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钾离子电池低温电解质的研究进展
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作者 赵飞 陈英华 +2 位作者 马征 李茜 明军 《储能科学与技术》 CAS CSCD 北大核心 2024年第7期2308-2316,共9页
钾离子电池因其能量密度高、廉价易得等特点,已成为有潜力的储能设备,尤其钾离子更小的斯托克斯半径,使超低温钾离子电池成为可能。然而,传统电解质会使钾离子电池在低温下生长枝晶,导致电池失效并造成安全隐患。因此,改善电解质的低温... 钾离子电池因其能量密度高、廉价易得等特点,已成为有潜力的储能设备,尤其钾离子更小的斯托克斯半径,使超低温钾离子电池成为可能。然而,传统电解质会使钾离子电池在低温下生长枝晶,导致电池失效并造成安全隐患。因此,改善电解质的低温特性对提高钾离子电池低温性能至关重要。本文综述了近些年钾离子电池低温电解质的研究进展,其大致可分为三类,即非水系电解液、水系电解液和固态电解质。其中,非水系电解液大多含弱溶剂化醚类溶剂和添加剂,提高界面去溶剂化过程的同时使电极表面形成良好的界面膜,以提高电池的低温性能;水系电解液通过引入特定的添加剂分子降低电解液凝固点的同时破坏H2O分子间氢键网络,实现电池低温性能;固态电解质以准固态电解质为主,使聚合物骨架孔道中保留少量液态电解液以提高电解质体相离子传输,并降低电解质与电极界面接触阻抗,最终提高电池的低温性能。 展开更多
关键词 钾离子电池 低温性能 非水系电解液 水系电解液 固态电解
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Effects of the oxygen transport properties of electrolytes on the reaction mechanisms in lithium-oxygen batteries
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作者 Aijing Yan Zhuojun Zhang +1 位作者 Xu Xiao Peng Tan 《中国科学技术大学学报》 北大核心 2025年第2期35-42,34,I0001,I0002,共11页
Lithium-oxygen batteries attract considerable attention due to exceptionally high theoretical energy density,while the development remains in its early stage.As is widely suggested,the solution mechanism induces great... Lithium-oxygen batteries attract considerable attention due to exceptionally high theoretical energy density,while the development remains in its early stage.As is widely suggested,the solution mechanism induces greater discharge capacity,while the surface mechanism induces greater cycle stability.Therefore,battery performance can be improved by adjusting the reaction mechanism.Previous studies predominantly focus on extremely thin or flat electrodes.In contrast,this work utilizes thick electrodes,emphasizing the importance of mass transport.Given that the electrolyte solvent is the main site of mass transport,the effects of two typical solvents on mass transport and battery performance are investigated:dimethyl sulfoxide with low viscosity and a high O_(2) diffusion rate and tetraethylene glycol dimethyl ether with high O_(2) solubility and high Li+transport capability.The results reveal a novel pathway for reaction mechanism induction where the mechanism varies with the spatial position of the electrode.As the spatial distribution of the electrode progresses,a layered appearance of solution mechanism products,transition state products,and surface mechanism products emerges,which is attributed to the increase in the mass transfer resistance.This work presents a distinct perspective on the way solvents influence reaction pathways and offers a new approach to regulating reaction pathways. 展开更多
关键词 Li-O_(2)battery nonaqueous electrolyte oxygen transport property solution mechanism surface mechanism
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