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Noncorrosive organic electrolytes for wide-temperature metal-chlorine batteries
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作者 Lei Ye Xiaodong Chen 《Science China Chemistry》 2025年第7期2767-2768,共2页
With a high reversible capacity exceeding 1000 mAh g^(-1),rechargeable sodium-chlorine(Na-Cl_(2))batteries offer a compelling alternative to conventional lithium-ion batteries(e.g.,LiFePO_(4)offers a capacity of less ... With a high reversible capacity exceeding 1000 mAh g^(-1),rechargeable sodium-chlorine(Na-Cl_(2))batteries offer a compelling alternative to conventional lithium-ion batteries(e.g.,LiFePO_(4)offers a capacity of less than 200 mAh g^(-1)),leveraging the abundance and low cost of sodium/chlorine resources[1,2].However,the commercial viability of these batteries has been significantly hindered by the severe corrosivity of the conventional thionyl chloride(SOCl_(2))-based electrolytes. 展开更多
关键词 rechargeable sodium chlorine batteries sodium chlorine resources high reversible capacity thionyl chloride based electrolytes conventional lithium ion batteries commercial viability noncorrosive organic electrolytes wide temperature metal chlorine batteries
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3D porous reduced graphene cathode and non-corrosive electrolyte for long-life rechargeable aluminum batteries 被引量:3
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作者 Xueying Zheng Yong Xie +2 位作者 Fei Tian Danni Lei Chengxin Wang 《Energy Materials and Devices》 2024年第2期50-60,共11页
Owing to their high volumetric capacity,low cost and high safety,rechargeable aluminum batteries have become promising candidates for energy applications.However,the high charge density of Al^(3+)leads to strong coulo... Owing to their high volumetric capacity,low cost and high safety,rechargeable aluminum batteries have become promising candidates for energy applications.However,the high charge density of Al^(3+)leads to strong coulombic interactions between anions and the cathode,resulting in sluggish diffusion kinetics and irreversible collapse of the cathode structure.Furthermore,AlCl_(3)-based ionic liquids,which are commonly used as electrolytes in such batteries,corrode battery components and are prone to side reactions.The above problems lead to low capacity and poor cycling stability.Herein,we propose a reduced graphene oxide(rGO)cathode with a three-dimensional porous structure prepared using a simple and scalable method.The lamellar edges and oxygen-containing group defects of rGO synergistically provide abundant ion storage sites and enhance ion transfer kinetics.We matched the prepared rGO cathode with noncorrosive electrolyte 0.5 mol·L^(-1) Al(OTF)_(3)/[BMIM]OTF and Al metal to construct a high-performance battery,Al||rGO-150,with good cycling stability for 2700 cycles.Quasi-in-situ physicochemical characterization results show that the ion storage mechanism is codominated by diffusion and capacitance.The capacity consists of the insertion of Al-based species cations as well as synergistic adsorption of Al(OTF)_(x)^((3-x)+)(x<3)and[BMIM]+.The present study promotes the fundamental and applied research on rechargeable aluminum batteries. 展开更多
关键词 rechargeable aluminum batteries reduced graphene oxide noncorrosive electrolyte
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