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Aqueous electrocatalytic N2 reduction under ambient conditions 被引量:26
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作者 Na Cao Gengfeng Zheng 《Nano Research》 SCIE EI CAS CSCD 2018年第6期2992-3008,共17页
Recently, the electrochemical N2 reduction reaction (NRR) in aqueous electrolytes at ambient temperature and pressure has demonstrated its unique advantages and potentials. The reactants are directly derived from ga... Recently, the electrochemical N2 reduction reaction (NRR) in aqueous electrolytes at ambient temperature and pressure has demonstrated its unique advantages and potentials. The reactants are directly derived from gaseous N2 and water, which are naturally abundant, and NH3 production is important for fertilizers and other industrial applications. To improve the conversion yield and selectivity (mainly competing with water reduction), electrocatalysts must be rationally designed to optimize the mass transport, chemisorption, and transduction pathways of protons and electrons. In this review, we summarize recent progress in the electrochemical NRR. Studies of electrocatalyst designs are summarized for different categories, including metal-based catalysts, metal oxide-derived catalysts, and hybrid catalysts. Strategies for enhancing the NRR performance based on the facet orientation, metal oxide interface, crystallinity, and nitrogen vacancies are presented. Additional system designs, such as lithium-nitrogen batteries, and the solvent effect are introduced. Finally, existing challenges and prospects are discussed. 展开更多
关键词 N2 reduction ELECTROCATALYST aqueous electrolyte faradaic efficiency
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纳米TiO_2/阴离子水性聚氨酯粘合剂的研究 被引量:21
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作者 王春会 李树材 《中国胶粘剂》 CAS 2006年第3期1-3,共3页
实验采用聚酯二元醇、异佛尔酮二异氰酸酯(IPDI)、二羟甲基丙酸(DMPA)、钛酸四丁酯(TET)制备了纳米TiO2/阴离子水性聚氨酯粘合剂。FT-IR分析表明,TiO2的吸收峰出现蓝移现象;粘合剂的粒子平均粒径为100nm,电解质稳定性有一定的改善,粘... 实验采用聚酯二元醇、异佛尔酮二异氰酸酯(IPDI)、二羟甲基丙酸(DMPA)、钛酸四丁酯(TET)制备了纳米TiO2/阴离子水性聚氨酯粘合剂。FT-IR分析表明,TiO2的吸收峰出现蓝移现象;粘合剂的粒子平均粒径为100nm,电解质稳定性有一定的改善,粘接强度也有明显的提高。 展开更多
关键词 水性聚氨酯 纳米TIO2 溶胶-凝胶 电解质稳定性 粘接强度
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超级电容器用无定形V_2O_5电容性能研究 被引量:10
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作者 黄建华 赖琼钰 +2 位作者 宋建梅 陈联梅 吉晓洋 《无机化学学报》 SCIE CAS CSCD 北大核心 2007年第2期237-242,共6页
本文采用淬冷法制备了V2O5样品。采用FTIR、XRD对其进行了表征。结果表明所制样品为无定形V2O5。通过循环伏安法和恒电流充放电测试研究其电容特性,并探讨了电化学反应机理。电化学性能测试结果表明,水基电解液种类及浓度、电压范围、... 本文采用淬冷法制备了V2O5样品。采用FTIR、XRD对其进行了表征。结果表明所制样品为无定形V2O5。通过循环伏安法和恒电流充放电测试研究其电容特性,并探讨了电化学反应机理。电化学性能测试结果表明,水基电解液种类及浓度、电压范围、扫描速度、电流密度均对无定形V2O5电容性能产生影响。在1mol·L-1NaNO3溶液中,电位窗口为-0.2~0.8V(vsSCE)范围内,5mV·s-1的扫描速度下,无定形V2O5具有良好的电容性能;在250mA·g-1的电流密度下,比电容为185.1F·g-1,循环性能良好。 展开更多
关键词 五氧化二钒 无定形 超级电容器 水基电解液 电容性能
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用微扰理论状态方程预测电解质水溶液的密度 被引量:11
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作者 李春喜 李以圭 陆九芳 《化工学报》 EI CAS CSCD 北大核心 1996年第3期259-266,共8页
对微扰理论的电解质水溶液状态方程作了进一步简化.由水的分子参数和离子直径,计算了包含强酸在内的12个单一电解质水溶液、9个二元和1个四元电解质水溶液在不同温度下的密度.对单一电解质水溶液密度关联准确度在1%之内,对混合电... 对微扰理论的电解质水溶液状态方程作了进一步简化.由水的分子参数和离子直径,计算了包含强酸在内的12个单一电解质水溶液、9个二元和1个四元电解质水溶液在不同温度下的密度.对单一电解质水溶液密度关联准确度在1%之内,对混合电解质水溶液密度预测的平均相对偏差在2%左右,若阳离子直径采用由单一电解质水溶液的回归值代替Pauling直径,则能进一步改善预测准确度. 展开更多
关键词 微扰理论 电解质水溶液 密度 状态方程
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Progress in electrolytes for beyond-lithium-ion batteries 被引量:8
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作者 Juyan Zhang Xuhui Yao +2 位作者 Ravi KMisra Qiong Cai Yunlong Zhao 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2020年第9期237-257,共21页
