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KOH activated carbon derived from biomass-banana fibers as an efficient negative electrode in high performance asymmetric supercapacitor 被引量:5
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作者 ChaitraK Vinny R T +6 位作者 Sivaraman P Narendra Reddy Chunyan Hu Krishna Venkatesh Vivek C S Nagaraju N Kathyayini N 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2017年第1期56-62,共7页
Here we demonstrate the fabrication, electrochemical performance and application of an asymmetric supercapacitor (AS) device constructed with ss-Ni(OH)(2)/MWCNTs as positive electrode and KOH activated honeycomb-like ... Here we demonstrate the fabrication, electrochemical performance and application of an asymmetric supercapacitor (AS) device constructed with ss-Ni(OH)(2)/MWCNTs as positive electrode and KOH activated honeycomb-like porous carbon (K-PC) derived from banana fibers as negative electrode. Initially, the electrochemical performance of hydrothermally synthesized ss-Ni(OH)(2)/MWCNTs nanocomposite and K-PC was studied in a three-electrode system using 1 M KOH. These materials exhibited a specific capacitance (Cs) of 1327 Fig and 324 F/g respectively at a scan rate of 10 mV/s. Further, the AS device i.e., ss-Ni(OH)(2)/MWCNTs// K-PC in 1 M KOH solution, demonstrated a Cs of 156 F/g at scan rate of 10 mV/s in a broad cell voltage of 0-2.2 V. The device demonstrated a good rate capability by maintaining a Cs of 59 F/g even at high current density (25 A/g). The device also offered high energy density of 63 Wh/kg with maximum power density of 5.2 kW/kg. The AS device exhibited excellent cycle life with 100% capacitance retention at 5000th cycle at a high current density of 25 A/g. Two AS devices connected in series were employed for powering a pair of LEDs of different colors and also a mini fan. (C) 2016 Science Press and Dalian Institute of Chemical Physics, Chinese Academy of Sciences. Published by Elsevier B.V. and Science Press. All rights reserved. 展开更多
关键词 Asymmetric supercapacitor device Activated porous carbon High energy density cyclability Power source
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Rocking-chair ammonium ion battery with high rate and long-cycle life 被引量:1
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作者 Tongkai Wang Xiaojuan Li +5 位作者 Shunshun Zhao Hongxia Bu Chuanlin Li Na Li Xixi Zhang Xijin Xu 《Chinese Chemical Letters》 SCIE CAS CSCD 2024年第1期563-567,共5页
Aqueous rechargeable ammonium-ion batteries(AIBs)have drew considerable attention because of their capacity for high rates,low cost,and high safety.However,developing desired electrodes requiring stable structure in t... Aqueous rechargeable ammonium-ion batteries(AIBs)have drew considerable attention because of their capacity for high rates,low cost,and high safety.However,developing desired electrodes requiring stable structure in the aqueous fast ammoniation/de-ammoniation becomes urgent.Herein,an ammonium ion full battery using Cu_(3)[Fe(CN)_(6)]_(2)(CuHCF)acting to be a cathode and barium vanadate(BVO)acting to be an anode is described.Its excellent electrochemical behavior of Prussian blue analogs and the perfectly matched lattice structure of NH_(4)^(+)is expected.And the open structure of vanadium compounds satisfies the fast ammoniation/de-ammoniation of NH4+is also achieved.As a result of these synergistic effects,the BVO//CuHCF full cell retains 80.5 percent of its capacity following 1000 cycling.These achievements provide new ideas for developing low-cost and long-life AIBs. 展开更多
关键词 Copper hexacyanoferrate Vanadium-based compounds Aqueous ammonium ion batteries Long-term cyclability Ammonium ion storage mechanism
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低热固相法制备纳米MnO_2/CNT超电容复合电极的循环稳定性(英文) 被引量:7
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作者 胡洁 袁安保 +1 位作者 王玉芹 王秀玲 《物理化学学报》 SCIE CAS CSCD 北大核心 2009年第5期987-993,共7页
