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Sandwich-type composited solid polymer electrolytes to strengthen the interfacial ionic transportation and bulk conductivity for all-solid-state lithium batteries from room temperature to 120℃
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作者 Jiewen Tan Zhen Wang +7 位作者 Jiawu Cui Zhanhui Jia Wensheng Tian Chao Wu Chengxin Peng Chengyong Shu Kang Yang Wei Tang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第8期288-295,I0007,共9页
The insurmountable charge transfer impedance at the Li metal/solid polymer electrolytes(SPEs)interface at room temperature as well as the ascending risk of short circuits at the operating temperature higher than the m... The insurmountable charge transfer impedance at the Li metal/solid polymer electrolytes(SPEs)interface at room temperature as well as the ascending risk of short circuits at the operating temperature higher than the melting point,dominantly limits their applications in solid-state batteries(SSBs).Although the inorganic filler such as CeO_(2)nanoparticle content of composite solid polymer electrolytes(CSPEs)can significantly reduce the enormous charge transfer impedance at the Li metal/SPEs interface,we found that the required content of CeO_(2)nanoparticles in SPEs varies for achieving a decent interfacial charge transfer impedance and the bulk ionic conductivity in CSPEs.In this regard,a sandwich-type composited solid polymer electrolyte with a 10%CeO_(2)CSPEs interlayer sandwiched between two 50%CeO_(2)CSPEs thin layers(sandwiched CSPEs)is constructed to simultaneously achieve low charge transfer impedance and superior ionic conductivity at 30℃.The sandwiched CSPEs allow for stable cycling of Li plating and stripping for 1000 h with 129 mV polarized voltage at 0.1 mA cm^(-2)and 30℃.In addition,the LiFePO_(4)/Sandwiched CSPEs/Li cell also exhibits exceptional cycle performance at 30℃and even elevated120℃without short circuits.Constructing multi-layered CSPEs with optimized contents of the inorganic fillers can be an efficient method for developing all solid-state PEO-based batteries with high performance at a wide range of temperatures. 展开更多
关键词 PEO-based solid electrolytes CeO_(2)nanoparticles Charge transfer impedance Sandwich-type composite electrolytes All-solid-state li metal batteries
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Synthesis of nanostructured Li_2FeSiO_4/C cathode for lithium-ion battery by solution method 被引量:1
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作者 杨蓉 刘晓艳 +2 位作者 曲冶 雷京 Jou-Hyeon AHN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第10期2529-2534,共6页