The constant increase in global energy demand and stricter environmental standards are calling for advanced energy storage technologies that can store electricity from intermittent renewable sources such as wind,solar... The constant increase in global energy demand and stricter environmental standards are calling for advanced energy storage technologies that can store electricity from intermittent renewable sources such as wind,solar,and tidal power,to allow the broader implementation of the renewables.The gridoriented sodium-ion batteries,potassium ion batteries and multivalent ion batteries are cheaper and more sustainable alternatives to Li-ion,although they are still in the early stages of development.Additional optimisation of these battery systems is required,to improve the energy and power density,and to solve the safety issues caused by dendrites growth in anodes.Electrolyte,one of the most critical components in these batteries,could significantly influence the electrochemical performances and operations of batteries.In this review,the definitions and influences of three critical components(salts,solvents,and additives)in electrolytes are discussed.The significant advantages,challenges,recent progress and future optimisation directions of various electrolytes for monovalent and multivalent ions batteries(i.e.organic,ionic liquid and aqueous liquid electrolytes,polymer and inorganic solid electrolytes)are summarised to guide the practical application for grid-oriented batteries. 展开更多
关键词 electrolytes Organic liquid electrolyte aqueous electrolyte Ionic liquid electrolyte Solid-state electrolyte Sodium-ion batteries Potassium ion batteries Multivalent ion batteries
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用SRK状态方程计算二氧化碳在N-甲基二乙醇胺水溶液中的溶解度 被引量:7
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作者 李春喜 宋红艳 《高校化学工程学报》 EI CAS CSCD 北大核心 2000年第4期373-377,共5页
本文对二氧化碳在N-甲基二乙醇胺水溶液中的溶解度数据进行了收集和评估,并用SRK状态方程对文献数据进行了关联计算。结果表明本模型对二氧化碳溶解度的计算精度与实验的测定精度相当,可用于过程的模拟计算。
关键词 溶解度 二氧化碳 N-甲基二乙醇 SRK状态方程
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Trace Amounts of Triple-Functional Additives Enable Reversible Aqueous Zinc-Ion Batteries from a Comprehensive Perspective 被引量:6
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作者 Ruwei Chen Wei Zhang +12 位作者 Quanbo Huang Chaohong Guan Wei Zong Yuhang Dai Zijuan Du Zhenyu Zhang Jianwei Li Fei Guo Xuan Gao Haobo Dong Jiexin Zhu Xiaohui Wang Guanjie He 《Nano-Micro Letters》 SCIE EI CAS CSCD 2023年第6期143-154,共12页
Although their cost-effectiveness and intrinsic safety,aqueous zinc-ion batteries suffer from notorious side reactions including hydrogen evolution reaction,Zn corrosion and passivation,and Zn dendrite formation on th... Although their cost-effectiveness and intrinsic safety,aqueous zinc-ion batteries suffer from notorious side reactions including hydrogen evolution reaction,Zn corrosion and passivation,and Zn dendrite formation on the anode.Despite numerous strategies to alleviate these side reactions have been demonstrated,they can only provide limited performance improvement from a single aspect.Herein,a triple-functional additive with trace amounts,ammonium hydroxide,was demonstrated to comprehensively protect zinc anodes.The results show that the shift of electrolyte pH from 4.1 to 5.2 lowers the HER potential and encourages the in situ formation of a uniform ZHS-based solid electrolyte interphase on Zn anodes.Moreover,cationic NH^(4+)can preferentially adsorb on the Zn anode surface to shield the“tip effect”and homogenize the electric field.Benefitting from this comprehensive protection,dendrite-free Zn deposition and highly reversible Zn plating/stripping behaviors were realized.Besides,improved electrochemical performances can also be achieved in Zn//MnO_(2)full cells by taking the advantages of this triple-functional additive.This work provides a new strategy for stabilizing Zn anodes from a comprehensive perspective. 展开更多