为了改善纳米MnO2超级电容器电极的充放电循环稳定性,以Mn(OAc)2·4H2O、NH4HCO3和碳纳米管(CNT)为原料,采用低热固相反应得到前驱体,再经焙烧和酸处理,制备了一系列CNT含量不同的纳米MnO2/CNT复合电极材料,并用X射线衍射(XRD)、透... 为了改善纳米MnO2超级电容器电极的充放电循环稳定性,以Mn(OAc)2·4H2O、NH4HCO3和碳纳米管(CNT)为原料,采用低热固相反应得到前驱体,再经焙烧和酸处理,制备了一系列CNT含量不同的纳米MnO2/CNT复合电极材料,并用X射线衍射(XRD)、透射电镜(TEM)和Brunauer-Emmett-Teller(BET)比表面积测定方法对其进行了表征.XRD分析结果表明,复合材料中的MnO2为纳米γ-MnO2.研究了复合电极在1mol·L-1LiOH电解质中的电化学性能,并与不含CNT的纯纳米MnO2电极进行了比较.结果表明,含CNTs为10%(w,质量分数,下同)和20%的MnO2/CNT复合电极的循环稳定性远优于纯纳米MnO2电极的循环稳定性,其中含10%CNTs的MnO2/CNT复合电极不仅具有良好的循环稳定性,而且在1000mA·g-1高倍率充放电条件下仍具有200F·g-1的高比电容. 展开更多
关键词 纳米MnO2/CNT复合电极 超电容性能 循环稳定性 低热固相法 LiOH电解质
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Achieving high-capacity and long-life K^(+)storage enabled by constructing yolk-shell Sb_(2)S_(3)@N,S-doped carbon nanorod anodes 被引量:3
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作者 Bensheng Xiao Hehe Zhang +9 位作者 Zhefei Sun Miao Li Yingzhu Fan Haichen Lin Haodong Liu Bing Jiang Yanbin Shen Ming-Sheng Wang Meicheng Li Qiaobao Zhang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第1期547-556,I0014,共11页
As promising anode candidates for potassium-ion batteries(PIBs),antimony sulfide(Sb_(2)S_(3))possesses high specific capacity but suffers from massive volume expansion and sluggish kinetics due to the large K^(+)inser... As promising anode candidates for potassium-ion batteries(PIBs),antimony sulfide(Sb_(2)S_(3))possesses high specific capacity but suffers from massive volume expansion and sluggish kinetics due to the large K^(+)insertion,resulting in inferior cycling and rate performance.To address these challenges,a yolk-shell structured Sb_(2)S_(3)confined in N,S co-doped hollow carbon nanorod(YS-Sb_(2)S_(3)@NSC)working as a viable anode for PIBs is proposed.As directly verified by in situ transmission electron microscopy(TEM),the buffer space between the Sb_(2)S_(3)core and thin carbon shell can effectively accommodate the large expansion stress of Sb_(2)S_(3)without cracking the shell and the carbon shell can accelerate electron transport and K^(+)diffusion,which plays a significant role in reinforcing the structural stability and facilitating charge transfer.As a result,the YS-Sb_(2)S_(3)@NSC electrode delivers a high reversible K^(+)storage capacity of 594.58 m A h g^(-1)at 0.1 A g^(-1)and a long cycle life with a slight capacity degradation(0.01%per cycle)for 2000 cycles at 1 A g^(-1)while maintaining outstanding rate capability.Importantly,utilizing in in situ/ex situ microscopic and spectroscopic characterizations,the origins of performance enhancement and K^(+)storage mechanism of Sb_(2)S_(3)were clearly elucidated.This work provides valuable insights into the rational design of high-performance and durable transition metal sulfides-based anodes for PIBs. 展开更多
关键词 Antimony sulfide Yolk-shell structure In situ TEM Potassium-ion batteries Super-stable cyclability
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Rationally designing electrolyte additives for highly improving cyclability of LiNi_(0.5)Mn_(1.5)O_(4)/Graphite cells 被引量:1
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作者 Zhiyong Xia Kuan Zhou +8 位作者 Xiaoyan Lin Zhangyating Xie Qiurong Chen Xiaoqing Li Jie Cai Suli Li Hai Wang Mengqing Xu Weishan Li 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第4期266-275,共10页
High voltage is necessary for high energy lithium-ion batteries but difficult to achieve because of the highly deteriorated cyclability of the batteries.A novel strategy is developed to extend cyclability of a high vo... High voltage is necessary for high energy lithium-ion batteries but difficult to achieve because of the highly deteriorated cyclability of the batteries.A novel strategy is developed to extend cyclability of a high voltage lithium-ion battery,LiNi_(0.5)Mn_(1.5)O_(4)/Graphite(LNMO/Graphite)cell,which emphasizes a rational design of an electrolyte additive that can effectively construct protective interphases on anode and cathode and