Latest Research in Advanced battery technologies research

174 research papers · 2026 median publication year

Top Research Topics in Advanced battery technologies research

Highest-Cited Papers

  1. Weakening conjugation of organic cyclic additives towards advanced aqueous zinc-ion batteries
  2. Harnessing solvent regeneration to spontaneously engineer a multifunctional interphase for high-energy-density flexible zinc batteries
  3. Low‐Crystalline Ag 1.2 V 3 O 8 : A Zinc‐Ion Storage Cathode With an Ultrahigh Capacity of 525 mAh g −1 Enabled by Oxygen‐Vacancy‐Rich Coordination Environments
  4. Amorphous Ti-Si functionalized cellulose separators for stable zinc-ion batteries: constructing three-dimensional isotropic networks to regulate ion flux
  5. Bio‐Inspired Bidirectional Proton Regulatory Mechanisms by Anhydride‐Based Hydrogel Electrolytes for High‐Performance Aqueous Zinc‐Ion Batteries
  6. Bio‐Inspired Bidirectional Proton Regulatory Mechanisms by Anhydride‐Based Hydrogel Electrolytes for High‐Performance Aqueous Zinc‐Ion Batteries
  7. Low‐Crystalline Ag 1.2 V 3 O 8 : A Zinc‐Ion Storage Cathode With an Ultrahigh Capacity of 525 mAh g −1 Enabled by Oxygen‐Vacancy‐Rich Coordination Environments
  8. In-situ construction of a multifunctional Sb/ZnF2 hybrid coating via displacement reaction for highly stable aqueous zinc-ion batteries
  9. Revealing the Role of Ion Transport Properties through Ion-Exchange Membranes for Aqueous Zinc-Ion Battery
  10. Zinc metal anode plating morphology in mild acidic electrolytes under slow oscillatory flow
  11. Functional binders toward zinc–iodine batteries: From mechanism to design
  12. Upcycling Spent Tea Leaves into a Multifunctional Separator for High-Performance and Eco-Friendly Aqueous Zinc-Ion Batteries
  13. From local solvation to bulk-electrolyte regulation: Coupling additive solvation and self-assembly for durable zinc-metal batteries
  14. Breaking Barriers Toward Practicality: Critical Materials and Strategies for High‐Energy‐Density Aqueous Zinc‐Ion Batteries
  15. Ester-mediated self-evolving electrolyte enables low-temperature aqueous zinc-ion batteries
  16. TNO Heterostructure as Multifunctional Regulating Interfacial Layers for Stable Zinc‐Ion Batteries
  17. Chirality‐Engineered Supramolecular Gel Networks: Manipulating Interfacial Chemistry for Ultrastable Zinc Metal Batteries
  18. Electronegativity-programmed N-B dipolar carbon nanofiber interlayers for spatially confined iodine redox in aqueous zinc-iodine batteries
  19. Dynamic Interfacial Adsorption via a Thermoresponsive Biomass Interphase Enables Temperature‐Adaptive Zinc Anodes
  20. Coordination Polymer-Derived Carbon-Encapsulated V2O3 Cathodes for High-Performance Aqueous Zinc-Ion Batteries
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L3 Region - - 2026 Sep Q3

Advanced battery technologies research

174 papers

Top Topics (10)

Advanced battery technologies research158
Advancements in Battery Materials3
Supercapacitor Materials and Fabrication2
Materials Science2
Computers and Society1
MXene and MAX Phase Materials1
Corrosion Behavior and Inhibition1
Advanced Cellulose Research Studies1
Advanced NMR Techniques and Applications1
Electrodeposition and Electroless Coatings1

Top Publications (20)

1.Weakening conjugation of organic cyclic additives towards advanced aqueous zinc-ion batteries2.Harnessing solvent regeneration to spontaneously engineer a multifunctional interphase for high-energy-density flexible zinc batteries3.Low‐Crystalline Ag 1.2 V 3 O 8 : A Zinc‐Ion Storage Cathode With an Ultrahigh Capacity of 525 mAh g −1 Enabled by Oxygen‐Vacancy‐Rich Coordination Environments4.Amorphous Ti-Si functionalized cellulose separators for stable zinc-ion batteries: constructing three-dimensional isotropic networks to regulate ion flux5.Bio‐Inspired Bidirectional Proton Regulatory Mechanisms by Anhydride‐Based Hydrogel Electrolytes for High‐Performance Aqueous Zinc‐Ion Batteries6.Bio‐Inspired Bidirectional Proton Regulatory Mechanisms by Anhydride‐Based Hydrogel Electrolytes for High‐Performance Aqueous Zinc‐Ion Batteries7.Low‐Crystalline Ag 1.2 V 3 O 8 : A Zinc‐Ion Storage Cathode With an Ultrahigh Capacity of 525 mAh g −1 Enabled by Oxygen‐Vacancy‐Rich Coordination Environments8.In-situ construction of a multifunctional Sb/ZnF2 hybrid coating via displacement reaction for highly stable aqueous zinc-ion batteries9.Revealing the Role of Ion Transport Properties through Ion-Exchange Membranes for Aqueous Zinc-Ion Battery10.Zinc metal anode plating morphology in mild acidic electrolytes under slow oscillatory flow11.Functional binders toward zinc–iodine batteries: From mechanism to design12.Upcycling Spent Tea Leaves into a Multifunctional Separator for High-Performance and Eco-Friendly Aqueous Zinc-Ion Batteries13.From local solvation to bulk-electrolyte regulation: Coupling additive solvation and self-assembly for durable zinc-metal batteries14.Breaking Barriers Toward Practicality: Critical Materials and Strategies for High‐Energy‐Density Aqueous Zinc‐Ion Batteries15.Ester-mediated self-evolving electrolyte enables low-temperature aqueous zinc-ion batteries16.TNO Heterostructure as Multifunctional Regulating Interfacial Layers for Stable Zinc‐Ion Batteries17.Chirality‐Engineered Supramolecular Gel Networks: Manipulating Interfacial Chemistry for Ultrastable Zinc Metal Batteries18.Electronegativity-programmed N-B dipolar carbon nanofiber interlayers for spatially confined iodine redox in aqueous zinc-iodine batteries19.Dynamic Interfacial Adsorption via a Thermoresponsive Biomass Interphase Enables Temperature‐Adaptive Zinc Anodes20.Coordination Polymer-Derived Carbon-Encapsulated V2O3 Cathodes for High-Performance Aqueous Zinc-Ion Batteries
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