关键词 aqueous zinc-ion battery Cationic shielding effect Solid electrolyte interphase pH value Triple-functional additive
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锂-空气电池的研究进展 被引量:8
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作者 高勇 王诚 +1 位作者 蒲薇华 邓长生 《电池》 CAS CSCD 北大核心 2011年第3期161-164,共4页
总结了锂-空气电池的研究现状;比较了非水性和水性电解质的优缺点;介绍了负极、正极、电解质及其他部件的研究进展;提出了目前锂-空气电池研究中存在的问题及对后续研究的建议。
关键词 锂-空气电池 空气电极 非水性电解质 水性电解质
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The development in aqueous lithium-ion batteries 被引量:8
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作者 Duan Bin Yunping Wen +1 位作者 Yonggang Wan Yongyao Xia 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2018年第6期1521-1535,共15页
To meet the growing energy demands, it is urgent for us to construct grid-scale energy storage systemthan can connect sustainable energy resources. Aqueous Li-ion batteries (ALIBs) have been widely in-vestigated to ... To meet the growing energy demands, it is urgent for us to construct grid-scale energy storage systemthan can connect sustainable energy resources. Aqueous Li-ion batteries (ALIBs) have been widely in-vestigated to become the most promising stationary power sources for sustainable energy such as windand solar power. It is believed that advantages of ALIBs will overcome the limitations of the traditionalorganic lithium battery in virtue of the safety and environmentally friendly aqueous electrolyte. In thepast decades, plentiful works have been devoted to enhance the performance of different types of ALIBs.In this review, we discuss the development of cathode, anode and electrolyte for acquiring the desiredelectrochemical performance of ALIBs. Also. the main challenges and outlook in this field are briefly dis-cussed. 展开更多
关键词 Li-ion batteries aqueous electrolyte CATHODE ANODE Electrochemical performance
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Designing Advanced Aqueous Zinc-Ion Batteries:Principles,Strategies,and Perspectives 被引量:8
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作者 Yan Li Zhouhao Wang +5 位作者 Yi Cai Mei Er Pam Yingkui Yang Daohong Zhang Ye Wang Shaozhuan Huang 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2022年第3期823-851,共29页
Aqueous zinc-ion batteries(AZIBs)are an appealing battery system due to their low cost,intrinsic safety,and environmental-friendliness,while their application is plagued by the obstacles from the cathode,electrolyte,a... Aqueous zinc-ion batteries(AZIBs)are an appealing battery system due to their low cost,intrinsic safety,and environmental-friendliness,while their application is plagued by the obstacles from the cathode,electrolyte,and zinc anode.Summarizing the design principles and strategies toward the optimization of cathode,electrolyte,and zinc anode is crucial for the development of AZIBs.Herein,we present a comprehensive analysis of the design principles and promising strategies toward the improvement of AZIBs.Firstly,the various reaction mechanisms are summarized and the existing issues associated with the cathode,electrolyte,and zinc anode are discussed to guide the rational design of AZIBs.Subsequently,we provide an in-depth and comprehensive discussion on the design principles and strategies for the electrodes/electrolyte/separator optimization,and analyze the advantages and disadvantages of various strategies.Importantly,the design principles and strategies of the newly appeared conversion-type AZIBs,such as Zn-S battery and Zn-Se battery,are also discussed and analyzed.The effect of design strategies on the electrochemical performance and the relationship between the current issues and strategies are also unveiled in detail.Finally,some research trends and perspectives are provided for designing better AZIBs. 展开更多
关键词 aqueous zinc-ion batteries cathode modification design principles electrolyte regulation zinc anode optimization
