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Quasi‐Solid‐State Aluminum–Air Batteries with Ultra‐high Energy

Yougen Tang [email protected] Hunan Provincial Key Laboratory of Chemical Power Sources, College of Chemistry and Chemical Engineering, Central South University, Changsha, 410083 P. R. China batteries are the ideal candidates for the next generation energy storage/conversion system, owing to their high power and energy density (8.1 kWh kg

Polymer-in-salt electrolyte enables ultrahigh ionic conductivity for

Yougen Tang: Supervision, Writing – review & editing. Haiyan Wang: Supervision, Energy Storage Materials, Volume 63, 2023, Article 102961. Lu Wang, , Meinan Liu. Asbestos-functionalized solid polymer electrolyte for

Polymer-in-salt electrolyte enables ultrahigh ionic conductivity for

Polymer solid-state electrolyte (SSE) still confronts low room-temperature ionic conductivity for broad application in solid-state batteries. Herein, an eye-catching polymer-in-salt PVDF-HFP/LiFSI/LLZTO composite SSE with ultrahigh ionic conductivity is elaborately designed. In this electrolyte system, poly (vinylidene fluoride-co-hexafluoropropylene) (PVDF-HFP) matrix

Weakly Solvating Cyclic Ether Electrolyte for High-Voltage Lithium

DOI: 10.1021/acsenergylett.3c00181 Corpus ID: 257515499; Weakly Solvating Cyclic Ether Electrolyte for High-Voltage Lithium Metal Batteries @article{Zhang2023WeaklySC, title={Weakly Solvating Cyclic Ether Electrolyte for High-Voltage Lithium Metal Batteries}, author={Jiaming Zhang and Qiuping Li and Yaping Zeng and Zheng Tang and Dan Sun and

Advanced Energy Materials, volume 13, issue 36

AbstractAchieving multi‐sodium storage and high operating voltage is key to boosting energy density of NASICON‐type materials. However, the activation of more redox couples is usually accompanied by asymmetric and irreversible electrochemical reactions, thus causing fast capacity fading. To address this issue, a medium‐entropy concept is proposed,

Advanced Energy Materials

Advanced Energy Materials is your prime applied energy journal for research providing solutions to today''s global energy challenges. Yougen Tang. Hunan Provincial Key Laboratory of Chemical Power Sources, College of Chemistry and Chemical Engineering, Central South University, Changsha, 410083 P. R. China

Engineering hierarchical structure and surface of Na4MnV(PO4)3

Yougen Tang: Resources. Haiyan Wang: Writing – review & editing, Project administration, Funding acquisition. Based on the energy-storage mechanism of cathode materials during fast-charging, a series of strategies, including nanostructure, doping and multiple-system, are discussed, while emphasis on the pseudocapacitive contribution in

Haiyan Wang

[1]Shengan Wu, Dan Sun, Yougen Tang, Haiyan Wang, Hybrid high-concentration electrolyte strengthens the practicability of alkaline aluminum-air battery.Energy Storage Materials, 2020,accepted. [2]Understanding Crystal Structures and Ion Diffusion Mechanisms of NASICON Materials for Sodium Ion Batteries.Energy Storage Materials, 2020, in revision

Electrochemical interface reconstruction to eliminate surface

Metallic zinc anodes have attracted growing interest for aqueous rechargeable batteries owing to their high theoretical capacity and low cost. However, the practical application of zinc anodes is limited by the low Coulombic efficiency resulted from the irrepressible dendrite growth. Herein, we prove that the dendrite formation under low current density is mainly controlled by the surface

Advanced Metal Ion Storage Technologies

Discusses different investigated materials as anode, cathode, and electrolytes for different energy storage systems ; Provides a complete and comprehensive review of all the existing metal-ion batteries ; Yougen Tang earned his Ph.D. in Material science at Central South University. From 2000, he is a full Professor in College of Chemistry

SusMat

The significantly improved Na storage performance should be attributed to abundant closed pores that provide sufficient spaces for Na storage and thin pore wall structure that is beneficial to the diffusion of Na + in the bulk phase. This work provides a new idea for the future application of biomass-based hard carbon for advanced Na ion batteries.

[1]Shengan Wu, Dan Sun, Yougen Tang, Haiyan Wang, Hybrid high-concentration electrolyte strengthens the practicability of alkaline aluminum-air battery.Energy Storage Materials, 2020,accepted. [2]Understanding Crystal Structures and Ion Diffusion Mechanisms of NASICON Materials for Sodium Ion Batteries.Energy Storage Materials, 2020, in revision

sundan

[34] Jiaming Zhang, Qiuping Li, Yaping Zeng, Zheng Tang, Dan Sun, * Dan Huang, Yougen Tang, * and Haiyan Wang. Weakly Solvating Cyclic Ether Electrolyte for High-Voltage Lithium Metal Batteries. ACS Energy Lett. 2023, 8, 1752−1761 [33]Zheng Tang, Siyu Zhou, Yuancheng Huang, Hong Wang, Rui Zhang, Qi Wang, Dan Sun*, Yougen Tang, Haiyan

Understanding And Improving The Initial Coulombic Efficiency Of

Tang, Yougen Wang, Haiyan Shao, Minhua: Issue Date: 2019: Source: Energy Storage Materials, v. 23, 2019, p. 233-251: Abstract: Sodium ion batteries have emerged as a potential low-cost candidate for energy storage systems due to the earth abundance and availability of Na resource. With the exploitation of high-performance electrode materials

Hydrogen-bonds reconstructing electrolyte enabling low

Aqueous aluminum-air batteries are promising candidates for the next generation of energy storage/conversion systems with high safety and low cost. However, the inevitable hydrogen evolution reaction on the metal aluminum anode and the freeze of aqueous electrolytes hinder the practical application of aluminum-air batteries at both room temperatures and subzero

Hydrogen-bonds reconstructing electrolyte enabling low

Author links open overlay panel Chaonan Lv a 1, Yuanxin Zhu a 1, Yixin Li a, Yuxin Zhang a, Jialin Kuang a, Yougen Tang a, Huanhuan Li b, Haiyan Wang a. Show more. Add to Mendeley. Share. Aqueous aluminum-air batteries are promising candidates for the next generation of energy storage/conversion systems with high safety and low cost.

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12.Jiaming Zhang,Hanna He*(), Yougen Tang, Xiaobo Ji, Haiyan Wang*. Advanced materials prepared via metallic reduction reactions for electrochemical energy storage.Small Methods, 2020, 4, 2000613 (IF=15.36) 13.Hanna He, Dan Sun, Yougen Tang, Haiyan Wang*, Minhua Shao*. Understanding and improving the initial Coulombic efficiency of

About Energy storage tang yougen

About Energy storage tang yougen

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