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钠离子电池关键材料研究及应用进展 被引量:21
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作者 刘永畅 陈程成 +3 位作者 张宁 王刘彬 向兴德 陈军 《电化学》 CAS CSCD 北大核心 2016年第5期437-452,共16页
钠离子资源丰富,分布广泛,价格低廉,因而钠离子电池被认为是下一代大规模储能技术的理想选择之一.然而,钠离子较大的半径和质量不利于它与电极材料的可逆反应.开发能够快速、稳定储钠的基质材料是提升钠离子电池性能的关键之一.此外,如... 钠离子资源丰富,分布广泛,价格低廉,因而钠离子电池被认为是下一代大规模储能技术的理想选择之一.然而,钠离子较大的半径和质量不利于它与电极材料的可逆反应.开发能够快速、稳定储钠的基质材料是提升钠离子电池性能的关键之一.此外,如何合理地优化电解质,匹配正负极材料,以实现高性能、高安全、低成本钠离子全电池的构建,切实将其推向市场,也是亟待解决的问题.本文综述了国内外钠离子电池关键材料(包括正极材料、负极材料和电解质)的研究进展,介绍了一些具有代表性的钠离子全电池实例.对钠离子电池的基础研究和实际应用具有一定参考价值和借鉴意义. 展开更多
关键词 钠离子电池 正极材料 负极材料 电解质 全电池
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高电压尖晶石镍锰酸锂材料全电池研究进展 被引量:9
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作者 谢玉虎 许鹏 +1 位作者 杨续来 谢佳 《电源技术》 CAS CSCD 北大核心 2014年第3期551-552,共2页
尖晶石镍锰酸锂(LiNi0.5Mn1.5O4)具有高达4.7 V(vs.Li/Li+)的放电平台,是高能量密度正极材料的首选。总结了高电压尖晶石镍锰酸锂材料分别与碳负极、合金负极、过渡金属氧化物以及钛酸锂等材料组成全电池的研究进展,为高电压材料全电池... 尖晶石镍锰酸锂(LiNi0.5Mn1.5O4)具有高达4.7 V(vs.Li/Li+)的放电平台,是高能量密度正极材料的首选。总结了高电压尖晶石镍锰酸锂材料分别与碳负极、合金负极、过渡金属氧化物以及钛酸锂等材料组成全电池的研究进展,为高电压材料全电池的开发提供了参考。 展开更多
关键词 锂离子电池 正极材料 尖晶石镍锰酸锂 全电池
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Dimensional Gradient Structure of CoSe2@CNTs-MXene Anode Assisted by Ether for High-Capacity,Stable Sodium Storage 被引量:9
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作者 Enze Xu Pengcheng Li +7 位作者 Junjie Quan Hanwen Zhu Li Wang Yajing Chang Zhenjie Sun Lei Chen Dabin Yu Yang Jiang 《Nano-Micro Letters》 SCIE EI CAS CSCD 2021年第2期377-390,共14页
Recently,abundant resources,low-cost sodium-ion batteries are deemed to the new-generation battery in the field of largescale energy storage.Nevertheless,poor active reaction dynamics,dissolution of intermediates and ... Recently,abundant resources,low-cost sodium-ion batteries are deemed to the new-generation battery in the field of largescale energy storage.Nevertheless,poor active reaction dynamics,dissolution of intermediates and electrolyte matching problems are significant challenges that need to be solved.Herein,dimensional gradient structure of sheet-tube-dots is constructed with CoSe2@CNTs-MXene.Gradient structure is conducive to fast migration of electrons and ions with the association of ether electrolyte.For half-cell,CoSe2@CNTs-MXene exhibits high initial coulomb efficiency(81.7%)and excellent cycling performance(400 mAh g^-1 cycling for 200 times in 2 Ag^−1).Phase transformation pathway from crystalline CoSe2-Na2Se with Co and then amorphous CoSe2 in the discharge/charge process is also explored by in situ X-ray diffraction.Density functional theory study discloses the CoSe2@CNTs-MXene in ether electrolyte system which contributes to stable sodium storage performance owing to the strong adsorption force from hierarchical structure and weak interaction between electrolyte and electrode interface.For full cell,CoSe2@CNTs-MXene//Na3V2(PO4)3/C full battery can also afford a competitively reversible capacity of 280 mAh g^−1 over 50 cycles.Concisely,profiting from dimensional gradient structure and matched electrolyte of CoSe2@CNTs-MXene hold great application potential for stable sodium storage. 展开更多