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Issues and rational design of aqueous electrolyte for Zn-ion batteries 被引量:9
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作者 Qi Zhang Zefang Yang +4 位作者 Huimin Ji Xiaohui Zeng Yougen Tang Dan Sun Haiyan Wang 《SusMat》 2021年第3期432-447,共16页
Aqueous Zn-ion batteries(AZIBs)are regarded as a promising alternative to the widely used lithium-ion batteries in large-scale energy storage systems.The researches on the development of novel aqueous electrolyte to i... Aqueous Zn-ion batteries(AZIBs)are regarded as a promising alternative to the widely used lithium-ion batteries in large-scale energy storage systems.The researches on the development of novel aqueous electrolyte to improve battery performance have also attracted great interest since the electrolyte is a key com-ponent for Zn2+migration between cathode and anode.Herein,we briefly sum-marized and illuminated the recent development tendency of aqueous electrolyte for AZIBs,then deeply analyzed its existing issues(water decomposition,cathode dissolution,corrosion and passivation,and dendrite growth)and discussed the corresponding optimization strategies(pH regulation,concentrated salt solution,electrolyte composition design,and functional additives).The internal mecha-nisms of these strategies were further revealed and the relationships between issues and solutions were clarified,which could guide the future development of aqueous electrolytes for AZIBs. 展开更多
关键词 aqueous electrolyte dendrite growth rational design water decomposition Zn-ion batteries
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Trend of Developing Aqueous Liquid and Gel Electrolytes for Sustainable,Safe,and High‑Performance Li‑Ion Batteries 被引量:2
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作者 Donghwan Ji Jaeyun Kim 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第1期17-34,共18页
Current lithium-ion batteries(LIBs)rely on organic liquid electrolytes that pose significant risks due to their flammability and toxicity.The potential for environmental pollution and explosions resulting from battery... Current lithium-ion batteries(LIBs)rely on organic liquid electrolytes that pose significant risks due to their flammability and toxicity.The potential for environmental pollution and explosions resulting from battery damage or fracture is a critical concern.Water-based(aqueous)electrolytes have been receiving attention as an alternative to organic electrolytes.However,a narrow electrochemicalstability window,water decomposition,and the consequent low battery operating voltage and energy density hinder the practical use of aqueous electrolytes.Therefore,developing novel aqueous electrolytes for sustainable,safe,high-performance LIBs remains challenging.This Review first commences by summarizing the roles and requirements of electrolytes–separators and then delineates the progression of aqueous electrolytes for LIBs,encompassing aqueous liquid and gel electrolyte development trends along with detailed principles of the electrolytes.These aqueous electrolytes are progressed based on strategies using superconcentrated salts,concentrated diluents,polymer additives,polymer networks,and artificial passivation layers,which are used for suppressing water decomposition and widening the electrochemical stability window of water of the electrolytes.In addition,this Review discusses potential strategies for the implementation of aqueous Li-metal batteries with improved electrolyte–electrode interfaces.A comprehensive understanding of each strategy in the aqueous system will assist in the design of an aqueous electrolyte and the development of sustainable and safe high-performance batteries. 展开更多