highly eliminate the effect of hydrogen fluoride(HF).5-Trifluoromethylpyridine-trime thyl lithium borate(LTFMP-TMB),is synthesized,featuring with multi-functionalities.Its anion TFMPTMB-tends to be enriched on cathode and can be preferentially oxidized yielding TMB and radical TFMP-.Both TMB and radical TFMP can combine HF and thus eliminate the detrimental effect of HF on cathode,while the TMB dragged on cathode thus takes a preferential oxidation and constructs a protective cathode interphase.On the other hand,LTFMP-TMB is preferentially reduced on anode and constructs a protective anode interphase.Consequently,a small amount of LTFMP-TMB(0.2%)in 1.0 M LiPF6in EC/DEC/EMC(3/2/5,wt%)results in a highly improved cyclability of LNMO/Graphite cell,with the capacity retention enhanced from 52%to 80%after 150 cycles at 0.5 C between 3.5 and 4.8 V.The as-developed strategy provides a model of designing electrolyte additives for improving cyclability of high voltage batteries. 展开更多
关键词 Electrolyte additive Design and synthesis cyclability High voltage batteries Cathode and anode interphases
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Stabilizing High-Nickel Cathodes via Interfacial Hydrogen Bonding Effects Using a Hydrofluoric Acid-Scavenging Separator
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作者 Shijie Zhong Liwei Dong +6 位作者 Botao Yuan Yueyao Dong Qun Li Yuanpeng Ji Yuanpeng Liu Jiecai Han Weidong He 《Engineering》 SCIE EI CAS CSCD 2024年第8期117-126,共10页
Nickel-rich layered Li transition metal oxides are the most promising cathode materials for high-energydensity Li-ion batteries.However,they exhibit rapid capacity degradation induced by transition metal dissolution a... Nickel-rich layered Li transition metal oxides are the most promising cathode materials for high-energydensity Li-ion batteries.However,they exhibit rapid capacity degradation induced by transition metal dissolution and structural reconstruction,which are associated with hydrofluoric acid(HF)generation from lithium hexafluorophosphate decomposition.The potential for thermal runaway during the working process poses another challenge.Separators are promising components to alleviate the aforementioned obstacles.Herein,an ultrathin double-layered separator with a 10 lm polyimide(PI)basement and a 2 lm polyvinylidene difluoride(PVDF)coating layer is designed and fabricated by combining a nonsolvent induced phase inversion process and coating method.The PI skeleton provides good stability against potential thermal shrinkage,and the strong PI-PVDF bonding endows the composite separator with robust structural integrity;these characteristics jointly contribute to the extraordinary mechanical tolerance of the separator at elevated temperatures.Additionally,unique HF-scavenging effects are achieved with the formation of-CO…H-F hydrogen bonds for the abundant HF coordination sites provided by the imide ring;hence,the layered Ni-rich cathodes are protected from HF attack,which ultimately reduces transition metal dissolution and facilitates long-term cyclability of the Ni-rich cathodes.Li||NCM811 batteries(where“NCM”indicates LiNi_(x)Co_(y)Mn_(1-x-y)O_(2))with the proposed composite separator exhibit a 90.6%capacity retention after 400 cycles at room temperature and remain sustainable at 60℃with a 91.4%capacity retention after 200 cycles.By adopting a new perspective on separators,this study presents a feasible and promising strategy for suppressing capacity degradation and enabling the safe operation of Ni-rich cathode materials. 展开更多
关键词 Nickel-rich cathodes Composite separator HF scavenging Transition metal dissolution Long-term cyclability
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Advances of graphene application in electrode materials for lithium ion batteries 被引量:6
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作者 LU XiaoYu JIN XiHai SUN Jing 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第11期1829-1840,共12页