Nanosphere-like Li2FeSiO4/C was synthesized via a solution method using sucrose as carbon sources under a mild condition of time-saving and energy-saving, followed by sintering at high temperatures for crystallization... Nanosphere-like Li2FeSiO4/C was synthesized via a solution method using sucrose as carbon sources under a mild condition of time-saving and energy-saving, followed by sintering at high temperatures for crystallization. The amount of carbon in the composite is less than 10% (mass fraction), and the X-ray diffraction result confirms that the sample is of pure single phase indexed with the orthorhombic Pmn21 space group. The particle size of the Li2FeSiO4/C synthesized at 700 °C for 9 h is very fine and spherical-like with a size of 200 nm. The electrochemical performance of this material, including reversible capacity, cycle number, and charge-discharge characteristics, were tested. The cell of this sample can deliver a discharge capacity of 166 mA-h/g at C/20 rate in the first three cycles. After 30 cycles, the capacity decreases to 158 mA-h/g, and the capacity retention is up to 95%. The results show that this method can prepare nanosphere-like Li2FeSiO4/C composite with good electrochemical performance. 展开更多
关键词 lithium-ion batteries cathode material li2fesiO4/C solution method
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电流密度、温度、阴极孔隙率和N_(2)溶解度因子对Li-N_(2)电池放电性能的影响
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作者 赵旭东 薛红涛 汤富领 《可再生能源》 CAS CSCD 北大核心 2024年第1期9-15,共7页
Li-N_(2)电池是一种具有电化学固氮功能的新型储能系统,文章利用有限元软件COMSOL耦合多物理场建立的电化学模型能揭示各因素对其放电性能的影响。模拟结果表明:放电电流密度、温度、阴极孔隙率和电解液中的N_(2)溶解度因子对Li-N_(2)... Li-N_(2)电池是一种具有电化学固氮功能的新型储能系统,文章利用有限元软件COMSOL耦合多物理场建立的电化学模型能揭示各因素对其放电性能的影响。模拟结果表明:放电电流密度、温度、阴极孔隙率和电解液中的N_(2)溶解度因子对Li-N_(2)电池的放电性能均有影响;较大的放电电流密度会降低该电池的电压和容量;阴极孔隙率和电解液中的N_(2)溶解度因子是影响该电池电压和容量的关键性因素,提高阴极孔隙率和电解液中的N_(2)溶解度因子均能增加该电池的电压和容量;电池放电的平台电压随温度升高而升高,但放电容量几乎不受温度影响。 展开更多
关键词 li-N_(2)电池 有限元分析 COMSOL 放电过程
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富镍LiNi_(0.8)Co_(0.1)Mn_(0.1)O_(2)正极材料改性研究进展
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作者 王恩通 高淑娟 《电池》 CAS 北大核心 2024年第4期584-588,共5页
锂离子电池用富镍正极材料LiNi_(0.8)Co_(0.1)Mn_(0.1)O_(2)具有高能量密度、高安全性等优点。受容量衰减、循环寿命和热稳定性等方面的限制,该材料进一步的改性成为当前研究的热点。针对LiNi_(0.8)Co_(0.1)Mn_(0.1)O_(2)材料的改性研... 锂离子电池用富镍正极材料LiNi_(0.8)Co_(0.1)Mn_(0.1)O_(2)具有高能量密度、高安全性等优点。受容量衰减、循环寿命和热稳定性等方面的限制,该材料进一步的改性成为当前研究的热点。针对LiNi_(0.8)Co_(0.1)Mn_(0.1)O_(2)材料的改性研究主要集中在离子掺杂、表面包覆和结构设计等方面。离子掺杂能改善结构稳定性和电化学性能,特别是过渡金属离子的掺杂有助于延长循环寿命和提高结构稳定性;表面包覆改性可增强电化学稳定性和抗氧化性能,延长循环寿命和提高抗极化能力;结构设计可优化晶体结构、提高传导性能和缓解应力,提高循环稳定性、容量保持率和功率密度。 展开更多
关键词 锂离子电池 liNi_(0.8)Co_(0.1)Mn_(0.1)O_(2) 富镍正极材料 改性 电池性能
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Microwave synthesis of Li_2FeSiO_4 cathode materials for lithium-ion batteries 被引量:20
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作者 Zhong Dong Peng Yan Bing Cao Guo Rong Hu Ke Du Xu Guang Gao Zheng Wei Xiao 《Chinese Chemical Letters》 SCIE CAS CSCD 2009年第8期1000-1004,共5页