关键词 Lithium-ion battery(LIB) aqueous electrolyte Gel electrolyte Electrochemical stability window Li dendrite
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镁离子电池电解液的研究进展 被引量:2
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作者 满跃华 Pauline Jaumaux +4 位作者 徐一帆 费雅婷 莫祥银 汪国秀 周小四 《Science Bulletin》 SCIE EI CAS CSCD 2023年第16期1819-1842,M0004,共25页
镁离子电池因其高理论容量和丰富的自然资源被认为是下一代储能系统的潜在候选者.然而,镁离子电池的发展受到镁负极与常见的镁盐和传统有机液体电解液溶剂不相容的限制.因此,电解液的发展是开发高效镁离子电池的决定性因素.镁离子电池... 镁离子电池因其高理论容量和丰富的自然资源被认为是下一代储能系统的潜在候选者.然而,镁离子电池的发展受到镁负极与常见的镁盐和传统有机液体电解液溶剂不相容的限制.因此,电解液的发展是开发高效镁离子电池的决定性因素.镁离子电池的进一步应用所面临的一个主要挑战是开发具有适当的电化学窗口、与镁负极兼容、安全性高的电解液.当前,用于镁离子电池的主要电解液类型包括有机液体电解液、水系电解液、离子液体电解液和固态电解质.本文强调了每个类别中高性能镁离子电池电解液的最新进展,对先进电解液的设计策略进行了系统评估,分析了每种电解液的优点和局限性以及对现有问题的解决方案,并从电解液合成的角度讨论了镁离子电池的发展;最后,讨论并设想了镁离子电池电解液的未来设计,这将对进一步提高镁离子电池的性能提供支持. 展开更多
关键词 固态电解质 镁离子电池 理论容量 电化学窗口 水系电解液 有机液体 储能系统 系统评估
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Hetero Nucleus Growth Stabilizing Zinc Anode for High‑Biosecurity Zinc‑Ion Batteries 被引量:4
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作者 Jingjing Li Zhexuan Liu +6 位作者 Shaohua Han Peng Zhou Bingan Lu Jianda Zhou Zhiyuan Zeng Zhizhao Chen Jiang Zhou 《Nano-Micro Letters》 SCIE EI CAS CSCD 2023年第12期349-360,共12页
Biocompatible devices are widely employed in modernized lives and medical fields in the forms of wearable and implantable devices,raising higher requirements on the battery biocompatibility,high safety,low cost,and ex... Biocompatible devices are widely employed in modernized lives and medical fields in the forms of wearable and implantable devices,raising higher requirements on the battery biocompatibility,high safety,low cost,and excellent electrochemical performance,which become the evaluation criteria toward developing feasible biocompatible batteries.Herein,through conducting the battery implantation tests and leakage scene simulations on New Zealand rabbits,zinc sulfate electrolyte is proved to exhibit higher biosecurity and turns out to be one of the ideal zinc salts for biocompatible zinc-ion batteries(ZIBs).Furthermore,in order to mitigate the notorious dendrite growth and hydrogen evolution in mildly acidic electrolyte as well as improve their operating stability,Sn hetero nucleus is introduced to stabilize the zinc anode,which not only facilitates the planar zinc deposition,but also contributes to higher hydrogen evolution overpotential.Finally,a long lifetime of 1500 h for the symmetrical cell,the specific capacity of 150 mAh g^(-1)under 0.5 A g^(-1)for the Zn-MnO_(2)battery and 212 mAh g^(-1)under 5 A g^(-1)for the Zn—NH4V4O10 battery are obtained.This work may provide unique perspectives on biocompatible ZIBs toward the biosecurity of their cell components. 展开更多
关键词 aqueous zinc-ion batteries Biocompatible devices Operating stability Zinc anode Zinc salts electrolyte
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聚苯胺电容器在水系电解液中的性能研究 被引量:6
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作者 张爱勤 王力臻 +1 位作者 张勇 张林森 《化工新型材料》 CAS CSCD 北大核心 2008年第9期82-83,89,共3页
采用化学氧化聚合制备了十二烷基苯磺酸(DBSA)掺杂的导电聚苯胺(PANI)材料,采用恒流充放电、循环伏安和交流阻抗技术研究了以其作为电极材料的超级电容器在中性、酸性和碱性水系电解液中的性能。结果表明:电流密度为6mA/cm2时聚苯胺电... 采用化学氧化聚合制备了十二烷基苯磺酸(DBSA)掺杂的导电聚苯胺(PANI)材料,采用恒流充放电、循环伏安和交流阻抗技术研究了以其作为电极材料的超级电容器在中性、酸性和碱性水系电解液中的性能。结果表明:电流密度为6mA/cm2时聚苯胺电容器在酸性电解液(1mol/LH2SO4)中容量高达108.4F/g、循环性能好,在中性电解液中性能稍差。 展开更多
关键词 聚苯胺 超级电容器 水系电解液
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Asymmetric Electrolytes Design for Aqueous Multivalent Metal Ion Batteries 被引量:1
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作者 Xiaochen Yang Xinyu Wang +2 位作者 Yue Xiang Longtao Ma Wei Huang 《Nano-Micro Letters》 SCIE EI CSCD 2024年第3期227-253,共27页