The demands for better energy storage devices due to fast development of electric vehicles(EVs) have raised increasing attention on lithium ion batteries(LIBs) with high power and energy densities. In this paper, we p... The demands for better energy storage devices due to fast development of electric vehicles(EVs) have raised increasing attention on lithium ion batteries(LIBs) with high power and energy densities. In this paper, we provide an overview of recent progress in graphene-based electrode materials. Graphene with its great electrical conductivity and mechanical properties have apparently improved the performance of traditional electrode materials. The methods and electrochemical properties of advanced graphene composite as cathode and anode for LIBs are reviewed. Two novel kinds of graphene hybrid materials are specially highlighted: three-dimensional porous and flexible binder-free graphene-based materials. Challenges for LIBs and future research trend in the development of high-performance electrode materials are further discussed. 展开更多
关键词 lithium ion batteries (LIBs) GRAPHENE cyclability rate capability NANOMATERIALS three dimensional structure flexibleand binder-free electrode
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3D uniform nitrogen-doped carbon skeleton for ultra-stable sodium metal anode 被引量:6
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作者 Ben Liu Danni Lei +8 位作者 Jin Wang Qingfei Zhang Yinggan Zhang Wei He Hongfei Zheng Baisheng Sa Qingshui Xie Dong-Liang Peng Baihua Qu 《Nano Research》 SCIE EI CAS CSCD 2020年第8期2136-2142,共7页
Sodium metal batteries are arousing extensive interest owing to their high energy density,low cost and wide resource.However,the practical development of sodium metal batteries is inherently plagued by the severe volu... Sodium metal batteries are arousing extensive interest owing to their high energy density,low cost and wide resource.However,the practical development of sodium metal batteries is inherently plagued by the severe volume expansion and the dendrite growth of sodium metal anode during long cycles under high current density.Herein,a simple electrospinning method is applied to construct the uniformly nitrogen-doped porous carbon fiber skeleton and used as three-dimensional(3D)current collector for sodium metal anode,which has high specific surface area(1,098 m^2/g)and strong binding to sodium metal.As a result,nitrogen-doped carbon fiber current collector shows a low sodium deposition overpotential and a highly stable cyclability for 3,500 h with a high coulombic effciency of 99.9%at 2 mA/cm^2 and 2 mAh/cm^2.Moreover,the full cells using carbon coated sodium vanadium phosphate as cathode and sodium pre-plated nitrogen-doped carbon fiber skeleton as hybrid anode can stably cycle for 300 times.These results illustrate an effective strategy to construct a 3D uniformly nitrogen-doped carbon skeleton based sodium metal hybrid anode without the formation of dendrites,which provide a prospect for further development and research of high performance sodium metal batteries. 展开更多
关键词 sodium metal anode porous carbon skeleton NITROGEN-DOPING sodium affinity ultra-stable cyclability
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长寿命高镍无钴锂离子正极材料的制备 被引量:5
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作者 班丽卿 柏祥涛 +3 位作者 庄卫东 李文进 黄巍 卢世刚 《无机化学学报》 SCIE CAS CSCD 北大核心 2020年第1期79-86,共8页
通过调整不同配锂量、不同焙烧温度以及包覆改性对高镍无钴二元材料性能的影响因素进行了研究。对不同原样和其改性后的材料进行了X射线粉末衍射(XRD)分析和首次充放电性能和倍率性能、循环性能等电化学性能测试。其中过锂量(质量分数)... 通过调整不同配锂量、不同焙烧温度以及包覆改性对高镍无钴二元材料性能的影响因素进行了研究。对不同原样和其改性后的材料进行了X射线粉末衍射(XRD)分析和首次充放电性能和倍率性能、循环性能等电化学性能测试。其中过锂量(质量分数)为5%,焙烧温度为820℃的材料性能优异,其首次放电比容量为171.6 mAh·g^-1,1C和3C的放电比容量分别为147.8、129.8 mAh·g^-1。对材料进行锰化合物(质量分数1.0%)包覆处理后,材料的残碱量下降明显,加工性能优异,倍率性能得到明显改善,1C和3C的放电比容量分别提升为156.5、141.8 mAh·g^-1。2Ah软包电池常温循环830周容量保持率为80%,高温循环345周容量保持率为80%。 展开更多
关键词 锂离子电池 正极材料 高镍无钴 改性 循环性能
