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1. Tailoring the Electrode Interface Microenvironment to Stabilize Zn Metal Anode NSTL国家科技图书文献中心

Hou, Weiping |  Gao, Yuliang... -  《Small》 - 2025,21(1) - n/a~n/a - 共10页

摘要:Zn metal is the most attractive anode material |  field) is proposed to stabilize the Zn metal anode | -concept, the Zn metal anode shows a highly reversible |  ion concentration gradient on the anode surface |  anode surface. Benefiting from the improved interface
关键词: dendrite |  electrode interface microenvironment |  electrolyte additive |  pouch cell |  Zn metal anode

2. Promoting Migration Kinetic of Desolvated Zn 2+ by Functional Interlayer Toward Superior Zn Metal Anode NSTL国家科技图书文献中心

Huang, Xinqi |  Tian, Yapeng... -  《Small》 - 2025,21(17) - n/a~n/a - 共11页

摘要:The development of Zn metal anodes is |  metal anode delivers steady plating/stripping cycles |  functional interlayers toward superior Zn or other metal |  inhomogeneous deposition and strong solvation of Zn(H2O)(6)(2 |  cycling stability. As a result, the functionalized Zn
关键词: desolvation |  functional interlayer |  migration kinetic |  MXene-based composite |  Zn metal anode |  MXene‐based composite

3. Reconfiguring Zn~(2+) Solvation Network and Interfacial Chemistry of Zn Metal Anode with Molecular Engineered Crown Ether Additive NSTL国家科技图书文献中心

Ruifeng Han |  Tao Jiang... -  《Advanced functional materials》 - 2025,35(2) - 2412255.1~2412255.12 - 共12页

摘要:+) solvation network and interfacial chemistry of Zn metal |  the C5SeCN to the Zn anode. The ZnZn symmetric cells |  system suffers from unregulated Zn dendrite growth as |  molecular engineering, to stepwise regulate the Zn~(2 |  anode. The designed crown ether (C5SeCN), featuring
关键词: aqueous zinc batteries |  crown ether |  electrolyte additive |  molecular engineering |  plasma treatment |  Zn utilization degree

4. A Facile In Situ Etching–coating of Artificial Solid-Electrolyte Interphase on Zn Metal Anode for Aqueous Batteries NSTL国家科技图书文献中心

Wenchao Fu |  Guoli Zhang... -  《Advanced functional materials》 - 2025,35(2) - 2412733.1~2412733.9 - 共9页

摘要:Zn metal anode is desired for aqueous |  3800 cycles. In addition, the SZ-Zn anode enables | . However, uneven Zn deposition and hydrogen evolution |  electrolyte interphase (SEI) composed of metal center |  generated on Zn surface by a facile etchingcoating process
关键词: aqueous Zn battery |  dendrite |  hydrogen evolution reaction |  solid electrolyte interphase |  Zn anode

5. Coupling Solvation Structure Regulation and Interface Engineering via Reverse Micelle Strategy Toward Highly Stable Zn Metal Anode NSTL国家科技图书文献中心

Hui Peng |  Danyang Wang... -  《Advanced functional materials》 - 2025,35(12) - 2417695.1~2417695.11 - 共11页

摘要: strategy in stabilizing the Zn anode, but the influence | The stability of aqueous Z inc (Zn) ion energy |  can result in the growth of Zn dendrites, self |  the Zn-ion (Zn~(2+)) solvation structure through |  electrolyte additive, which enhances the stability of the Zn
关键词: electrolyte additive |  reverse micelle |  solvated sheath structure |  zinc ion capacitors |  Zn dendrite

6. Playing with Water Molecules: 'Repulsing' or 'Trapping' to Exclude Water-Induced Side Reactions on Zn Metal Anode NSTL国家科技图书文献中心

Meizhu Sun |  Kehao Wan... -  《Advanced functional materials》 - 2025,35(13) - 2417890.1~2417890.47 - 共47页

摘要:Aqueous Zn ion batteries (AZIBs) have |  not only as the rapid transporter of Zn~(2+) ions |  but also as the instigator of anode corrosion |  attracted considerable research interest because they |  offer potential solutions for battery safety concerns
关键词: aqueous Zn-based batteries |  side reactions |  water molecules |  water repulsing |  water trapping

7. Sandwich-like tellurium nanoribbons/graphene composited film as conversion-type non-metal anode for flexible Zn-ion electrochemical energy storage devices NSTL国家科技图书文献中心

Chen, Qun |  Wang, Lingyu... -  《Surfaces and interfaces》 - 2025,56 - 共10页

摘要: gassing issues at the Zn foil anode confronted their |  film as a viable substitute for Zn metal foil | The emerging field of Zn-ion batteries (ZIB | ) or Zn-ion hybrid capacitors (ZHC), offers |  nanosheets (rHGO), as a novel flexible anode electrode for
关键词: Conversion-type |  Non-metal anode |  Zn-ion hybrid capacitors |  Zn-ion batteries |  Tellurium nanoribbons/graphene composite film

8. Biopolymer-Based Gel Electrolytes for Advanced Zinc Ion Batteries: Progress and Perspectives NSTL国家科技图书文献中心

Renjie Jia |  Chuanliang Wei... -  《Advanced functional materials》 - 2025,35(12) - 2417498.1~2417498.28 - 共28页

摘要: Zn metal anode corrosion, as well as inhibiting the |  growth of Zn dendrites. This review comprehensively | In recent years, aqueous zinc ion batteries |  (ZIBs) with ultra-high safety and environmental |  friendliness have emerged as a promising candidates for
关键词: biopolymer |  gel electrolyte |  zinc ion battery |  Zn metal anode

9. A Multifunctional Na 2 Se/Zn-Mn Skeleton Enables Processable and Highly Reversible Sodium Metal Anode NSTL国家科技图书文献中心

Aman, Samia |  Iqbal, Sikandar... -  《Small》 - 2025,21(1) - n/a~n/a - 共12页

摘要: modifying the Na metal anode (SMA) with the sodiophilic |  intermetallic composite has Zn and Mn metal sites for uniform | ) metal batteries (SMBs) are restricted by their |  addressed by controlling the reactions at the Na metal by |  hosts. Herein, a multifunctional Na2Se/Zn-Mn skeleton
关键词: controllable Na deposition |  high cyclic stability |  high sodiophilicity |  multifunctional skeleton |  Na metal anode

10. Strong Metal-Support Interaction to Invert Hydrogen Evolution Overpotential of Cu Coating for High-Coulombic-Efficiency Stable Zn Anode in Aqueous Zn-Ion Batteries NSTL国家科技图书文献中心

Sheng Chen |  Kefeng Ouyang... -  《Advanced Materials》 - 2025,37(15) - 2417775.1~2417775.8 - 共8页

摘要: stability of the Zn anode. Consequently, Cu is regarded as |  an unsuitable coating for Zn anode protection. In |  remarkably surpasses the performance of Zn anode protective |  (HER) overpotential compared to Zn, which |  this work, the HER overpotential of Cu versus Zn is
关键词: electronic structure |  high coulombic efficiencies |  reverses the HER |  strong metal-support interaction |  ultra-low current density
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