关键词 CoSe2@CNTs-MXene Ether electrolyte In situ XRD DFT calculation Sodium-ion full battery
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The influence of formation temperature on the solid electrolyte interphase of graphite in lithium ion batteries 被引量:9
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作者 Chong Yan Yu-Xing Yao +4 位作者 Wen-Long Cai Lei Xu Stefan Kaskel Ho Seok Park Jia-Qi Huang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2020年第10期335-338,共4页
Lithium-ion battery has greatly changed our lifestyle and the solid electrolyte interphase(SEI)covered on the graphite anode determines the service life of a battery.The formation method and the formation temperature ... Lithium-ion battery has greatly changed our lifestyle and the solid electrolyte interphase(SEI)covered on the graphite anode determines the service life of a battery.The formation method and the formation temperature at initial cycle of a battery determine the feature of the SEI.Herein,we investigate the gap of formation behavior in both a half cell(graphite matches with lithium anode)and a full cell(graphite matches with NCM,short for LiNixCoyMn1-x-yO2)at different temperatures.We conclude that high temperature causes severe side reactions and low temperature will result in low ionic conductive SEI layer,the interface formed at room temperature owns the best ionic conductivity and stability. 展开更多
关键词 Graphite anode Fast charging Solid electrolyte interphase(SEI) full battery Formation temperature
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Yolk-shell FeSe_(2)@CoSe_(2)/FeSe_(2) heterojunction as anode materials for sodium-ion batteries with high rate capability and stability 被引量:1
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作者 Liuyang Zhang Bicheng Zhu +4 位作者 Difa Xu Zibao Qian Ping Xie Tao Liu Jiaguo Yu 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2024年第5期185-195,共11页
Sodium-ion batteries are promising candidates for large-scale grid storage systems and other applications.Their foremost advantage derives from superior environmental credentials,enhanced safety as well as lower raw m... Sodium-ion batteries are promising candidates for large-scale grid storage systems and other applications.Their foremost advantage derives from superior environmental credentials,enhanced safety as well as lower raw material costs than lithium-ion batteries.It is still challenging to explore desirable anode material.In this study,FeSe_(2)@CoSe_(2)/FeSe_(2),with a yolk-shell structure was prepared by ion exchange and selenisation.The FeSe_(2)@CoSe_(2)/FeSe_(2)prepared as anode material for sodiumion batteries exhibits excellent rate capability due to the synergistic effect of bimetallic selenides and the interfacial effect of the heterostructure.Moreover,it delivers high performance(510 mAh g^(-1)at 0.2 A g^(-1)),superior rate capa-bility(90%retention at 5 A g^(-1)),and good long-time cycling stability(78%capacity retention after 1800 cycles at a high current density of 2 A g^(-1)).The optimized sodiumion full cell with FeSe_(2)@CoSe_(2)/FeSe_(2)as the anode and Na 3 V 2(PO 4)3 as the cathode still demonstrates excellent performance.Namely,a ca-pacity of 272 mAh g^(-1)(at 1 A g^(-1))within the operating voltage from 1 to 3.8 V can be obtained.This work illustrates the potential of bimetallic selenides with heterostructures for performance enhancement of sodium-ion batteries. 展开更多