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Silk fibroin-based biopolymer composite binders with gradient binding energy and strong adhesion force for high-performance micro-sized silicon anodes 被引量:1
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作者 Panpan Dong Xiahui Zhang +2 位作者 Julio Zamora John McCloy Min-Kyu Song 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第5期442-451,I0010,共11页
Micro-sized silicon anodes have shown much promise in large-scale industrial production of high-energy lithium batteries.However,large volume change(>300%)of silicon anodes causes severe particle pulverization and ... Micro-sized silicon anodes have shown much promise in large-scale industrial production of high-energy lithium batteries.However,large volume change(>300%)of silicon anodes causes severe particle pulverization and the formation of unstable solid electrolyte interphases during cycling,leading to rapid capacity decay and short cycle life of lithium-ion batteries.When addressing such issues,binder plays key roles in obtaining good structural integrity of silicon anodes.Herein,we report a biopolymer composite binder composed of rigid poly(acrylic acid)(PAA)and flexible silk fibroin(SF)tailored for micro-sized silicon anodes.The PAA/SF binder shows robust gradient binding energy via chemical interactions between carboxyl and amide groups,which can effectively accommodate large volume change of silicon.This PAA/SF binder also shows much stronger adhesion force and improved binding towards high-surface/defective carbon additives,resulting in better electrochemical stability and higher coulombic efficiency,than conventional PAA binder.As such,micro-sized silicon/carbon anodes fabricated with novel PAA/SF binder exhibit much better cyclability(up to 500 cycles at 0.5 C)and enhanced rate capability compared with conventional PAA-based anodes.This work provides new insights into the design of functional binders for high-capacity electrodes suffering from large volume change for the development of nextgeneration lithium batteries. 展开更多
关键词 Micro-sized silicon BINDER Silk fbroin Strong adhesion force Rate capability cyclability
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Depolarization of Li-rich Mn-based oxide via electrochemically active Prussian blue interface providing superior rate capability
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作者 Youchen Hao Xifei Li +7 位作者 Wen Liu Jingjing Wang Hui Shan Wenbin Li Xingjiang Liu Liangxu Lin Xianyou Wang Xueliang Sun 《Carbon Energy》 SCIE CSCD 2023年第5期48-56,共9页
The high-rate cyclability of Li-rich Mn-based oxide(LMO)is highly limited by the electrochemical polarization resulting from the slow kinetic of the Li2MnO3 phase.Herein,the Prussian blue(PB)coating layer with specifi... The high-rate cyclability of Li-rich Mn-based oxide(LMO)is highly limited by the electrochemical polarization resulting from the slow kinetic of the Li2MnO3 phase.Herein,the Prussian blue(PB)coating layer with specific redox potential is introduced as a functionalized interface to overcome the side effect and the escaping of O on the surface of LMO,especially its poor rate capability.In detail,the PB layer can restrict the large polarization of LMO by sharing overloaded current at a high rate due to the synchronous redox of PB and LMO.Consequently,an enhanced high rate performance with capacity retention of 87.8%over 300 cycles is obtained,which is superior to 50.5%of the pristine electrode.Such strategies on the high-rate cyclability of Li-rich Mn-based oxide compatible with good low-rate performances may attract great attention for pursuing durable performances. 展开更多
关键词 Li-rich Mn-based oxide Prussian blue coating layer synchronous redox high-rate cyclability
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High-capacity Li-rich Mn-based Cathodes for Lithium-ion Batteries 被引量:3