A novel synthetic method of microwave processing to prepare Li2FeSiO4 cathode materials is adopted. The Li2FeSiO4 cathode material is prepared by mechanical ball-milling and subsequent microwave processing. Olivin-typ... A novel synthetic method of microwave processing to prepare Li2FeSiO4 cathode materials is adopted. The Li2FeSiO4 cathode material is prepared by mechanical ball-milling and subsequent microwave processing. Olivin-type Li2FeSiO4 sample with uniform and fine particle sizes is successfully and fast synthesized by microwave heating at 700 ℃ in 12 rain. And the obtained Li2FeSiO4 materials show better electrochemical performance and microstructure than those of Li2FeSiO4 sample by the conventional solidstate reaction. ?2009 Yan Bing Cao. Published by Elsevier B.V. on behalf of Chinese Chemical Society. All rights reserved. 展开更多
关键词 li-ion battery Cathode material Microwave synthesis li2fesIO4
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Hydrothermal synthesis of spindle-like Li_2FeSiO_4-C composite as cathode materials for lithium-ion batteries 被引量:4
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作者 Haiyan Gao Zhe Hu +3 位作者 Kai Zhang Fangyi Cheng Zhanliang Tao Jun Chen 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2014年第3期274-281,共8页
In this paper,we report on the preparation of Li2FeSiO4,sintered Li2FeSiO4,and Li2FeSiO4-C composite with spindle-like morphologies and their application as cathode materials of lithium-ion batteries.Spindle-like Li2F... In this paper,we report on the preparation of Li2FeSiO4,sintered Li2FeSiO4,and Li2FeSiO4-C composite with spindle-like morphologies and their application as cathode materials of lithium-ion batteries.Spindle-like Li2FeSi04 was synthesized by a facile hydrothermal method with(NH4)2Fe(SO4)2 as the iron source.The spindle-like Li2FeSiO4 was sintered at 600 ℃ for 6 h in Ar atmosphere.Li2FeSiO4-C composite was obtained by the hydrothermal treatment of spindle-like Li2FeSiO4 in glucose solution at 190 ℃ for 3 h.Electrochemical measurements show that after carbon coating,the electrode performances such as discharge capacity and high-rate capability are greatly enhanced.In particular.Li2FeSiO4-C with carbon content of 7.21 wt%delivers the discharge capacities of 160.9 mAh·g-1 at room temperature and 213 mAh·g-1 at45℃(0.1 C),revealing the potential application in lithium-ion batteries. 展开更多
关键词 li2fesiO4-C composite spindle like hydrothermal synthesis cathode material lithium-ion battery
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Synthesis of silk-like FeS_2/NiS_2 hybrid nanocrystals with improved reversible oxygen catalytic performance in a Zn-air battery 被引量:4
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作者 Jing Jin Jie Yin +1 位作者 Hanwen Liu Pinxian Xi 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2019年第1期43-51,共9页
