | |
High-Voltage Aqueous Magnesium Ion Batteries. | |
Highly reversible zinc metal anode for aqueous batteries. | |
In situ and quantitative characterization of solid electrolyte interphases | |
Liquid/Solid Phase Diagrams of Binary Carbonates for Lithium Batteries Part II | |
Liquid Structure with Nano-Heterogeneity Promotes Cationic Transport in Concentrated Electrolytes. | |
Lithium ethylene dicarbonate identified as the primary product of chemical and electrochemical reduction of EC in 1.2 M LiPF6/EC:EMC electrolyte. | |
Mobile Ions in Composite Solids | |
New Concepts in Electrolytes | |
Nonflammable electrolyte enhances battery safety. | |
Pomegranate-Structured Conversion-Reaction Cathode with a Built-in Li Source for High-Energy Li-Ion Batteries. | |
Prelithiation Activates Li(Ni0.5Mn0.3Co0.2)O2 for High Capacity and Excellent Cycling Stability. | |
Protective effects of daviditin A against endothelial damage induced by lysophosphatidylcholine | |
Réalisation d'avancées dans les batteries Na-ion par le décodage des voies de dégradation et l'ingénierie des électrolytes. | |
A rechargeable zinc-air battery based on zinc peroxide chemistry | |
Reversible S0 /MgSx Redox Chemistry in a MgTFSI2 /MgCl2 /DME Electrolyte for Rechargeable Mg/S Batteries. | |
Syntheses and characterization of lithium alkyl mono- and dicarbonates as components of surface films in Li-ion batteries | |
Targeted Disruption of miR-17-92 Impairs Mouse Spermatogenesis by Activating mTOR Signaling Pathway. | |
Tin-coated viral nanoforests as sodium-ion battery anodes | |
Ultrafast solid-liquid intercalation enabled by targeted microwave energy delivery | |
Understanding Li(+)-Solvent Interaction in Nonaqueous Carbonate Electrolytes with (17)O NMR. |