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作者 YIN Zu-Wei LI Jun-Tao +2 位作者 HUANG Ling PAN Feng SUN Shi-Gang 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 2020年第1期20-25,1,共7页
Layered Li-rich Mn-based oxides are promising cathode materials for Li-ion batteries due to their high capacity and high operation voltage.However,their commercial applications are hindered by irreversible capacity lo... Layered Li-rich Mn-based oxides are promising cathode materials for Li-ion batteries due to their high capacity and high operation voltage.However,their commercial applications are hindered by irreversible capacity loss in the first charge-discharge process,voltage decay during cycling,inefficient cyclability and rate capability.Many attempts have been performed to solve such issues,including the mechanism study and strategies to improve the electrochemical performance.This article provides a brief review and future perspective on the main challenges of the high-capacity Li-rich Mn-based cathodes for Li-ion batteries. 展开更多
关键词 Li-ion batteries Li-rich Mn-based cathodes the first charge-discharge process voltage decay cyclability rate capability
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Unshackling the reversible capacity of SiO_(x)/graphite-based full cells via selective LiF-induced lithiation 被引量:2
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作者 Jinran Sun Shu Zhang +11 位作者 Qinghua Zhang Yunchuan Xin Shamu Dong Haisheng Liu Jiedong Li Chao Wang Chenglong Lu Wuhai Yang Tingting Liu Jun Ma Lin Gu Guanglei Cui 《Science China Materials》 SCIE EI CAS CSCD 2022年第9期2335-2342,共8页
Composite Si@SiO_(x)/C anodes with high specific capacity are considered the most promising alternatives to graphite in industrial lithium-ion batteries.However,their cycling stability remains a limiting factor,which ... Composite Si@SiO_(x)/C anodes with high specific capacity are considered the most promising alternatives to graphite in industrial lithium-ion batteries.However,their cycling stability remains a limiting factor,which originates from the severe volume deformation of silicon-derived species.In this work,the cyclabilities of composite anodes are improved by unshackling the highly reversible lithium storage capabilities from the redundancy capacity of the anode materials.A selective LiF-induced lithiation strategy is proposed based on exploiting interface separation energy differences between LiF and the active materials.An interesting preferential redeposition of LiF is observed at the Si@SiO_(x) particles,which differentiates the otherwise similar lithiation potentials of LiC_(x) and Li_(15)Si_(4),thereby enabling lithium storage in graphite that was previously underused.The resulting full cell exhibits better rate and cycling performances without sacrificing specific capacity.In an ultra-high area capacity full cell(4.9 mA h cm^(-2)),the capacity retention increases markedly from 66.1% to 94.2% after 300 cycles.The selective lithiation strategy developed herein is feasible for practical industrial applications,and importantly,it requires no changes to the existing mature lithium-ion battery manufacturing process.This study offers a new approach for the development of silicon/graphite composite anodes with long cycling lifetimes. 展开更多
关键词 silicon-based composite anode cyclability selective lithiation LIF interface separation energy
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5V锂离子电池正极材料LiNi_(0.5)Mn_(1.5)O_4研究进展 被引量:3
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作者 江乐锋 王晓清 李畅 《辽宁化工》 CAS 2013年第5期523-525,530,共4页
随着锂离子电池的发展应用,高比能量、使用寿命长、安全环保的锂电池,已经成为各种便携式电子产品的首选供电,并已逐步进入我们的生活领域。开发大容量和高电压性能的新型正极材料尤为重要。其中锂离子电池正极材料LiNi0.5Mn1.5O4嵌锂... 随着锂离子电池的发展应用,高比能量、使用寿命长、安全环保的锂电池,已经成为各种便携式电子产品的首选供电,并已逐步进入我们的生活领域。开发大容量和高电压性能的新型正极材料尤为重要。其中锂离子电池正极材料LiNi0.5Mn1.5O4嵌锂电位高达4.7 V,循环性能好,能量效率高,在手机、电动汽车、航空等领域具有很好的发展前景。综述了近年来LiNi0.5Mn1.5O4的一些制备方法以及电化学性能的研究进展。 展开更多
关键词 锂离子电池 正极材料 LINI0 5Mn1 5O4 晶体结构 制备方法 循环性能
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LiFePO_4包覆的Li_(1.2)Mn_(0.54)Ni_(0.13)Co_(0.13)O_2锂离子电池正极材料:增强的库伦效率和循环性能(英文) 被引量:3
