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Electrode/Electrolyte Optimization‑Induced Double‑Layered Architecture for High‑Performance Aqueous Zinc‑(Dual)Halogen Batteries
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作者 Chengwang Zhou Zhezheng Ding +7 位作者 Shengzhe Ying Hao Jiang Yan Wang Timing Fang You Zhang Bing Sun Xiao Tang Xiaomin Liu 《Nano-Micro Letters》 SCIE EI CAS 2025年第3期121-137,共17页
Aqueous zinc-halogen batteries are promising candidates for large-scale energy storage due to their abundant resources,intrinsic safety,and high theoretical capacity.Nevertheless,the uncontrollable zinc dendrite growt... Aqueous zinc-halogen batteries are promising candidates for large-scale energy storage due to their abundant resources,intrinsic safety,and high theoretical capacity.Nevertheless,the uncontrollable zinc dendrite growth and spontaneous shuttle effect of active species have prohibited their practical implementation.Herein,a double-layered protective film based on zinc-ethylenediamine tetramethylene phosphonic acid(ZEA)artificial film and ZnF2-rich solid electrolyte interphase(SEI)layer has been successfully fabricated on the zinc metal anode via electrode/electrolyte synergistic optimization.The ZEA-based artificial film shows strong affinity for the ZnF2-rich SEI layer,therefore effectively suppressing the SEI breakage and facilitating the construction of double-layered protective film on the zinc metal anode.Such double-layered architecture not only modulates Zn2+flux and suppresses the zinc dendrite growth,but also blocks the direct contact between the metal anode and electrolyte,thus mitigating the corrosion from the active species.When employing optimized metal anodes and electrolytes,the as-developed zinc-(dual)halogen batteries present high areal capacity and satisfactory cycling stability.This work provides a new avenue for developing aqueous zinc-(dual)halogen batteries. 展开更多
关键词 Zn metal anodes double-layered protective film Electrode/electrolyte optimization Aqueous zinc-(dual)halogen batteries
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5G双域通信专网信息传输节点双层加密防护方法 被引量:2
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作者 宋莉 《长江信息通信》 2024年第8期175-177,共3页
传统的加密方法在5G双域通信专网中存在丢包率高的问题。为此,文章提出双层加密防护方法:首先设定数据加密协议和合理的数据传输过程加密结构,动态生成和更新密钥,避免被破解;其次建立身份认证机制,确保合法节点参与数据传输,防止恶意... 传统的加密方法在5G双域通信专网中存在丢包率高的问题。为此,文章提出双层加密防护方法:首先设定数据加密协议和合理的数据传输过程加密结构,动态生成和更新密钥,避免被破解;其次建立身份认证机制,确保合法节点参与数据传输,防止恶意攻击。实验证明,该方法有效降低丢包率,确保5G双域通信专网的正常运行和服务质量。 展开更多
关键词 5G 双域通信 专网信息 传输节点 双层加密防护
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