With the rapid development of portable electronics and electric road vehicles,high-energy-density batteries have been becoming front-burner issues.Traditionally,homogeneous electrolyte cannot simultaneously meet diame... With the rapid development of portable electronics and electric road vehicles,high-energy-density batteries have been becoming front-burner issues.Traditionally,homogeneous electrolyte cannot simultaneously meet diametrically opposed demands of high-potential cathode and low-potential anode,which are essential for high-voltage batteries.Meanwhile,homogeneous electrolyte is difficult to achieve bi-or multi-functions to meet different requirements of electrodes.In comparison,the asymmetric electrolyte with bi-or multi-layer disparate components can satisfy distinct requirements by playing different roles of each electrolyte layer and meanwhile compensates weakness of individual electrolyte.Consequently,the asymmetric electrolyte can not only suppress by-product sedimentation and continuous electrolyte decomposition at the anode while preserving active substances at the cathode for high-voltage batteries with long cyclic lifespan.In this review,we comprehensively divide asymmetric electrolytes into three categories:decoupled liquid-state electrolytes,bi-phase solid/liquid electrolytes and decoupled asymmetric solid-state electrolytes.The design principles,reaction mechanism and mutual compatibility are also studied,respectively.Finally,we provide a comprehensive vision for the simplification of structure to reduce costs and increase device energy density,and the optimization of solvation structure at anolyte/catholyte interface to realize fast ion transport kinetics. 展开更多
关键词 Asymmetric electrolyte aqueous multivalent metal ion batteries Electrochemical stability windows electrolyte interface
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ZnO Additive Boosts Charging Speed and Cycling Stability of Electrolytic Zn–Mn Batteries 被引量:1
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作者 Jin Wu Yang Tang +6 位作者 Haohang Xu Guandie Ma Jinhong Jiang Changpeng Xian Maowen Xu Shu‑Juan Bao Hao Chen 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第4期293-304,共12页
Electrolytic aqueous zinc-manganese(Zn–Mn) batteries have the advantage of high discharge voltage and high capacity due to two-electron reactions. However, the pitfall of electrolytic Zn–Mn batteries is the sluggish... Electrolytic aqueous zinc-manganese(Zn–Mn) batteries have the advantage of high discharge voltage and high capacity due to two-electron reactions. However, the pitfall of electrolytic Zn–Mn batteries is the sluggish deposition reaction kinetics of manganese oxide during the charge process and short cycle life. We show that, incorporating ZnO electrolyte additive can form a neutral and highly viscous gel-like electrolyte and render a new form of electrolytic Zn–Mn batteries with significantly improved charging capabilities. Specifically, the ZnO gel-like electrolyte activates the zinc sulfate hydroxide hydrate assisted Mn^(2+) deposition reaction and induces phase and structure change of the deposited manganese oxide(Zn_(2)Mn_(3)O_8·H_(2)O nanorods array), resulting in a significant enhancement of the charge capability and discharge efficiency. The charge capacity increases to 2.5 mAh cm^(-2) after 1 h constant-voltage charging at 2.0 V vs. Zn/Zn^(2+), and the capacity can retain for up to 2000 cycles with negligible attenuation. This research lays the foundation for the advancement of electrolytic Zn–Mn batteries with enhanced charging capability. 展开更多
关键词 Electrolytic aqueous zinc-manganese batteries electrolyte pH value ZnO electrolyte additive Fast constant-voltage charging ability
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An Electrochemical Perspective of Aqueous Zinc Metal Anode 被引量:1
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作者 Huibo Yan Songmei Li +1 位作者 Jinyan Zhong Bin Li 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第1期274-312,共39页