The development of highly active and stable reversible oxygen electrocatalysts is crucial for improving the efficiency of metal‐air battery devices.Herein,an efficient liquid exfoliation strategy was designed for pro... The development of highly active and stable reversible oxygen electrocatalysts is crucial for improving the efficiency of metal‐air battery devices.Herein,an efficient liquid exfoliation strategy was designed for producing silk‐like FeS2/NiS2 hybrid nanocrystals with enhanced reversible oxygen catalytic performance that displayed excellent properties for Zn‐air batteries.Because of the unique silk‐like morphology and interface nanocrystal structure,they can catalyze the oxygen evolution reaction(OER)efficiently with a low overpotential of 233 mV at j=10 mA cm?2.This is an improvement from the recently reported catalysts in 1.0 M KOH.Meanwhile,the oxygen reduction reaction(ORR)activity of the silk‐like FeS2/NiS2 hybrid nanocrystals showed an onset potential of 911 mV and a half‐wave potential of 640 mV.In addition,the reversible oxygen electrode activity of the silk‐like FeS2/NiS2 hybrid nanocrystals was calculated to be 0.823 V,based on the potential of the OER and ORR.Further,the homemade rechargeable Zn‐air batteries using FeS2/NiS2 hybrid nanocrystals as the air‐cathode displayed a high open‐circuit voltage of 1.25 V for more than 17 h and an excellent rechargeable performance for 25 h.The solid Zn‐air batteries exhibited an excellent rechargeable performance for 15 h.This study provided a new method for designing interface nanocrystals with a unique morphology for efficient multifunctional electrocatalysts in electrochemical reactions and renewable energy devices. 展开更多
关键词 Silk‐like fes2/NiS2 Interface nanocrystal Reversible oxygen electrocatalyst Zn‐air battery
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Effects of cathode materials on discharge characteristics of Li B alloy/FeS_2 thermal battery 被引量:1
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作者 Liu Zhijian(刘志坚), Duan Wei(段 伟), Li Zhiyou(李志友), Huang Yinghua(黄英华) ,Qu Xuanhui(曲选辉),Huang Baiyun(黄伯云) Powder Metallurgy Institute, Central South University of Technology, Changsha 410083, P.R.China  Jinzhu Powder Injection Man 《中国有色金属学会会刊:英文版》 CSCD 1999年第3期530-534,共5页
The effects of FeS 2 on the discharge characteristics of Li B alloy/FeS 2 thermal battery had been studied. Results showed that 2.5%(mass fraction)Li 2O would be needed to rule out the voltage pulse in the first part ... The effects of FeS 2 on the discharge characteristics of Li B alloy/FeS 2 thermal battery had been studied. Results showed that 2.5%(mass fraction)Li 2O would be needed to rule out the voltage pulse in the first part of discharge curves for the FeS 2 powder of small particle size (<44 μm). After thermal decomposition, the FeS 2 had transformed to Fe (1- x ) S where x =0.024~0.066. The deficiency of the cathode FeS 2 would make discharge voltage decrease 0.4 V. In the discharge test at high temperature (600 ℃), the discharge voltage decreased fast with the acceleration of the thermal decomposition of FeS 2. 展开更多
关键词 liB fes 2 thermal BATTERIES CATHODE effect
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Synthesis and electrochemical properties of Li2FeSiO4/C/Ag composite as a cathode material for Li-ion battery 被引量:2
