Advanced cellulose-based materials toward stabilizing zinc anodes DOI
Zhijiang Li, Xiang Chen, Rui Zhang

et al.

Science China Chemistry, Journal Year: 2024, Volume and Issue: 67(5), P. 1465 - 1484

Published: Jan. 23, 2024

Language: Английский

Comprehensive review onzinc‐ionbattery anode: Challenges and strategies DOI Creative Commons
Xin Zhang, Junping Hu,

Na Fu

et al.

InfoMat, Journal Year: 2022, Volume and Issue: 4(7)

Published: March 15, 2022

Abstract Zinc‐ion batteries (ZIBs) have been extensively investigated and discussed as promising energy storage devices in recent years owing to their low cost, high density, inherent safety, environmental impact. Nevertheless, several challenges remain that need be prioritized before realizing the widespread application of ZIBs. In particular, development zinc anodes has hindered by many challenges, such inevitable dendrites, corrosion passivation, hydrogen evolution reaction (HER), which severely limited practical high‐performance This review starts with a systematic discussion origins HER, well effects on battery performance. Subsequently, we discuss solutions above problems protect anode, including improvement anode materials, modification anode–electrolyte interface, optimization electrolyte. this emphasizes design strategies from an integrated perspective broad interest rather than view focus. final section, comments perspectives are provided for future anodes. image

Language: Английский

Citations

230

Building better aqueous Zn-organic batteries DOI
Xuanyang Li, Ming Jen Tan, Yuan Wang

et al.

Energy & Environmental Science, Journal Year: 2023, Volume and Issue: 16(6), P. 2398 - 2431

Published: Jan. 1, 2023

This is a systematic overview focusing on recent developments, energy storage mechanisms, and design improvement strategies for aqueous Zn-organic batteries.

Language: Английский

Citations

159

Recent progress and challenges of Zn anode modification materials in aqueous Zn-ion batteries DOI
Chengyao Zhu, Pengzhou Li, Guiying Xu

et al.

Coordination Chemistry Reviews, Journal Year: 2023, Volume and Issue: 485, P. 215142 - 215142

Published: March 28, 2023

Language: Английский

Citations

124

Does Water‐in‐Salt Electrolyte Subdue Issues of Zn Batteries? DOI Creative Commons
Ziyauddin Khan, Divyaratan Kumar, Xavier Crispin

et al.

Advanced Materials, Journal Year: 2023, Volume and Issue: 35(36)

Published: May 23, 2023

Zn-metal batteries (ZnBs) are safe and sustainable because of their operability in aqueous electrolytes, abundance Zn, recyclability. However, the thermodynamic instability Zn metal electrolytes is a major bottleneck for its commercialization. As such, deposition (Zn2+ → Zn(s)) continuously accompanied by hydrogen evolution reaction (HER) (2H+ H2 ) dendritic growth that further accentuate HER. Consequently, local pH around electrode increases promotes formation inactive and/or poorly conductive passivation species (Zn + 2H2 O Zn(OH)2 on Zn. This aggravates consumption electrolyte degrades performance ZnB. To propel HER beyond potential (0 V vs standard (SHE) at 0), concept water-in-salt-electrolyte (WISE) has been employed ZnBs. Since publication first article WISE ZnB 2016, this research area progressed continuously. Here, an overview discussion promising direction accelerating maturity ZnBs provided. The review briefly describes current issues with conventional ZnBs, including historic basic understanding WISE. Furthermore, application scenarios detailed, description various key mechanisms (e.g., side reactions, electrodeposition, anions or cations intercalation oxide graphite, ion transport low temperature).

Language: Английский

Citations

97

Recent advances and perspectives for Zn-based batteries: Zn anode and electrolyte DOI Creative Commons

Huaiyun Ge,

Xilan Feng,

Dapeng Liu

et al.

