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A Double-Functional Additive Containing Nucleophilic Groups for High-Performance Zn-Ion Batteries.

ACS Nano, 2023
Aqueous zinc-ion batteries (AZIBs) have attracted attention for their low cost and environmental friendliness. Unfortunately, commercialization has been hampered by several problems with dendrite growth and side reactions.
Jian-Kun Wan   +10 more
semanticscholar   +1 more source

Nonepitaxial Electrodeposition of (002)‐Textured Zn Anode on Textureless Substrates for Dendrite‐Free and Hydrogen Evolution‐Suppressed Zn Batteries

Advances in Materials, 2023
Nontoxic and safe aqueous Zn batteries are largely restricted by the detrimental dendrite growth and hydrogen evolution of Zn metal anode. The (002)‐textured Zn electrodeposition, demonstrated as an effective approach for solving these issues, is ...
Jing-Min Zhang   +6 more
semanticscholar   +1 more source

Stabilizing Zn Metal Anode Through Regulation of Zn Ion Transfer and Interfacial Behavior with a Fast Ion Conductor Protective Layer.

Small, 2023
Aqueous Zn-ion batteries (AZIBs) attract intensive attention owing to their environmental friendliness, cost-effectiveness, innate safety, and high specific capacity. However, the practical applications of AZIBs are hindered by several adverse phenomena,
Na Guo   +10 more
semanticscholar   +1 more source

Rational Design of Flexible Zn-Based Batteries for Wearable Electronic Devices.

ACS Nano, 2023
The advent of 5G and the Internet of Things has spawned a demand for wearable electronic devices. However, the lack of a suitable flexible energy storage system has become the "Achilles' Heel" of wearable electronic devices.
Xiao Xiao   +6 more
semanticscholar   +1 more source

In-Situ Integration of a Hydrophobic and Fast-Zn2+-Conductive Inorganic Interphase to Stabilize Zn Metal Anodes.

Angewandte Chemie, 2023
The irreversible issues of Zn anode stemming from dendrite growth and water-induced erosion have severely hindered the commercialization of rechargeable aqueous Zn batteries. Herein, a hydrophobic and fast-Zn2+-conductive zinc hexacyanoferrate (HB-ZnHCF)
Mengyu Liu   +7 more
semanticscholar   +1 more source

ZnS–Zn nanocables and ZnS nanotubes

Chemical Communications, 2003
ZnS-Zn nanocables and ZnS nanotubes have been synthesized by a thermochemical process in a simple and safe way. The as-prepared nanocables consist of a single crystal Zn core with a diameter of 20 nm and a polycrystalline ZnS sheath with a thickness of 8 nm. The evaporation of the Zn core leads to the formation of ZnS nanotubes.
Ying-Chun, Zhu   +2 more
openaire   +2 more sources

Simultaneous Regulation on Solvation Shell and Electrode Interface for Dendrite-Free Zn Ion Batteries: Achieved by a Low-Cost Glucose Additive.

Angewandte Chemie, 2021
The dendrite growth and by-products in Zn metal aqueous batteries have impeded their fast development as promising energy storage devices. We hereby utilize a low-cost additive, glucose, to modulate the typical ZnSO4 electrolyte system for improving ...
Peng-Xiao Sun   +6 more
semanticscholar   +1 more source

Insight on Organic Molecules in Aqueous Zn‐Ion Batteries with an Emphasis on the Zn Anode Regulation

Advanced Energy Materials, 2022
Rechargeable aqueous zinc ion batteries (AZIBs), as a rising star in aqueous ion batteries, are restricted by the narrow voltage window and the unsatisfactory reversibility, which are dominated by the high activity of H2O molecules, side reaction, Zn ...
Dong-Hong Wang   +8 more
semanticscholar   +1 more source

A Universal Additive Strategy to Reshape Electrolyte Solvation Structure toward Reversible Zn Storage

Advanced Energy Materials, 2022
The benefits of Zn, despite many of its performance advantages (e.g., high theoretical capacity and low redox potential), are compromised by severe side reactions and Zn dendrite growth in aqueous electrolytes, due to the coordinated H2O within the Zn2 ...
Tian-Chen Li   +8 more
semanticscholar   +1 more source

Critical assessment and optimization of phase diagrams and thermodynamic properties of RE–Zn systems – Part II – Y–Zn, Eu–Zn, Gd–Zn, Tb–Zn, Dy–Zn, Ho–Zn, Er–Zn, Tm–Zn, Yb–Zn and Lu–Zn

Journal of Alloys and Compounds, 2015
Abstract All available phase diagram and thermodynamic data for the Y–Zn, Eu–Zn, Gd–Zn, Tb–Zn, Dy–Zn, Ho–Zn, Er–Zn, Tm–Zn, Yb–Zn and Lu–Zn systems have been collected and critically assessed. Optimized model parameters for the thermodynamic properties of all phases have been obtained.
Zhijun Zhu, Arthur D. Pelton
openaire   +1 more source

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