Based on the attributes of nonflammability,environmental benignity,and cost-effectiveness of aqueous electrolytes,as well as the favorable compatibility of zinc metal with them,aqueous zinc ions batteries(AZIBs)become... Based on the attributes of nonflammability,environmental benignity,and cost-effectiveness of aqueous electrolytes,as well as the favorable compatibility of zinc metal with them,aqueous zinc ions batteries(AZIBs)become the leading energy storage candidate to meet the requirements of safety and low cost.Yet,aqueous electrolytes,acting as a double-edged sword,also play a negative role by directly or indirectly causing various parasitic reactions at the zinc anode side.These reactions include hydrogen evolution reaction,passivation,and dendrites,resulting in poor Coulombic efficiency and short lifespan of AZIBs.A comprehensive review of aqueous electrolytes chemistry,zinc chemistry,mechanism and chemistry of parasitic reactions,and their relationship is lacking.Moreover,the understanding of strategies for suppressing parasitic reactions from an electrochemical perspective is not profound enough.In this review,firstly,the chemistry of electrolytes,zinc anodes,and parasitic reactions and their relationship in AZIBs are deeply disclosed.Subsequently,the strategies for suppressing parasitic reactions from the perspective of enhancing the inherent thermodynamic stability of electrolytes and anodes,and lowering the dynamics of parasitic reactions at Zn/electrolyte interfaces are reviewed.Lastly,the perspectives on the future development direction of aqueous electrolytes,zinc anodes,and Zn/electrolyte interfaces are presented. 展开更多
关键词 aqueous zinc ions batteries Parasitic reactions aqueous electrolyte Zinc anode
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钠离子电池电解液溶剂化结构对SEI的影响
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作者 周钰祥 沈海林 陈小卉 《常州工学院学报》 2024年第1期34-39,共6页
在钠离子电池中电解液是关键组成部分,其内部的溶剂化结构对固体电解质界面(SEI)的形成和组成具有重要影响,并直接影响钠离子电池的电化学性能。文章探讨钠离子电池电解液中溶剂化结构对SEI性质和电池性能的影响机制,总结高浓度电解液... 在钠离子电池中电解液是关键组成部分,其内部的溶剂化结构对固体电解质界面(SEI)的形成和组成具有重要影响,并直接影响钠离子电池的电化学性能。文章探讨钠离子电池电解液中溶剂化结构对SEI性质和电池性能的影响机制,总结高浓度电解液溶剂化结构研究的相关成果,探讨溶剂浓度、种类及溶剂化结构对SEI的影响,阐述了电解液中阴阳离子、溶剂分子间作用与钠离子电池性能之间的构效关系。 展开更多
关键词 钠离子电池 水系电解液 有机类电解液 固体电解质界面
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Advances in electrolyte safety and stability of ion batteries under extreme conditions 被引量:1
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作者 Zhuo Chen Keliang Wang +5 位作者 Pucheng Pei Yayu Zuo Manhui Wei Hengwei Wang Pengfei Zhang Nuo Shang 《Nano Research》 SCIE EI CSCD 2023年第2期2311-2324,共14页
Electric vehicles have been promoted worldwide due to fast-charge technology of ion batteries.However,ion batteries’capacity and cycle life severely decay under extreme conditions,which is mostly related to electroly... Electric vehicles have been promoted worldwide due to fast-charge technology of ion batteries.However,ion batteries’capacity and cycle life severely decay under extreme conditions,which is mostly related to electrolyte conductivity drop and side reactions.This review highlights the safety and stability of ion batteries in terms of thermal stability,non-flammability,low-temperature,and so on,outlining the disadvantages of organic liquid electrolyte,and summarizing effective solutions of polymer electrolytes,solid-state electrolytes,ionic liquid electrolytes,and aqueous electrolytes for the batteries.Moreover,the outlook on the electrolytes is put forward,which is available for research and development of the next generation batteries. 展开更多
关键词 ion batteries battery safety polymer electrolyte solid state electrolyte ionic liquid electrolyte aqueous electrolyte
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