关键词 Cobalt-iron selenide HETEROJUNCTIONS Sodium storage Anode material full battery
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Robust Cross-Linked Na_(3)V_(2)(PO_(4))_(2)F_(3) Full Sodium-Ion Batteries
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作者 Jinqiang Gao Ye Tian +12 位作者 Lianshan Ni Baowei Wang Kangyu Zou Yingchang Yang Ying Wang Craig E.Banks Dou Zhang Kechao Zhou Huan Liu Wentao Deng Guoqiang Zou Hongshuai Hou Xiaobo Ji 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2024年第1期9-20,共12页
Sodium-ion batteries(SIBs)have rapidly risen to the forefront of energy storage systems as a promising supplementary for Lithium-ion batteries(LIBs).Na_(3)V_(2)(PO_(4))_(2)F_(3)(NVPF)as a common cathode of SIBs,featur... Sodium-ion batteries(SIBs)have rapidly risen to the forefront of energy storage systems as a promising supplementary for Lithium-ion batteries(LIBs).Na_(3)V_(2)(PO_(4))_(2)F_(3)(NVPF)as a common cathode of SIBs,features the merits of high operating voltage,small volume change and favorable specific energy density.However,it suffers from poor cycling stability and rate performance induced by its low intrinsic conductivity.Herein,we propose an ingenious strategy targeting superior SIBs through cross-linked NVPF with multi-dimensional nanocarbon frameworks composed of amorphous carbon and carbon nanotubes(NVPF@C@CNTs).This rational design ensures favorable particle size for shortened sodium ion transmission pathway as well as improved electronic transfer network,thus leading to enhanced charge transfer kinetics and superior cycling stability.Benefited from this unique structure,significantly improved electrochemical properties are obtained,including high specific capacity(126.9 mAh g^(-1)at 1 C,1 C=128 mA g^(-1))and remarkably improved long-term cycling stability with 93.9%capacity retention after 1000 cycles at 20 C.The energy density of 286.8 Wh kg^(-1)can be reached for full cells with hard carbon as anode(NVPF@C@CNTs//HC).Additionally,the electrochemical performance of the full cell at high temperature is also investigated(95.3 mAh g^(-1)after 100 cycles at 1 C at 50℃).Such nanoscale dual-carbon networks engineering and thorough discussion of ion diffusion kinetics might make contributions to accelerating the process of phosphate cathodes in SIBs for large-scale energy storages. 展开更多
关键词 dual-nanocarbon networks full sodium-ion battery ion transfer kinetics Na_(3)V_(2)(PO_(4))_(2)F_(3) NASICON structure
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Dual-strategy modification on P2-Na_(0.67)Ni_(0.33)Mn_(0.67)O_(2)realizes stable high-voltage cathode and high energy density full cell for sodium-ion batteries 被引量:2
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作者 Guanglin Wan Bo Peng +4 位作者 Liping Zhao Feng Wang Lai Yu Rong Liu Genqiang Zhang 《SusMat》 2023年第1期58-71,共14页
