1,165 results on '"Aqueous zinc-ion batteries"'
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2. High-performance aqueous zinc-ion batteries enabled by graphene electrode modified with multiple redox polymer
3. Cellulose/sodium alginate gel electrolyte membranes with synergistic hydrogen bonding and metal ion coordination networks for high performance aqueous zinc-ion batteries
4. A ternary composite with TeO2/Te heterostructure towards reversible six-electron transfer for advanced aqueous zinc batteries
5. Enhanced zinc ion storage capability and reaction mechanisms of commercial δ-MnO2 with two-dimensional layered structure
6. Advancing aqueous zinc-ion battery performance with pullulan through preferential adsorption on zinc anode surfaces and enhanced zinc ion desolvation
7. Construction of dynamic electrostatic shielding layer toward stable interface chemistry of Zn anode
8. Co-solvent electrolyte-induced interface engineering for enhanced stability in zinc-ion batteries
9. Construction of N-doped carbon/MnO nanoparticles/hollow carbon spheres nested structure with tunable valence state for high-performance aqueous zinc ion batteries enables 10000 cycling stability
10. Unveiling the energy storage mechanism in zinc-doped Mn3O4 cathode for high-performance AZIBs
11. Enhanced electrochemical performance of pre-treated V2O5 as cathode material in aqueous Zinc-ion batteries
12. Tyrosine additives with rich-polar functional groups provide multi-protections for ultra-stable zinc metal anodes
13. Spatial and anchoring effects of zirconia-doped 3D scaffolds for stable zinc anodes
14. Dual-pillar stabilized layer molybdate anode for high capacity “rocking-chair” aqueous zinc-ion batteries
15. Competitive adsorption of perfluorosulfonic ionomer restructuring the inner Helmholtz layer for stable Zn anodes
16. Polytetrafluoroethylene/polyvinyl alcohol derived nanofibers separator for dendrite free and high ionic conductivity aqueous zinc-ion batteries
17. How simulations help better understand mechanism and design materials? Learning from aqueous zinc-ion batteries
18. Transition metal doping of topological insulator Bi2Te2Se for application in zinc-ion batteries
19. Anisotropic and anti-freezing cellulose hydrogel electrolyte with aligned channels stabilizing Zn metal anode
20. Unlocking double redox reaction in conductive copper-organic framework for stable zinc-ion batteries
21. Multifunctional electrolyte additives enabled adaptable interface toward stabilizing Zn metal anodes
22. Dendrite-free zinc metal anode for long-life zinc-ion batteries enabled by an artificial hydrophobic-zincophilic coating
23. Interfacial double-coordination effect reconstructing anode/electrolyte interface for long-term and highly reversible Zn metal anodes
24. Long cycle life aqueous zinc-ion battery enabled by a ZIF-N protective layer with electron-withdrawing group and zincophilicity on the Zn anode
25. Stable structure and oxygen-rich vacancy assist NH4V4O10 to become a high-performance aqueous zinc-ion battery cathode material
26. Guiding the crystal orientation to coordinate zinc deposition for high-durable zinc-ion batteries
27. Amorphous structure construction boosting the zinc-ion storage performance of vanadium oxyphosphate
28. Residual-carbon-supported δ-MnO2 as cathodes for aqueous zinc ion batteries with high specific capacity
29. Regulating Zn deposition via an ion-sieving, nanoporous cellulose separator for high performance aqueous zinc-ion batteries
30. Multifactor induction of pseudocapacitive in manganese oxide cathode enabling high-performance aqueous zinc ion batteries
31. Potassium ion doped manganese oxide nanoscrolls enhanced the performance of aqueous zinc-ion batteries
32. Innovative integrated carbon paper supported Bi/rGO/MnO2 cathode with dual redox reactions for aqueous zinc-ion batteries
33. Facile synthesis of monoclinic (NH4)2V4O9 nanosheets for zinc-ion batteries
34. Prussian blue analogues for aqueous zinc-ion batteries: Recent process and perspectives
35. Interfacial structuring of vacancy-rich Bi2Te3/NiTe2 with substantial melioration on dual-ion storage property for aqueous zinc-based batteries
36. Comprehensive crystallographic engineering for high-efficiency and durable zinc metal anodes
37. Vanadium nitride oxide quantum dots modified nitrogen-doped graphene as cathode for high-performance aqueous zinc-ion batteries
38. Multi-interface optimization induced by aniline electrolyte additive toward long-life aqueous zinc ion batteries
39. Engineering water-lean solvation structure to modulate interfacial chemistry for high-performance aqueous zinc-ion battery
40. Robust zincophilic-hydrophobic protection layer induces preferential growth of (0 0 2) crystal plane towards ultra-stable Zn anode
41. Manganese octacyanomolybdate/carbon nanotube hybrids as novel cathode materials for aqueous zinc-ion batteries
42. Comprehensive regulation strategies for gel electrolytes in aqueous zinc-ion batteries
43. Synergistic effects of modulating electrical double layer structure and facilitating uniform deposition of Zn2 + by biocompatible polysaccharide additive for high-performance aqueous zinc ion batteries
44. High concentrations of sodium dodecylbenzene sulfonate electrolyte additives improve the performance of aqueous zinc ion batteries
45. Chromium-doped tunnel-structured VO2(B) nanorods as high-capacity and stable cathode materials for aqueous zinc-ion batteries
46. Review of ion doping and intercalation strategies for advancing manganese-based oxide cathodes in aqueous zinc-ion batteries
47. High-entropy V-based cathode for high-capacity and long-life aqueous zinc-ion battery
48. Synergistic interface regulation for achieving fast kinetics and highly reversible zinc metal anodes
49. Novel organic additives with high dipole moments: Improving the anode interface structure to enhance the performance of zinc ion aqueous batteries
50. Ultra-fast activated NH4+-intercalated vanadium oxide cathode for high-performance aqueous zinc-ion batteries
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