152 results on '"shuttle effect"'
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2. Data on Nanofibers Reported by Researchers at China Agricultural University (Cellulose Nanofiber Separator for Suppressing Shuttle Effect and Li Dendrite Formation In Lithium-sulfur Batteries)
3. Zhongshan Polytechnic Researchers Describe New Findings in Coating Research (The LiTFSI/COFs Fiber as Separator Coating with Bifunction of Inhibition of Lithium Dendrite and Shuttle Effect for Li-SeS [ [2] ] Battery)
4. Data from University of the Chinese Academy of Sciences Advance Knowledge in Electrochemical Research (Suppressing Shuttle Effect By Large Oxygen-containing Crosslinked Hyperbranched Polyurethane As Cathode Encapsulated Layer for ...)
5. Investigators from Shandong University of Technology Have Reported New Data on Electrochemical Research (A Film Coating Assembled By Tubular Nitrogen-doped Carbon Fibers As an Efficient Membrane Spacer To Suppress the Shuttle Effect for ...)
6. New Applied Surface Science Study Findings Have Been Reported by Researchers at Dalian University of Technology (Electrocatalytic Polysulfide Transformation for Suppressing the Shuttle Effect of Li-s Batteries)
7. Studies from Anhui Normal University Describe New Findings in Electrochemical Research (A Metal Organic Foam-derived Multi-layered and Porous Copper Sulfide Scaffold As Sulfur Host With Multiple Shields for Preventing Shuttle Effect In ...)
8. Recent Studies from Sichuan University Add New Data to Electrochemical Research (Alleviating the Shuttle Effect Via Bifunctional Mnfe2o4/ab Modified Separator for High Performance Lithium Sulfur Battery)
9. Studies from Energy Technologies Ltd. Yield New Data on Phobic Disorders (Developing a 'polysulfide-phobic' Strategy To Restrain Shuttle Effect In Lithium-sulfur Batteries)
10. Reports from Energy Technologies Ltd. Highlight Recent Findings in Phobic Disorders (Developing A 'Polysulfide-Phobic' Strategy to Restrain Shuttle Effect in Lithium-Sulfur Batteries)
11. Reports Summarize Phobic Disorders Findings from Energy Technologies Ltd. (Developing A 'Polysulfide-Phobic' Strategy to Restrain Shuttle Effect in Lithium-Sulfur Batteries)
12. Researchers from Zhejiang University Discuss Findings in Electronics (Heteroelectrocatalyst Mos2@cos2 Modified Separator for Li-s Battery: Unveiling Superior Polysulfides Conversion and Reaction Kinetics)
13. New Findings Reported from Chungbuk National University Describe Advances in Materials Science (Sulfur/reduced graphite oxide and dual-anion solid polymer-electrolyte integrated structure for high-loading practical all-solid-state ...)
14. Nanjing Tech University Researchers Have Provided New Study Findings on Organic Chemistry (A Nitrogen/Oxygen Dual-Doped Porous Carbon with High Catalytic Conversion Ability toward Polysulfides for Advanced Lithium-Sulfur Batteries)
15. Researchers from Indian Institute of Technology (IIT) Madras Describe Findings in Prolamins (Zein Protein Binder Coupled With Chitosan-derived Carbon for Polysulphide Trapping In Li-s Battery)
16. Studies Conducted at University of Cordoba on Chemicals and Chemistry Recently Reported (Green Biomass-derived Hierarchically Porous Non-activated Carbon From Carob Waste for High-performance Lithium-sulfur Batteries)
17. Lithium-Sulfur Battery Market size is set to grow by USD 3.92 billion from 2024-2028, Harmful usage of lead batteries leads to higher adoption of Li-S batteries to boost the market growth, Technavio
18. Lithium-Sulfur Battery Market size is set to grow by USD 3.92 billion from 2024-2028, Harmful usage of lead batteries leads to higher adoption of Li-S batteries to boost the market growth, Technavio
19. Lithium-Sulfur Battery Market size is set to grow by USD 3.92 billion from 2024-2028, Harmful usage of lead batteries leads to higher adoption of Li-S batteries boost the market, Technavio
20. S-1/A: Solidion Technology Inc
21. University of Colorado Researcher Publishes New Study Findings on Bioengineering (Peritoneal Infusion of Oxygen Microbubbles Alters the Metabolomic Profile of the Lung and Spleen in Acute Hypoxic Exposure)