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作者 TANG Yi-qun LIU Xi +3 位作者 HUANG Xiao-bing DING Xiang ZHOU Shi-biao CHEN Yuan-dao 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第6期1443-1448,共6页
Li2FeSiO4 is deemed to be a potential candidate for large-scale applications because of its abundance,low cost and high safety,etc.Unfortunately,its low conductivity,resulting in poor rate performance,has become a mai... Li2FeSiO4 is deemed to be a potential candidate for large-scale applications because of its abundance,low cost and high safety,etc.Unfortunately,its low conductivity,resulting in poor rate performance,has become a main obstacle to its applications in power battery and energy storage system.In this work,C-Ag coated Li2FeSiO4 is introduced to improve the innate electronic conductivity and Li-ion diffusion ability.The results demonstrate that Li2FeSiO4/C/Ag composite exhibits better electrochemical performance.It possesses a specific discharge capacity of 152,121,108 mA.h/g at 0.2C,5C and 10C,respectively.At the same time,the Li2FeSiO4/C/Ag composite shows good cycle stability and a capacity retention ratio of 97.9%after 100 cycles at 1C. 展开更多
关键词 lithium-ion batteries cathode material li2fesIO4 PITCH C-Ag coating
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电解质体系对FeS_2/LiSi热电池激活时间的影响研究 被引量:2
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作者 康博 邢永慧 +2 位作者 赵亚旭 曹军记 林海波 《电源技术》 CAS CSCD 北大核心 2015年第10期2153-2154,共2页
采用空载和带载两种放电方式,研究了热电池常用的二元和三元全锂电解质体系对Fe S2/Li Si热电池激活时间的影响。实验结果表明:空载放电时,二元电解质激活时间短;带载放电时,三元全锂电解质激活时间短。
关键词 电解质 fe S2/li Si热电池 激活时间
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高纯天然黄铁矿粉体用于LiAl-FeS_2热电池 被引量:8
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作者 杨华明 李晓鸣 邱冠周 《金属矿山》 CAS 北大核心 2003年第6期46-47,64,共3页
天然黄铁矿经提纯和特殊处理 ,可获得高纯FeS2 超微细粉体 (HFP)。用X -射线衍射 (XRD)和差热分析 (DTA)研究了HFP的结构和热性能。以HFP为正极材料做成LiAl-FeS2 热电池 ,在放电电流为 1.75A、0 .70A时 ,其初始放电电压分别为 1.934V和... 天然黄铁矿经提纯和特殊处理 ,可获得高纯FeS2 超微细粉体 (HFP)。用X -射线衍射 (XRD)和差热分析 (DTA)研究了HFP的结构和热性能。以HFP为正极材料做成LiAl-FeS2 热电池 ,在放电电流为 1.75A、0 .70A时 ,其初始放电电压分别为 1.934V和 1.984V ,高于目前所用的FeS2 ,说明HFP适合做LiAl-FeS2 热电池的正极活性材料 。 展开更多
关键词 黄铁矿粉体 X—射线衍射 差热分析 超微细粉体 HFP 正极材料 liAl-fes2热电池
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Effect of Mn-doping on performance of Li_3V_2(PO_4)_3/C cathode material for lithium ion batteries 被引量:3
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作者 翟静 赵敏寿 王丹丹 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第3期523-528,共6页
Li3V2-2/3xMnx(PO4)3(0≤x≤0.12) powders were synthesized by sol-gel method. The effect of Mn2+-doping on the structure and electrochemical performances of Li3V2(PO4)3/C was characterized by XRD, SEM, XPS, galva... Li3V2-2/3xMnx(PO4)3(0≤x≤0.12) powders were synthesized by sol-gel method. The effect of Mn2+-doping on the structure and electrochemical performances of Li3V2(PO4)3/C was characterized by XRD, SEM, XPS, galvanostatic charge /discharge