P2-type Na_(0.67)Ni_(0.33)Mn_(0.67)O_(2)is considered as a potential cathode material for sodium-ion batteries due to the merits of high voltage,low cost,and air stability.However,the unsatisfied cycling stability and... P2-type Na_(0.67)Ni_(0.33)Mn_(0.67)O_(2)is considered as a potential cathode material for sodium-ion batteries due to the merits of high voltage,low cost,and air stability.However,the unsatisfied cycling stability and rate performance caused by the destructive phase transition and side reactions hinder its practical application.Herein,we present a feasible dual strategy of Mg^(2+)doping integrated with ZrO_(2)surface modification for P2-Na_(0.67)Ni_(0.33)Mn_(0.67)O_(2),which can well address the issues of phase transition and side reactions benefitting from the enhanced structural and interfacial stabilities.Specifically,it exhibits a decent cycling stability with a capacity retention of 81.5%at 1 C and promising rate performance with a discharge capacity of 76.6 mA h g^(−1)at 5 C.The in situ X-ray diffraction measurement confirms that the damaged P2-O2 phase transition is suppressed with better reversibility in high-voltage region,whereas the side reactions are inhibited due to the protective ZrO_(2)surfacemodification.Commendably,the full cell achieves an outstanding operating voltage of 3.57 V and a fabulous energy density of 238.91 W h kg^(−1)at 36.73 W kg^(−1),demonstrating great practicability.This work is expected to provide a new insight for designing stable high-voltage cathode materials and high energy density full cells for sodium ion batteries. 展开更多
关键词 CATHODE full cell high voltage layered oxide sodium-ion battery
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Alleviating mechanical degradation of hexacyanoferrate via strain locking during Na^(+) insertion/extraction for full sodium ion battery 被引量:5
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作者 Jianguo Sun Hualin Ye +6 位作者 Jin An Sam Oh Yao Sun Anna Plewa Yumei Wang Tian Wu Kaiyang Zeng Li Lu 《Nano Research》 SCIE EI CSCD 2022年第3期2123-2129,共7页
Generation of large strains upon Na^(+) intercalation is one of the prime concerns of the mechanical degradation of Prussian blue(PB)and its analogs.Structural construction from the atomic level is imperative to maint... Generation of large strains upon Na^(+) intercalation is one of the prime concerns of the mechanical degradation of Prussian blue(PB)and its analogs.Structural construction from the atomic level is imperative to maintain structural stability and ameliorate the long-term stability of PB.Herein,an inter nickel hexacyanoferrate(NNiFCN)is successfully introduced at the out layer of iron hexacyanoferrate(NFFCN)through ion exchange to improve structural stability through compressive stress locking by forming NNiFCN shell.Furthermore,the kinetics of sodium ion diffusion is enhanced through the built-in electric pathway.The electrochemical performance is therefore significantly improved with a remarkable long-term cycling stability over 3,000 cycles at 500 mA·g^(–1) in the full sodium-ion batteries(SIBs)with a maximum energy density of 91.94 Wh·g^(–1),indicating that the core-shell structured NNiFCN/NFFCN could be the low-cost and high-performance cathode for full SIBs in large-scale EES applications. 展开更多