22. Findings from Nanyang Technological University Advance Knowledge in Science (Interface-reinforced high-capacity fiber cathode for wearable Li-S batteries)
23. Investigators at Beijing Institute of Technology Describe Findings in Biomimetics (An Electronegative Biomimetic Separator Suppresses Side Effects of Iodine Species In Li-o 2 Batteries)
24. Research Study Findings from University of Queensland Update Understanding of Materials Science (Enhancing performance and longevity of solid-state zinc-iodine batteries with fluorine-rich solid electrolyte interphase)
25. Reports on Biotechnology from Huaqiao University Provide New Insights (Oxygen Self-doping Pyrolyzed Polyacrylic Acid As Sulfur Host With Physical/chemical Adsorption Dual Function for Lithium-sulfur Batteries)
26. Michael Everett Joins Zeta Energy as Chief Operating Officer
27. Zeta Energy and Log9 Materials Partner to Drive Innovation in Advanced Battery Systems
28. Sulfur-Based Battery Market Projected to Reach $7.09 billion by 2030 - Exclusive Report by 360iResearch
29. Zeta Energy Awarded US Department of Energy Grant for $4 million Project to Advance Higher-Performing, Domestic Lithium-Sulfur Batteries for Greater Range in EVs
30. USD 1.76 billion growth expected in Lithium-Sulfur Battery Market between 2022 and 2027, Analysing growth in Europe - 17,000+ Technavio Research Reports
31. Findings from Huazhong Agricultural University Update Understanding of Green Synthesis (Green Synthesis and Applications of Mxene for Lithium-sulfur Batteries)
32. Researchers from Nanjing University Report Details of New Studies and Findings in the Area of Science (Boosting a Practical Li-co2 Battery Through Dimerization Reaction Based On Solid Redox Mediator)
33. Zeta Energy Announces Graphite-Free and Cobalt-Free Batteries on Target to Reach 450 Wh|kg and Over One Thousand Cycles by 2025
34. Zeta Energy Announces Graphite-Free and Cobalt-Free Batteries on Target to Reach 450 Wh/kg and Over One Thousand Cycles by 2025
35. Zeta Energy Demonstrates Industry-Leading Progress in Lithium-Sulfur Batteries
36. Zeta Energy Demonstrates Industry-Leading Progress in Lithium-Sulfur Batteries
37. Study Results from Kunming University Update Understanding of Ceramics Research (Hazel Shell-based Biomass-derived Carbon Modified Diaphragm for High-performance Lithium-sulfur Batteries)
38. Researchers from University of Electronic Science and Technology Provide Details of New Studies and Findings in the Area of Nanorods (Nbn Quantum Dots Anchored Hollow Carbon Nanorods As Efficient Polysulfide Immobilizer and Lithium Stabilizer ...)
39. Researchers at South China Agricultural University Have Reported New Data on Polymer Science (Soy Protein Isolate/mxene Decorated Acidified Carbon Paper Interlayer for Long-cycling Li-s Batteries)
40. Ningbo University Researcher Describes Recent Advances in Science (A triple-synergistic small-molecule sulfur cathode promises energetic Cu-S electrochemistry)
41. Patent Issued for Gelable system containing ether compounds, preparation method therefor and use thereof (USPTO 11777142)
42. Chinese Academy of Sciences Reports Findings in Electronics (An Organic Coordination Manganese Complex as Cathode for High-Voltage Aqueous Zinc-metal Battery)
43. Zeta Energy Receives Third-Party Verification that its Lithium-Sulfur Battery is Polysulfide Free
44. Zeta Energy Receives Third-Party Verification that its Lithium-Sulfur Battery is Polysulfide Free
45. Zeta Energy Demonstrates Use of Unrefined Sulfur with No Performance Loss
46. Zeta Energy Demonstrates Use of Unrefined Sulfur with No Performance Loss
47. Zeta Energy Corporation Selected to Receive $4 million in Federal Funding to Develop More Efficient Electric Vehicle Batteries
48. Zeta Energy Corporation Selected to Receive $4 million in Federal Funding to Develop More Efficient Electric Vehicle Batteries
49. LITHIUM-SULFUR BATTERIES ARE ONE STEP CLOSER TO POWERING THE FUTURE
50. Dr. Franz Josef Kruger joins Zeta Energy Advisory Board
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