and electrochemical impedance spectroscopy(EIS). The XRD study shows that a small amount of Mn2+-doped does not alter the structure of Li3V2(PO4)3/C materials, and all Mn2+-doped samples are of pure single phase with a monoclinic structure (space group P21/n). The XPS analysis indicates that valences state of V and Mn are +3 and +2 in Li3V1.94Mn0.09(PO4)3/C, respectively, and the citric acid in raw materials was decomposed into carbon during calcination, and residual carbon exists in Li3V1.94Mn0.09(PO4)/C. The results of electrochemical measurements show that Mn2+-doping can improve the cyclic stability and rate performance of these cathode materials. The Li3V1.94Mn0.09(PO4)3/C cathode material shows the best cyclic stability and rate performance. For example, at the discharge current density of 40 mA/g, after 100 cycles, the discharge capacity of Li3V1.94Mn0.09(PO4)3/C declines from initial 158.8 mA·h/g to 120.5 mA·h/g with a capacity retention of 75.9%; however, that of the Mn-undoed sample declines from 164.2 mA·h/g to 72.6 mA·h/g with a capacity retention of 44.2%. When the discharge current is increased up to 1C, the intial discharge capacity of Li3V1.94Mn0.09(PO4)3/C still reaches 146.4 mA·h/g, and the discharge capacity maintains at 107.5 mA·h/g after 100 cycles. The EIS measurement indicates that Mn2+-doping with a appropriate amount of Mn2+ decreases the charge transfer resistance, which is favorable for the insertion/extraction of Li+. 展开更多
关键词 lithium ion batteries cathode materials li3V2(PO4)3 SOL-GEL doping
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用于Li-CO_(2)电池的阴极催化剂:发展及挑战
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作者 王雨锟 李雪莲 +4 位作者 雷普英 齐凯 高丽丽 王转培 杨晓伟 《储能科学与技术》 CAS CSCD 北大核心 2024年第10期3453-3466,共14页
在能源危机与温室效应日益加剧的形势下,Li-CO_(2)电池作为一种兼具高效储能与CO_(2)气体利用的新型器件,具有重大的研究意义。鉴于电池涉及多相反应,电子传递与物质转移主要发生于阴极,因此,Li-CO_(2)电池阴极催化剂的设计与制备显得... 在能源危机与温室效应日益加剧的形势下,Li-CO_(2)电池作为一种兼具高效储能与CO_(2)气体利用的新型器件,具有重大的研究意义。鉴于电池涉及多相反应,电子传递与物质转移主要发生于阴极,因此,Li-CO_(2)电池阴极催化剂的设计与制备显得尤为重要。本文探讨了Li-CO_(2)电池作为新型储能器件的优势,基于Li-CO_(2)电池充放电反应机理的发展历程,深入探讨了目前其面临的关键挑战,如充放电电位差较大,容量衰减快和循环稳定性差等问题,将解决方案聚焦于阴极催化剂的研发,提出高效催化剂应该满足的核心条件。总结了近年来碳基非金属,贵金属和过渡金属等传统催化剂在Li-CO_(2)电池领域的应用情况,并深入分析了各类催化剂的优势与不足;本文重点介绍了新兴的单原子催化剂与氧化还原介质研究进展,通过结构表征和理论计算证明其在Li-CO_(2)电池领域展现出卓越的催化性能;本文深入剖析了Li-CO_(2)电池进一步发展所面临的关键问题与严峻挑战,并对单原子催化剂未来的研究方向进行了展望,旨在为推动Li-CO_(2)电池技术的不断进步提供有益的参考与借鉴。 展开更多
关键词 li-CO_(2)电池 反应机理 正极 单原子催化剂
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高效Li-CO_(2)电池用富缺陷Co-N-C纳米片电极的制备
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作者 雷普英 李雪莲 +4 位作者 王璇 郭文奇 侯凯 齐凯 高丽丽 《现代化工》 CAS CSCD 北大核心 2024年第S02期116-122,129,共8页
采用原位生长-模板保护-裂解组装策略,对双金属类沸石咪唑骨架材料(ZIFs)前驱体进行结构调控,成功制备Co-N_(x)、N-C活性位点及缺陷共存的二维钴-氮-碳纳米片(Co-N-C NFs)催化剂。Co-N-C NFs耦合了内在的Co-N-C的电子结构和外在的富缺... 采用原位生长-模板保护-裂解组装策略,对双金属类沸石咪唑骨架材料(ZIFs)前驱体进行结构调控,成功制备Co-N_(x)、N-C活性位点及缺陷共存的二维钴-氮-碳纳米片(Co-N-C NFs)催化剂。Co-N-C NFs耦合了内在的Co-N-C的电子结构和外在的富缺陷的二维片层结构,为锂-二氧化碳电池(LCB)提供了有利的气-液-固三相反应界面;纳米薄片彼此交互,构建出有利于CO_(2)吸脱附、锂离子和电子迁移输运路径以及便于产物寄宿的空间结构。基于Co-N-C NFs催化剂正极构筑LCB电池,电池表现出优异的电化学性能,放电容量达到2880μAh/cm^(2),在100μA/cm^(2)的大电流密度下,放-充电平台维持在2.60 V和4.40 V,且能稳定工作超1480 h。 展开更多