关键词 mechanical degradation core-shell structure Prussian blue full sodium-ion battery built-in electric field
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Tuning crystal structure and redox potential of NASICON-type cathodes for sodium-ion batteries 被引量:6
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作者 Xuemei Ma Xinxin Cao +7 位作者 Yifan Zhou Shan Guo Xiaodong Shi Guozhao Fang Anqiang Pan Bingan Lu Jiang Zhou Shuquan Liang 《Nano Research》 SCIE EI CAS CSCD 2020年第12期3330-3337,共8页
Sodium superionic conductor(NASICON)-type compounds have been regarded as promising cathodes for sodium-ion batteries(SIBs)due to their favorable ionic conductivity and robust structural stability.However,their high c... Sodium superionic conductor(NASICON)-type compounds have been regarded as promising cathodes for sodium-ion batteries(SIBs)due to their favorable ionic conductivity and robust structural stability.However,their high cost and relatively low energy density restrict their further practical application,which can be tailored by widening the operating voltages with earth-abundant elements such as Mn.Here,we propose a rational strategy of infusing Mn element in NASICON frameworks with sufficiently mobile sodium ions that enhances the redox voltage and ionic migration activity.The optimized structure of Na3.5Mn0.5V1.5(PO4)3/C is achieved and investigated systematically to be a durable cathode(76.6%capacity retention over 5,000 cycles at 20 C)for SIBs,which exhibits high reversible capacity(113.1 mAh·g^−1 at 0.5 C)with relatively low volume change(7.6%).Importantly,its high-areal-loading and temperature-resistant sodium ion storage properties are evaluated,and the full-cell configuration is demonstrated.This work indicates that this Na3.5Mn0.5V1.5(PO4)3/C composite could be a promising cathode candidate for SIBs. 展开更多
关键词 sodium superionic conductor(NASICON)-type crystal structure cathode material full cell sodium ion battery
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3000马力混合动力(重混)调车机车电气系统设计 被引量:5
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作者 温吉斌 赵刚 +3 位作者 柳占宇 杜霏 吕婷婷 孙志伟 《机车电传动》 北大核心 2022年第3期116-124,共9页
为适应轨道交通绿色低碳和节能环保的发展需求,结合中国国家铁路集团有限公司科研立项任务,以平台化和模块化的设计理念为指导,研制开发2237 kW(3000马力)混合动力(重混)调车机车,运用大容量锂离子动力电池和装车功率为1250 kW的6240H... 为适应轨道交通绿色低碳和节能环保的发展需求,结合中国国家铁路集团有限公司科研立项任务,以平台化和模块化的设计理念为指导,研制开发2237 kW(3000马力)混合动力(重混)调车机车,运用大容量锂离子动力电池和装车功率为1250 kW的6240H型柴油机混合供电,实现短时1900 kW的轮周牵引功率需求。文章通过分析混合动力(重混)调车机车牵引力选择依据、电气系统设计原则、系统组成和传动系统拓扑结构等,形成了电气系统的设计方案,并通过试验验证了电气系统的稳定性、参数设置的合理性和各项性能指标。验证结果表明,机车牵引力选择合理,机车具有启动加速快、节能减排、环保降噪等优点,满足调车作业需求,实现了预期设计目标。 展开更多
关键词 重混 混合动力 节能环保 电气系统 动力电池 FXN3D
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Seamless Stitching of Redox Windows to Enable High-Voltage Resilient Solid Sodium Ion Batteries
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作者 Xiangdan Zhang Yuanyuan Huang +8 位作者 Xiaoyi Hu Ruxin Guo Yongshang Zhang Zhiheng Wu Guoqin Cao Yuran Yu Zhuo Wang Yonglong Shen Guosheng Shao 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2023年第6期445-454,共10页
