14 results on '"Polishchuk, Yuliya"'
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2. Melanin’s Semiconductor Nature and His Polymer Structure Successfully Modifies Sulfur Cathode and Increases Efficiency on Li-S Batteries
3. Generating Innovative Solid Polymer Electrolyte Based on Melanin and Without Binder for High Energy Li Batteries
4. Non-Aqueous Ionic Liquids Based on Quaternary Ammonium Salts for Lithium-Sulfur Batteries
5. Synergistic Effect of Nanotechnology and Optimized Industrial Manufacturing Process for Lead Electrodes Enhances the Performance of Lead-Acid Batteries
6. Solid Polymer Electrolytes and Modified Electrodes are Basis for New Generation of High-Energy Lithium Batteries
7. Polymer Structure of Sulfur Ensures Low Self-Discharge of Li-S Primary and Secondary Batteries/Synergistic Effect of Sulfur Structure and Design of Sulfur Electrode
8. Innovating Cathode Based on Polymer Sulfur for Stable and Safer Lithium-Sulfur Batteries
9. Features of Influence the Temperature on the Electrochemical Parameters of Li-Battery with Cathode Based on Polymer Sulfur. Impedance and Galvanostatic Cycling
10. Conductivity of Powders Graphene, Graphite, Oxides, Sulfides, Etc. of Electrode Materials Are Critical Parameters for Efficiency Li Batteries. Non-Destructive Electromagnetic Testing. Electrochemical Properties
11. Synergistic Effect of Innovating Electrode Technology and Eddy-Current Electromagnetic Impedance for Non-Destructive Testing are Resulting in Increasing Battery Power
12. Effect of Nature of Modifying Additive on Electrochemical Characteristics of Electrodes Based on LiMn2O4
13. Features of Influence the Temperature on the Electrochemical Parameters of Li-Battery with Cathode Based on Polymer Sulfur. Impedance and Galvanostatic Cycling
14. Synergistic Effect of Innovating Electrode Technology and Eddy-Current Electromagnetic Impedance for Non-Destructive Testing are Resulting in Increasing Battery Power
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