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作者 何磊 徐俊敏 +1 位作者 王永建 张昌锦 《物理化学学报》 SCIE CAS CSCD 北大核心 2017年第8期1605-1613,共9页
采用简单水溶液法制备LiFePO_4包覆的Li_(1.2)Mn_(0.54)Ni_(0.13)Co_(0.13)O_2富锂正极材料,包覆后的材料分别经过400°C或500°C煅烧处理5 h。测试结果显示,400°C煅烧处理的包覆样品在0.1C(1C=300 mA?g^(-1))电流密度下... 采用简单水溶液法制备LiFePO_4包覆的Li_(1.2)Mn_(0.54)Ni_(0.13)Co_(0.13)O_2富锂正极材料,包覆后的材料分别经过400°C或500°C煅烧处理5 h。测试结果显示,400°C煅烧处理的包覆样品在0.1C(1C=300 mA?g^(-1))电流密度下充放电时,首次库仑效率可以高达91.9%,同时,首次放电比容量可达到295.0 mAh?g^(-1)。此外,该包覆样品还具有良好的循环性能,在1C电流密度下循环100次放电比容量仍可保持在206.7mAh?g^(-1)。进一步的研究发现LiFePO_4的包覆不仅可以提高Li_(1.2)Mn_(0.54)Ni_(0.13)Co_(0.13)O_2富锂材料的首次库仑效率和循环稳定性能,而且还能够有效抑制材料在充放电过程中的电压衰减。上述电化学性能的有效提升主要归因于LiFePO_4包覆层可以阻碍Li_(1.2)Mn_(0.54)Ni_(0.13)Co_(0.13)O_2富锂材料与电解液之间的直接接触,减少副反应的发生,增强材料表面的结构稳定性,同时还可以为富锂材料提供额外的可逆容量。 展开更多
关键词 锂离子电池 富锂正极材料 磷酸铁锂包覆 高库仑效率 循环性能
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α-MnO_2 hollow clews for rechargeable Li-air batteries with improved cyclability 被引量:3
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作者 ZHANG LeiLei WANG ZhongLi +3 位作者 XU Dan XU JiJing ZHANG XinBo WANG LiMin 《Chinese Science Bulletin》 SCIE CAS 2012年第32期4210-4214,共5页
Lithium-air(Li-air) batteries have attracted worldwide attention due to their high energy density(11140 Wh kg-1) comparable to gasoline.In this work,we have synthesized the α-MnO2 hollow clews via a simple method and... Lithium-air(Li-air) batteries have attracted worldwide attention due to their high energy density(11140 Wh kg-1) comparable to gasoline.In this work,we have synthesized the α-MnO2 hollow clews via a simple method and characterized them by X-ray diffraction and scanning electron microscope.Interestingly,cycle performance of Li-air batteries is improved greatly when using the α-MnO2 hollow clews as the catalyst.The first discharge capacity is 596 mAh g-1,and the charge capacity is 590 mAh g-1 at the current density of 0.1 mA cm-2 between 2.0 and 4.2 V using the Vulcan XC-72 as the carbon material.Additionally,by re-assembling new batteries with the used lithium foil,separators and cathode separately,we find that the cathode is the key role to end the Li-air battery life. 展开更多
关键词 空气电池 循环性能 二氧化锰 可充电 空心 X-射线衍射 MNO2
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图的生成可圈性(英文)
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作者 齐豪 艾尔肯.吾买尔 《新疆大学学报(自然科学版)》 CAS 北大核心 2015年第3期292-296,共5页
给定一个图G=(V,E)及其顶点集V的互不相交的非空子集A1,A2,···,Ar,如果存在互不相交的圈C1,C2,···,Cr满足Ai?V(Ci)(i=1,2,···,r)并且C1∪C2∪···∪Cr生成G,则称G是关于子... 给定一个图G=(V,E)及其顶点集V的互不相交的非空子集A1,A2,···,Ar,如果存在互不相交的圈C1,C2,···,Cr满足Ai?V(Ci)(i=1,2,···,r)并且C1∪C2∪···∪Cr生成G,则称G是关于子集A1,A2,···,Ar生成可圈的.如果G关于V的任意r个互不相交的子集A1,A2,···,Ar都是生成可圈的,则称G是r-生成可圈的.进一步,如果G对于任意满足|A1∪A2∪···∪Ar|≤t的互不相交的点子集A1,A2,···,Ar是r-生成可圈的,则称G是阶数为t的r-生成可圈图.本文中,我们证明了:如果G是顶点数n≥3r+1,边数m≥(n-1)(n-2)2+k+r-2(r≥1,3≤k≤n-r+1)的图,则G是阶数为k+r-3的r-生成可圈图.本文将文献[1]中r=2的结果推广到了一般的情形. 展开更多
关键词 哈密尔顿图 可圈性 生成可圈性
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Tris(trimethylsilyl) borate as an electrolyte additive for high-voltage lithium-ion batteries using LiNi_(1/3)Mn_(1/3)Co_(1/3)O_2 cathode
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作者 Chunfeng Yan Ying Xu +2 位作者 Jianrong Xia Cuiran Gong Kerong Chen 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2016年第4期659-666,共8页
The influence of tris(trimethylsilyl) borate (TMSB) as an electrolyte additive on lithium ion cells have been studied using Li/LiCo1/3Ni1/3Mn1/3O2 cells at a higher voltage, 4.7 V versus Li/Li+. 1 wt% TMSB can dramati... The influence of tris(trimethylsilyl) borate (TMSB) as an electrolyte additive on lithium ion cells have been studied using Li/LiCo1/3Ni1/3Mn1/3O2 cells at a higher voltage, 4.7 V versus Li/Li+. 