While sulfide solid electrolytes such as Na_(11)Sn_(2)PS_(12)can allow fast transport of Na+ions,their utilization in solid sodium ion batteries is rather unsuccessful since they are not electrochemically compatible t... While sulfide solid electrolytes such as Na_(11)Sn_(2)PS_(12)can allow fast transport of Na+ions,their utilization in solid sodium ion batteries is rather unsuccessful since they are not electrochemically compatible to both high-voltage cathodes and sodium metal anode.In this work,we devise an effective approach toward realizing solid sodium ion batteries,using the Na_(11)Sn_(2)PS_(12)electrolyte and slurry-coated NASICON-type Na_(3)MnTi(PO_(4))_(3)@C as high-voltage cathode,highly beneficial for low processing cost and high content/loading of active cathode matter.We report that through significantly improved integrity of electrolyte-cathode interface,such solid sodium ion batteries can deliver outstanding cycling and rate performance,with a charge voltage resilience up to 4.1 V,a high cathode discharge capacity of 128.7 mAh g^(-1)against the Na_(3)MnTi(PO_(4))_(3)@C in cathode is achieved at 0.05 C,and capacity retention ratio of 82%with a rate of 0.1 C is realized after prolonged cycling at room temperature.Besides,we demonstrate that such a solid sodium ion battery can even perform at a sub-zero Celsius temperature of-10℃,when the conventional control cell using liquid electrolyte completely fail to function.This work is to offer a dependable avenue in engineering next generation of safe solid ion batteries based on highly sustainable and much cheaper material resources. 展开更多
关键词 C-coated NASICON nanocrystals electrolyte-electrode interface full-cathode capacity Na_(11)Sn_(2)PS_(12) solid sodium-ion battery
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LiNi_(1/3)Co_(1/3)Mn_(1/3)O_(2)/Li_(4)Ti_(5)O_(12)全电池的制备及电化学性能测试
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作者 林成 习汝文 +2 位作者 吴榆 李佩研 高群 《时代汽车》 2023年第21期137-140,153,共5页
为了提高LiNi_(1/3)Co_(1/3)Mn_(1/3)O_(2)/Li_(4)Ti_(5)O_(12)全电池的电化学性能,本文通过对比实验,研究了在不同的N/P比以及充放电电压区间下的全电池性能表现。经对比数据发现,当正极材料LiNi_(1/3)Co_(1/3)Mn_(1/3)O_(2)(NCM111)... 为了提高LiNi_(1/3)Co_(1/3)Mn_(1/3)O_(2)/Li_(4)Ti_(5)O_(12)全电池的电化学性能,本文通过对比实验,研究了在不同的N/P比以及充放电电压区间下的全电池性能表现。经对比数据发现,当正极材料LiNi_(1/3)Co_(1/3)Mn_(1/3)O_(2)(NCM111)和负极材料Li_(4)Ti_(5)O_(12)(LTO)的N/P比为1.0:1.0,充放电电压区间为0.5~3.2V时,电池具备较好的比容量、库伦效率和循环稳定性。本文为后续LiNi_(1/3)Co_(1/3)Mn_(1/3)O_(2)/Li_(4)Ti_(5)O_(12)全电池的工业化制造提供了帮助。 展开更多
关键词 LiNi_(1/3)Co_(1/3)Mn_(1/3)O_(2) Li_(4)Ti_(5)O_(12) 全电池 N/P比 电压区间
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LiNi_(0.5)Mn_(1.5)O_4粒径对电池循环性能的影响 被引量:3
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作者 汪涛 樊少娟 +1 位作者 王启岁 杨续来 《电池》 CAS CSCD 北大核心 2016年第6期321-324,共4页
以粒径为3μm和1μm的LiNi_(0.5)Mn_(1.5)O_4匹配石墨制备LiNi_(0.5)Mn_(1.5)O_4/石墨全电池,研究LiNi_(0.5)Mn_(1.5)O_4粒径对全电池循环性能的影响。粒径为3μm和1μm的LiNi_(0.5)Mn_(1.5)O_4制备的电池(0.50 C,4.1~4.8 V)25℃下第20... 以粒径为3μm和1μm的LiNi_(0.5)Mn_(1.5)O_4匹配石墨制备LiNi_(0.5)Mn_(1.5)O_4/石墨全电池,研究LiNi_(0.5)Mn_(1.5)O_4粒径对全电池循环性能的影响。粒径为3μm和1μm的LiNi_(0.5)Mn_(1.5)O_4制备的电池(0.50 C,4.1~4.8 V)25℃下第205次循环的容量保持率分别为65.7%和60.6%;45℃下第55次循环的容量保持率分别为55.4%和37.6%。粒径更大的LiNi_(0.5)Mn_(1.5)O_4由于具有较小的电解液接触面积,可减缓Jahn-Teller效应造成的Ni^(2+)和Mn^(2+)在电解液中的溶出,具有更好的循环稳定性。 展开更多