Deleted Journal, Journal Year: 2022, Volume and Issue: 2, P. e9120039 - e9120039

Published: Nov. 8, 2022

Zn-based batteries have attracted extensive attention due to their high theoretical energy density, safety, abundant resources, environmental friendliness, and low cost. They are a new storage conversion technology with significant development potential been widely used in renewable portable electronic devices. Considerable attempts devoted improving the performance of batteries. Specifically, battery cycle life efficiency can be improved by electrolyte modification construction highly efficient rechargeable Zn anodes. This review compiles progress research related anodes electrolytes, especially last five years. will introduce fundamental concepts, summarize recent development, inspire further systematic for high-performance future.

Language: Английский

Citations

95

From anode to cell: synergistic protection strategies and perspectives for stabilized Zn metal in mild aqueous electrolytes DOI
Junyi Yin, Xiang Feng,

Zihan Gan

et al.

Energy storage materials, Journal Year: 2022, Volume and Issue: 54, P. 623 - 640

Published: Nov. 4, 2022

Language: Английский

Citations

89

Critical roles of metal–organic frameworks in improving the Zn anode in aqueous zinc-ion batteries DOI
Mohan Gopalakrishnan, Sunantha Ganesan, Mai Thanh Nguyen

et al.

Chemical Engineering Journal, Journal Year: 2023, Volume and Issue: 457, P. 141334 - 141334

Published: Jan. 5, 2023

Language: Английский

Citations

88

Anode optimization strategies for aqueous zinc-ion batteries DOI Creative Commons

Yiyang Zhang,

Xiaobo Zheng, Nana Wang

et al.

Chemical Science, Journal Year: 2022, Volume and Issue: 13(48), P. 14246 - 14263

Published: Jan. 1, 2022

Zinc-ion batteries (ZIBs) have received much research attention due to their advantages of safety, non-toxicity, simple manufacture, and element abundance. Nevertheless, serious problems still remain for anodes, such as dendrite development, corrosion, passivation, the parasitic hydrogen evolution reaction unique aqueous electrolyte system constituting main issues that must be addressed, which are blocking further advancement anodes Zn-ion batteries. Herein, we conduct an in-depth analysis exist zinc anode, summarize failure types mechanisms review modification strategies anode from three aspects electrolyte, surface, host. Furthermore, also shed light on optimization provide directions future development zinc-ion

Language: Английский

Citations

87

Flexible Quasi‐Solid‐State Aqueous Zinc‐Ion Batteries: Design Principles, Functionalization Strategies, and Applications DOI
Wenhui Wang, Chaowei Li,

Shizhuo Liu

et al.

Advanced Energy Materials, Journal Year: 2023, Volume and Issue: 13(18)

Published: March 22, 2023

Abstract Aqueous zinc‐ion batteries (AZIBs) may have applications in macroscale energy storage on account of their advantages high‐safety, cost‐effectiveness, and ecofriendliness. As a promising application, flexible quasi‐solid‐state AZIBs (FQAZIBs) can withstand mechanical deformation, act as favorable power supply devices for wearable electronics. FQAZIBs are one the most exciting rapidly ongoing topics among aqueous batteries, it is critical yet timely to summarize latest development this field, providing much‐needed guidance fabrication FQAZIBs. In review, recent progress rational design strategies from mechanisms, principles, systematically presented. First, mechanisms illuminated detail. Subsequently, philosophies also elucidated. Moreover, practical electronics reviewed detail according various functions such compressibility, stretchability, electrochromic ability, anti‐freezing self‐healing self‐charging properties, photodetecting function, shape memory, biodegradability, actuated function. Finally, some prospects research area demonstrated guidelines exploitation applications.

Language: Английский

Citations

85

Engineering multi-functionalized molecular skeleton layer for dendrite-free and durable zinc batteries DOI
Huaming Yu, Yuejiao Chen, Han Wang

et al.

Nano Energy, Journal Year: 2022, Volume and Issue: 99, P. 107426 - 107426

Published: May 24, 2022

Language: Английский

Citations

84