1 wt% TMSB can dramatically reduce the capacity fading that occurs during cycling at room temperature (RT) and elevated temperature (60 degrees C). After 150 cycles at 1 C rate (1 C= 278 mAh/g), the capacity retention of Li/LiCo1/3Ni1/3Mn1/3O2 is up to near 72% in the electrolyte with TMSB added, while it is only about 35% in the baseline electrolyte. The electrochemical behaviors, the surface chemistry and structure of Li/LiCo1/3Ni1/3Mn1/3O2 cathode are characterized with charge/discharge test, linear sweep voltammetry (LSV), X-ray photoelectron spectroscopy (XPS), electrochemical impedance spectroscopy (EIS), thermal gravimetric analyses (TGA), scanning electron microscope (SEM) and transmission electron microscopy (TEM). These analysis results reveal that the addition of TMSB is able to protectively modify the electrode CEI film in a manner that suppresses electrolyte decomposition and degradation of electrode surface structure, even though at both a higher voltage of 4.7 V and an elevated temperature of 60 degrees C. (C) 2016 Science Press and Dalian Institute of Chemical Physics, Chinese Academy of Sciences. Published by Elsevier B.V. and Science Press. All rights reserved. 展开更多
关键词 Tris(trimethylsilyl) borate (TMSB) Electrolyte additive High voltage RT and 60 degrees C cyclability
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正极材料zLi_2MnO_3·(1-z)LiNi_(0.4)Mn_(0.4)Co_(0.2)O_2的合成与性能 被引量:2
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作者 钟耀东 李志同 +6 位作者 郭远刚 周权 周凤瑞 强颖怀 杨凌玲 霍瑛 赵思茜 《材料科学与工程学报》 CAS CSCD 北大核心 2011年第5期698-701,710,共5页
富锂锰过渡金属层状正极材料以其成本低、安全、容量高受到广泛关注,X射线衍射(XRD)和电化学性能测试显示以共沉淀结合煅烧成功合成富锂层状正极材料zLi2MnO3.(1-z)LiMn0.4Ni0.4Co0.2O2(z=0.2,0.4,0.6)。其中z=0.4组分的放电容量达到210... 富锂锰过渡金属层状正极材料以其成本低、安全、容量高受到广泛关注,X射线衍射(XRD)和电化学性能测试显示以共沉淀结合煅烧成功合成富锂层状正极材料zLi2MnO3.(1-z)LiMn0.4Ni0.4Co0.2O2(z=0.2,0.4,0.6)。其中z=0.4组分的放电容量达到210mAh/g(2-4.8V,0.05C),远高于z=0.6组分,而经20个充放电循环的稳定性也优于z=0.2组分。微分容量分析表明z=0.2组分中因Ni/(Co+Mn)比值较大和Li2MnO3含量较少可能导致其容量逐渐衰减。z=0.6则因所含LiMn0.4Ni0.4Co0.2O2量较少,造成其放电容量较低;z=0.4拥有最佳Li2MnO3及LiMn0.4Ni0.4Co0.2O2组合使其容量和循环性能最好。 展开更多
关键词 zLi2MnO3·(1-z)LiMn0.4Ni0.4Co0.2O2 正极材料 循环性能 容量
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Boosting lithium batteries under harsh operating conditions by a resilient ionogel with liquid-like ionic conductivity 被引量:2
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作者 Le Yu Qing Liu +6 位作者 Libin Wang Songtao Guo Qiaomei Hu Yaqian Li Xiwei Lan Zhifang Liu Xianluo Hu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第11期408-414,I0009,共8页
New chemistries are being developed to increase the capacity and power of rechargeable batteries. However, the risk of safety issues increases when high-energy batteries using highly active materials encounter harsh o... New chemistries are being developed to increase the capacity and power of rechargeable batteries. However, the risk of safety issues increases when high-energy batteries using highly active materials encounter harsh operating conditions. Here we report on the synthesis of a unique ionogel electrolyte for abuse-tolerant lithium batteries. A hierarchically architected silica/polymer scaffold is designed and fabricated through a facile soft chemistry route, which is competent to confine ionic liquids with superior uptake ability (92.4 wt%). The monolithic ionogel exhibits high conductivity and thermal/mechanical stability, featuring high-temperature elastic modulus and dendrite-free lithium cycling. The Li/LiFePO_(4) pouch cells achieve outstanding cyclability at different temperatures up to 150 ℃, and can sustain cutting, crumpling, and even coupled thermal–mechanical abuses. Moreover, the solid-state lithium batteries with LiNi_(0.60)Co_(0.20)Mn_(0.20)O_(2), LiNi_(0.80)Co_(0.15)Al_(0.05)O_(2), and Li_(1.2)Mn_(0.54)Ni_(0.13)Co_(0.13)O_(2) cathodes demonstrate excellent cycle performances at 60 ℃. These results indicate that the resilient and high-conductivity ionogel electrolyte is promising to realize high-performance lithium batteries with high energy density and safety. 展开更多
关键词 Ionogel electrolytes Lithium batteries SAFETY Harsh operating conditions cyclability
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