关键词 LINI0.5MN1.5O4 粒径 锂离子电池 全电池 循环稳定性
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An all-organic aqueous potassium dual-ion battery 被引量:2
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作者 Junmin Ge Xianhui Yi +1 位作者 Ling Fan Bingan Lu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第6期28-33,I0002,共7页
Benefiting from the environmental friendliness of organic electrodes and the high security of aqueous electrolyte,an all-organic aqueous potassium dual-ion full battery(APDIB) was assembled with 21 M potassium bis(flu... Benefiting from the environmental friendliness of organic electrodes and the high security of aqueous electrolyte,an all-organic aqueous potassium dual-ion full battery(APDIB) was assembled with 21 M potassium bis(fluoroslufonyl)imide(KFSI) water-in-salt as the electrolyte.The APDIB could deliver a reversible capacity of around 50 mAh g^(-1) at 200 mA g^(-1)(based on the weight of total active materials),a long cycle stability over 900 cycles at 500 mA g^(-1) and a high coulombic efficiency of 98.5%.The reaction mechanism of APDIB during the charge/discharge processes is verified:the FSI-could associate/disassociate with the nitrogen atom in the polytriphenylamine(PTPAn) cathode,while the K^(+) could react with C=O bonds in the 3,4,9,10-perylenetetracarboxylic diimide(PTCDI) anode reversibly.Our work contributes toward the understanding the nature of water-into-salt electrolyte and successfully constructed all-organic APDIB. 展开更多
关键词 All-organic electrode Potassium ion battery Dual-ion full battery Aqueous high concentration electrolyte High safety
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High-Performance Potassium-Ion-Based Full Battery Enabled by an Ionic-Drill Strategy 被引量:2
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作者 Chunlei Jiang Xing Meng +3 位作者 Yongping Zheng Jiaxiao Yan Zhiming Zhou Yongbing Tang 《CCS Chemistry》 CAS 2021年第9期85-94,共10页
Potassium-ion(K^(+))batteries(PIBs)show great potential in large-scale energy storage applications owing to their low-cost and high-operating voltage.However,the development of practical PIBs remains hindered by their... Potassium-ion(K^(+))batteries(PIBs)show great potential in large-scale energy storage applications owing to their low-cost and high-operating voltage.However,the development of practical PIBs remains hindered by their poor performance rate due to the large ionic radius of the K^(+)(1.38Å).Herein,we report an ionic-drill strategy using smaller lithium ions(Li+)to open diffusion channels for K^(+)in the host electrode and enable much faster kinetics of K-ions. 展开更多
关键词 ionic-drill strategy rate performance dif-fusion kinetics potassium-ion full battery
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分级过程对LiFePO_4/C电池性能的影响 被引量:2
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作者 刘兴亮 杨茂萍 +1 位作者 汪伟伟 曹勇 《电化学》 CSCD 北大核心 2017年第6期661-666,共6页