关键词 锂-二氧化碳电池 Co-N-C催化剂 富缺陷 金属-有机骨架材料 双模板
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AA型Li/FeS_2电池的制备及安全性能 被引量:3
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作者 彭瑛 刘建华 何献文 《电池》 CAS CSCD 北大核心 2009年第2期94-95,共2页
制备了AA型Li/FeS2电池。在没有正温度系数(PTC)热敏电阻保护的情况下以1 000 mA电流对电池进行充电,电池的电压达到16.3 V,温度约为152℃。以45 mA电流对电池进行过放电,电压降至-5.5 V后趋于平稳,温度达到约85℃。Li/FeS2电池在充电... 制备了AA型Li/FeS2电池。在没有正温度系数(PTC)热敏电阻保护的情况下以1 000 mA电流对电池进行充电,电池的电压达到16.3 V,温度约为152℃。以45 mA电流对电池进行过放电,电压降至-5.5 V后趋于平稳,温度达到约85℃。Li/FeS2电池在充电或过放电的情况下具有较好的安全性能。 展开更多
关键词 li/fes2电池 安全性能 过放电
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AA型Li-FeS_2电池性能的研究 被引量:2
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作者 何献文 刘建华 《电源技术》 CAS CSCD 北大核心 2005年第7期453-455,共3页
Li-FeS2电池正极的传统工艺是将正极活性物质与导电剂和粘结剂混合,并高速搅拌成浆涂布在铝箔上。这种工艺制造的Li-FeS2电池容量较小,不能满足高速发展的电子产品对电池高容量的要求。为了提高AA型Li-FeS2电池的容量,对电池的正极制造... Li-FeS2电池正极的传统工艺是将正极活性物质与导电剂和粘结剂混合,并高速搅拌成浆涂布在铝箔上。这种工艺制造的Li-FeS2电池容量较小,不能满足高速发展的电子产品对电池高容量的要求。为了提高AA型Li-FeS2电池的容量,对电池的正极制造进行了研究。用轧膜法代替涂布法制造正极的工艺,可增大极片的密度和比能量,对提高电池的容量有明显效果。根据对加有不同电解液量电池的放电容量及电池内阻的测试结果,选取了电池的最佳电解液量为2.6g。 展开更多
关键词 lifes2电池 轧膜法 容量 电解液量
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用于Li-CO_(2)电池的过渡金属及其合金催化剂研究进展
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作者 马文庆 简天真 +3 位作者 马建平 李现红 高海洋 刘宏 《中国粉体技术》 CAS CSCD 2024年第6期1-14,共14页
【目的】提升锂-二氧化碳(Li-CO_(2))电池的反应可逆性和动力学特性,概括Li-CO_(2)电池的简史、结构、工作原理以及关键科学问题,综述用于Li-CO_(2)电池的过渡金属及其合金催化剂的成分、形貌、微观结构等特性及其对Li-CO_(2)电池性能... 【目的】提升锂-二氧化碳(Li-CO_(2))电池的反应可逆性和动力学特性,概括Li-CO_(2)电池的简史、结构、工作原理以及关键科学问题,综述用于Li-CO_(2)电池的过渡金属及其合金催化剂的成分、形貌、微观结构等特性及其对Li-CO_(2)电池性能的影响,分析过渡金属及其合金催化剂在催化过程中的作用机制和演化行为。【研究现状】过渡金属对反应物吸附与活化、放电产物沉积及分解具有促进作用。基于过渡金属元素构筑的单金属和双金属正极催化剂,在Li-CO_(2)电池中的催化活性、作用机制及其自身在催化过程中的演化各不相同。金属间化合物具有显著区别于固溶合金、单分散双金属、单一金属的化学微环境,因此在促进反应物种吸附与活化、产物分解等方面表现出独特优势。【结论与展望】过渡金属及其合金催化剂的未来研究方向有:调控催化剂宏观形貌和表面微结构;监测催化过程中催化剂结构与成分演化、放电产物沉积与分解行为;建立适用于Li-CO_(2)电池的催化剂关键“描述符”;开发低成本催化剂量产工艺。 展开更多
关键词 锂-二氧化碳电池 过渡金属 合金催化剂
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Mg^(2+)掺杂对富锂层状氧化物材料Li_(1.2)Mn_(0.54)Ni_(0.13)Co_(0.13)O_(2)的影响
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作者 解自奇 谭玉婷 +2 位作者 赵妮 周明东 颜文超 《辽宁石油化工大学学报》 CAS 2024年第2期22-28,共7页
Mg^(2+)作为一种电化学惰性的阳离子,由于其离子半径(0.072 nm)与Li^(+)的离子半径(0.076 nm)相近,因此被广泛应用于取代富锂层状氧化物(LLOs)材料中Li^(+)的位置。然而,Mg^(2+)对LLOs材料晶体结构的影响还存在争议。利用溶胶凝胶法成... Mg^(2+)作为一种电化学惰性的阳离子,由于其离子半径(0.072 nm)与Li^(+)的离子半径(0.076 nm)相近,因此被广泛应用于取代富锂层状氧化物(LLOs)材料中Li^(+)的位置。然而,Mg^(2+)对LLOs材料晶体结构的影响还存在争议。利用溶胶凝胶法成功制备了一系列Mg^(2+)掺杂富锂正极材料Li_(1.2-x)Mg_(x)Mn_(0.54)Ni_(0.13)Co_(0.13)O_(2),通过X射线衍射仪和X射线光电子能谱等对其晶体结构和元素价态进行了系统的研究。结果表明,Mg^(2+)掺杂导致LLOs材料晶胞参数的增加。通过与Li_(1.2)Mn_(0.54)Ni_(0.13)Co_(0.13)O_(2)材料的电化学性能对比发现,Mg^(2+)掺杂有效地提高了LLOs材料的电化学性能。经过优化后,Mg-0.03样品展现出最优异的电化学性能,在0.1 C倍率下的初始放电比容量为291.9 mA•h/g,首圈库伦效率为78.40%。 展开更多
关键词 锂离子电池 富锂层状氧化物 正极材料 溶胶凝胶法 Mg^(2+)掺杂
