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"Mapping the design of electrolyte additive for stabilizing zinc anode " by Huaizheng Ren, Sai Li et al. - Vimarsana News

"Mapping the design of electrolyte additive for stabilizing zinc anode " by Huaizheng Ren, Sai Li et al.

Aqueous Zn-ion batteries (ZIBs) have garnered significant interest as an important solution for large-scale energy storage due to their enhanced safety and affordability. Nevertheless, dendrites formation and side reactions faced by Zn anodes have hindered their commercial development. Electrolyte additives, among various methods to stabilize Zn anodes, have emerged as the most commercially viable technique due to their low dosage and potent effects, offering substantial economic benefits. While massive literature reviews have explored strategies for comprehensive Zn anode stabilization, there...

Source: uow.edu.au
"Sodium Difluoro(oxalato)borate Additive-Induced Robust SEI and CEI Lay" by Xiaohao Liu, Jiahua Zhao et al. - Vimarsana News

"Sodium Difluoro(oxalato)borate Additive-Induced Robust SEI and CEI Lay" by Xiaohao Liu, Jiahua Zhao et al.

Sodium-ion batteries (SIBs) are a promising candidate for large-scale energy storage due to the low cost and abundant sodium resources. However, the formation of sodium dendrites on the surface of hard carbon (HC) anodes is the most intractable challenge for full cells during charging, leading to severe performance degradation and safety hazards. Here, a robust additive-induced borate and fluoride-rich interphase is constructed by introducing sodium difluoro(oxalato)borate (NaDFOB) as additive in the ether-based electrolyte to relieve the performance deterioration for SIBs. NaDFOB can particip...

Source: uow.edu.au
"Sulfolane as an additive to regulate Zn anode in aqueous Zn-ion batter" by Yan Wang, Haiji Huang et al. - Vimarsana News

"Sulfolane as an additive to regulate Zn anode in aqueous Zn-ion batter" by Yan Wang, Haiji Huang et al.

Aqueous Zn-ion batteries (AZIBs) have attracted strong attention for widespread applications because of their safety, cheapness and ecological amiability. Nevertheless, challenges exist at the Zn anode such as the side reactions. Here, a small amount of sulfolane (SL) (1 vol%) was added into the typical ZnSO4 electrolyte as an additive. Detailed studies shown that SL adjusts the solvation structure of Zn2+, reduces the water activity and regulates the Zn deposition. Consequently, the side reactions are suppressed. Therefore, with only addition of 1% SL, the symmetric cells exhibit long cycling...

Source: uow.edu.au
"Strategies for Sodium Metal Batteries with Long Lifespan and High Safe" by Ming Zhu - Vimarsana News

"Strategies for Sodium Metal Batteries with Long Lifespan and High Safe" by Ming Zhu

Sodium metal as anode material applied to SMBs has gained considerable attention in recent years, owing to its high theoretical capacity (1166 mAh g-1), low cost and earth abundance when compared with Li metal. However, there is still a long way to go before realizing the practical application of SMBs. Sodium metal anode (SMA) suffers from challenging issues, such as unstable SEI, Na dendrites growth, and infinite volume change during cycling, etc, leading to rapid capacity decay, shortened lifespan and even safety concerns. So far, a variety of strategies have been put forward to addressing t...

Source: uow.edu.au
"2D anionic nanosheet additive for stable Zn metal anodes in aqueous el" by Yuanjun Zhang, Zhongyi Huang et al. - Vimarsana News

"2D anionic nanosheet additive for stable Zn metal anodes in aqueous el" by Yuanjun Zhang, Zhongyi Huang et al.

Metallic Zinc (Zn) has attracted great attention as a promising anode for aqueous batteries owing to its high theoretical capacity, low cost, and high natural abundance. However, Zn anode suffers from a crucial challenge, namely the growth of Zn dendrites, which brings not only a short life span but also severe safety concerns. In this work, we report that anionic tin sulfide nanosheets (TS-Ns) server as electrolyte additive to mitigate the dendrite growth. The negatively charge TS-Ns can attract the positive Zn2+ from the electrolyte through electrostatic interaction and increase the local co...

Source: uow.edu.au