本文采用磷酸铁工艺路线制备碳包覆的磷酸铁锂(LiFePO_4/C)复合正极材料,系统考察了气流粉碎分级过程对LiFePO_4/C正极材料及全电池性能的影响.研究表明,分级前磷酸铁锂颗粒粒度较大,中值粒径为17.37μm,呈规整球形形貌,具有较高的振实... 本文采用磷酸铁工艺路线制备碳包覆的磷酸铁锂(LiFePO_4/C)复合正极材料,系统考察了气流粉碎分级过程对LiFePO_4/C正极材料及全电池性能的影响.研究表明,分级前磷酸铁锂颗粒粒度较大,中值粒径为17.37μm,呈规整球形形貌,具有较高的振实密度和碳含量;分级后球形被打碎,振实减小.全电池测试结果显示,分级过程对全电池的容量、交流内阻、直流内阻、功率密度的影响较小;但分级前电芯的低温放电容量保持率和550周的高温循环保持率分别60.1%和87.5%,明显优于分级后的49.5%和84.7%.分级前碳层能均匀包覆在磷酸铁锂表面形成均匀导电网络,而分级过程将磷酸铁锂的碳层有一定的剥离和破坏导致性能下降. 展开更多
关键词 磷酸铁锂 气流粉碎分级 全电池 电化学性能
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FePO_4包覆的LiMn_(1.5)Ni_(0.5)O_4/Li_(3.9)Na_(0.1)Ti_5O_(12)全电池性能 被引量:1
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作者 朱彦荣 陈宾 +2 位作者 郝国栋 伊廷锋 诸荣孙 《电源技术》 CAS CSCD 北大核心 2015年第5期896-899,共4页
分别采用溶胶凝胶法和高温固相法合成了Fe PO4包覆的Li Mn1.5Ni0.5O4正极材料和Li3.9Na0.1Ti5O12负极材料,并组装了Li Mn1.5Ni0.5O4/Li3.9Na0.1Ti5O12(LMNO/LNTO)全电池,采用充放电测试、循环伏安(CV)和电化学阻抗(EIS)研究了Fe PO4包覆... 分别采用溶胶凝胶法和高温固相法合成了Fe PO4包覆的Li Mn1.5Ni0.5O4正极材料和Li3.9Na0.1Ti5O12负极材料,并组装了Li Mn1.5Ni0.5O4/Li3.9Na0.1Ti5O12(LMNO/LNTO)全电池,采用充放电测试、循环伏安(CV)和电化学阻抗(EIS)研究了Fe PO4包覆对Li Mn1.5Ni0.5O4/Li4Ti5O12全电池电化学性能的影响。结果表明,Fe PO4的包覆抑制了Li Mn1.5Ni0.5O4高温合成时Mn3+的产生,有利于锂离子的可逆脱嵌。Fe PO4包覆的Li Mn1.5Ni0.5O4/Li3.9Na0.1Ti5O12(FP-LMNO/LNTO)比LMNO/LTO全电池具有更高的放电容量、循环性能、库仑效率和能量密度。FP-LMNO/LNTO全电池更适合作为动力锂离子电池。 展开更多
关键词 锂离子电池 Li3.9Na0.1Ti5O12 LiMn1.5Ni0.5O4 电化学性能 全电池
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正硅酸乙酯对高电压镍锰酸锂基全电池电化学性能的影响
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作者 蔡敏 吴春燕 +4 位作者 谢贻顺 班贵 赖飞燕 黄小英 张晓辉 《应用化学》 CAS CSCD 北大核心 2020年第11期1301-1308,共8页
为了提高镍锰酸锂全电池的电化学性能,本文采用物理混合的方法在负极浆料中加入正硅酸乙酯(TEOS),并按m(TEOS)∶m(石墨)=0∶100、5∶100、10∶100、16∶100、20∶100的比例进行搅拌混合。以镍锰酸锂为正极,石墨为负极,组装成502030型软... 为了提高镍锰酸锂全电池的电化学性能,本文采用物理混合的方法在负极浆料中加入正硅酸乙酯(TEOS),并按m(TEOS)∶m(石墨)=0∶100、5∶100、10∶100、16∶100、20∶100的比例进行搅拌混合。以镍锰酸锂为正极,石墨为负极,组装成502030型软包装锂离子电池,并对该电池进行恒流充放电和内阻等测试。测试结果显示,0TEOS(m(TEOS)∶m(石墨)=0∶100)样品的电池内阻为159 mΩ,循环200圈后,容量保持率为52.6%,放电比容量为46 mA·h/g;16TEOS(m(TEOS)∶m(石墨)=16∶100)样品的电池为105 mΩ,65.7%和62.9 mA·h/g。实验结果表明:通过物理混合的方法在负极浆料中加入TEOS,有利于在负极表面形成结构稳定的人工固体电解质膜(SEI膜),提高镍锰酸锂材料的循环和倍率性能。 展开更多
关键词 锂离子电池 镍锰酸锂 正硅酸乙酯 全电池 电化学性能
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硅氧碳负极全电池容量发挥影响因素研究
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作者 沈华平 杨桃 +1 位作者 吉盛 许彬 《泰州职业技术学院学报》 2021年第2期51-54,共4页
SiOx材料因其高克容量发挥和较低的体积膨胀成为当前热门的锂离子电池负极材料,但其首次效率较低,在电池首次充电时会消耗更多的活性锂。文章通过用不同比例的SiOx与人造石墨混合制备SiOx-C复合负极材料,并制备半电池和全电池,分析了影... SiOx材料因其高克容量发挥和较低的体积膨胀成为当前热门的锂离子电池负极材料,但其首次效率较低,在电池首次充电时会消耗更多的活性锂。文章通过用不同比例的SiOx与人造石墨混合制备SiOx-C复合负极材料,并制备半电池和全电池,分析了影响SiOx-C全电池容量发挥的因素,结果显示SiOx-C复合材料中,虽然SiOx含量的提高可以提高材料的克容量,但是材料首次效率不断降低,降低了全电池容量的发挥,且全电池需要放电至更低的电压,才能完全发挥容量。 展开更多
关键词 SiOx材料 全电池 容量
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全钒液流电池技术研究进展 被引量:9
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作者 魏甲明 刘召波 +5 位作者 陈宋璇 杜国山 秦丽娟 王宇 李晓艳 付云枫 《中国有色冶金》 CAS 北大核心 2022年第3期14-21,共8页
钒氧化还原液流电池是一种安全、环保、稳定、寿命长的电化学储能设备,对绿电储能和双碳政策实施具有重要意义。本文首先介绍了钒液流电池结构与特点;然后详细综述了钒电池的应用情况以及钒电池中钒电解液、电极和隔膜的研究进展情况;... 钒氧化还原液流电池是一种安全、环保、稳定、寿命长的电化学储能设备,对绿电储能和双碳政策实施具有重要意义。本文首先介绍了钒液流电池结构与特点;然后详细综述了钒电池的应用情况以及钒电池中钒电解液、电极和隔膜的研究进展情况;随后对钒资源、全钒液流电池国家相关政策进行了简述,并对当前钒液流电池市场规模根据现有数据进行了估算。最后,总结钒电池技术与产业发展现状,并展望了未来重点研究方向。 展开更多
关键词 钒资源 全钒液流电池 电储能 钒电解液 钒液流电池电极 钒电池隔膜
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