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Effects of calcination temperature on properties of Li_2SiO_3 for precursor of Li_2FeSiO_4
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作者 李向群 郭华军 +4 位作者 李黎明 李新海 王志兴 欧惠 向楷雄 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第3期529-534,共6页
Li2SiO3 was synthesized by combination of sol-gel method and calcination at high temperature using Li2CO3, HNO3, Si(OC2H5)4 and C2H5OH as starting materials. The effects of calcination temperature and refluxing syst... Li2SiO3 was synthesized by combination of sol-gel method and calcination at high temperature using Li2CO3, HNO3, Si(OC2H5)4 and C2H5OH as starting materials. The effects of calcination temperature and refluxing system on the composition and properties of lithium silicate were investigated. The samples were characterized by TGA/DTA, XRD, SEM and particle size analysis. Li2FeSiO4 was prepared by the solid-state reaction between Li2SiO3 and FeC2O4·2H2O. The XRD patterns show that the use of refluxing system in the sol-gel preparation can decrease the Li2Si2O5 and Li4SiO4 impurities in the Li2SiO3 sample. The calcination temperature plays an important role in the properties of the Li2SiO3 samples. The sample calcined at 700 °C has high purity of 97% Li2SiO3 and good morphology as precursor of Li2FeSiO4. It consists of primary particles with size of 1-3 μm, and the primary particle clusters form agglomerates with loose and porous appearance. 展开更多
关键词 lithium ion batteries li2fesIO4 li2SiO3 sol-gel method
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Preparation and electrochemical performance of 2LiFe_(1-x)Co_xPO_4-Li_3V_2(PO_4)_3/C cathode material for lithium-ion batteries
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作者 张佳峰 张宝 +6 位作者 郭学益 欧星 王健龙 彭春丽 郑俊超 陈核章 沈超 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第4期1028-1032,共5页
2LiFe1-xCoxPO4-Li3V2(P04)3/C was synthesized using Fel-2xCo2xVO4 as precursor which was prepared by a simple co-precipitation method. 2LiFej-xCoxPO4-Li3V2(PO4)3/C samples were characterized by X-ray diffraction (... 2LiFe1-xCoxPO4-Li3V2(P04)3/C was synthesized using Fel-2xCo2xVO4 as precursor which was prepared by a simple co-precipitation method. 2LiFej-xCoxPO4-Li3V2(PO4)3/C samples were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM) and electrochemical measurements. All 2LiFel-xCoxPOa-Li3V2(PO4)3/C composites are of the similar crystal structure. The XRD analysis and SEM images show that 2LiFe0.96Co0.04PO4-Li3V2(PO4)3/C sample has the best-ordered structure and the smallest particle size. The charge-discharge tests demonstrate that these powders have the best electrochemical properties with an initial discharge capacity of 144.1 mA.h/g and capacity retention of 95.6% after 100 cycles when cycled at a current density of 0.1C between 2.5 and 4.5 V. 展开更多
关键词 lifePO4 li3V2(PO4)3 Co doping lithium-ion batteries
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