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Advances in the use of carbon materials for lithium-air batteries
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作者 LEI Yu ZHONG Yu +3 位作者 LI Yi-shuo LI Tao ZHOU Zhuo-hui QIN Lei 《新型炭材料(中英文)》 北大核心 2025年第4期909-930,共22页
Lithium-air batteries(LABs)are regarded as a next-generation energy storage option due to their relatively high energy density.The cyclic stability and lifespan of LABs are mainly influenced by the formation and decom... Lithium-air batteries(LABs)are regarded as a next-generation energy storage option due to their relatively high energy density.The cyclic stability and lifespan of LABs are mainly influenced by the formation and decomposition of lithium-based oxides at the air cathode,which not only lead to a low cathode catalytic efficiency but also restrict the electrochemical reversibility and cause side reaction problems.Carbon materials are considered key to solving these problems due to their conductivity,functional flexibility,and adjustable pore structure.This paper considers the research progress on carbon materials as air cathode catalytic materials for LABs,focusing on their structural characteristics,electrochemical behavior,and reaction mechanisms.Besides being used as air cathodes,carbon materials also show potential for being used as protective layers for metal anodes or as anode materials for LABs. 展开更多
关键词 Lithium-air battery Carbon materials Air cathode Modified carbon electrode Oxygen crossover
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Synthesis and characterization of triclinic structural LiVPO_4F as possible 4.2 V cathode materials for lithium ion batteries 被引量:8
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作者 钟胜奎 尹周澜 +1 位作者 王志兴 陈启元 《Journal of Central South University of Technology》 EI 2007年第3期340-343,共4页
A potential 4.2 V cathode material LiVPO4F for lithium batteries was prepared by two-step reaction method based on a carbon-thermal reduction (CTR) process. Firstly, V2O5, NH4H2PO4 and acetylene black are reacted un... A potential 4.2 V cathode material LiVPO4F for lithium batteries was prepared by two-step reaction method based on a carbon-thermal reduction (CTR) process. Firstly, V2O5, NH4H2PO4 and acetylene black are reacted under an Ar atmosphere to yield VPO4. The transition-metal reduction is facilitated by the CTR based on C→CO transition. These CTR conditions favor stabilization of the vanadium as V^3+ as well as leaving residual carbon, which is useful in the subsequent electrode processing. Secondly, VPO4 reacts with ElF to yield LiVPO4F product. The property of the LiVPO4F was investigated by X-ray diffractometry (XRD), scanning electron microscopy (SEM) and electrochemical measurement. XRD studies show that LiVPO4F synthesized has triclinic structure(space group p I ), isostructural with the naturally occurring mineral tavorite, EiFePO4-OH. SEM image exhibits that the particle size is about 2μm together with homogenous distribution. Electrochemical test shows that the initial discharge capacity of LiVPO4F powder is 119 mA·h/g at the rate of 0.2C with an average discharge voltage of 4.2V (vs Ei/Li^+), and the capacity retains 89 mA·h/g after 30 cycles. 展开更多
关键词 lithium ion batteries cathode material LIVPO4F carbon-thermal reduction method
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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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Effect of baking processes on properties of TiB_2/C composite cathode material 被引量:1
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作者 吕晓军 李劼 +1 位作者 赖延清 方钊 《Journal of Central South University》 SCIE EI CAS 2009年第3期429-433,共5页
Pitch and TiB2/C green composite cathode material were respectively analyzed with simultaneous DSC-TGA, and effects of three baking processes of TiB2/C composite cathode material, i.e. K25, K5 and M5, on properties of... Pitch and TiB2/C green composite cathode material were respectively analyzed with simultaneous DSC-TGA, and effects of three baking processes of TiB2/C composite cathode material, i.e. K25, K5 and M5, on properties of TiB2/C composite cathode material were investigated. The results show that thermogravimetrie behavior of pitch and TiB2/C green composite cathode is similar, and appears the largest mass loss rate in the temperature range from 200 to 600 ℃. The bulk density variation of sample K5 before and after baking is the largest (11.9%), that of sample K25 is the second, and that of sample M5 is the smallest (6.7%). The crushing strength of sample M5 is the biggest (51.2 MPa), that of sample K2.5 is the next, and that of sample K5 is the smallest (32.8 MPa). But, the orders of the electrical resistivity and electrolysis expansion of samples are just opposite with the order of crushing strength. The heating rate has a great impact on the microstructure of sample. The faster the heating rate is, the bigger the pore size and porosity of sample are. Compared with the heating rate between 200 and 600℃ of samples K25 and K5, that of sample M5 is slower and suitable for baking process of TiB2/C composite cathode material. 展开更多
关键词 aluminum electrolysis TiB2/C composite cathode material baking process
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Improved Cycle Properties of FeS_2 Cathode Material with Metallic Additives 被引量:4
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作者 Jae-Won Choi Jae-Kwang Kim +4 位作者 Gouri Cheruvally Jou-Hyeon Ahn Ki-Won Kim Hyo-Jun Ahn Dong-Kyu Park 《材料科学与工程学报》 CAS CSCD 北大核心 2007年第6期910-913,共4页
Iron disulfide(FeS_2)cathode active material was prepared from iron and sulfur at room temperature by high energy mechanical alloying.Modified FeS_2 composites containing Co or Ni transition metal powders as additives... Iron disulfide(FeS_2)cathode active material was prepared from iron and sulfur at room temperature by high energy mechanical alloying.Modified FeS_2 composites containing Co or Ni transition metal powders as additives were also prepared by the same method.Lithium cells with these FeS_2 cathodes were studied for charge-discharge properties at room temperature using 0.5M LiTFSI in tetra(ethylene glycol)dimethyl ether(TEGDME)solvent.Cyclic voltammetry showed two anodic oxidation peaks at 1.8 and 2.5V and two cathodic reduction peaks at 2.0 and 1.3 V for FeS_2 with metal additives.The addition of 5wt% Co and 3wt% Ni resulted in an enhancement of the first discharge capacity giving 571 and 844mAh/g respectively at 0.1C-rate.The cycle performance was also enhanced remarkably by the addition of these electrically conductive transition metals in the active material.FeS_2 with 5wt% Co exhibited a stable cycle performance delivering a reversible capacity of 338mAh/g(37.8% of theoretical capacity)after 20 cycles. 展开更多
关键词 阴极材料 二硫化铁 锂离子电池 循环性能
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Synthesis and characterization of high-voltage cathode material LiNi_(0.5)Mn_(1.5)O_(4)by one-step solid-state reaction 被引量:3
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作者 WANG Zhi-xing FANG Hai-sheng +3 位作者 YIN Zhou-lan LI Xin-hai GUO Hua-jun PENG Wen-jie 《Journal of Central South University of Technology》 2005年第z1期54-58,共5页
LiNi_(0.5)Mn_(1.5)O_(4)was prepared under various conditions by one-step solid-state reaction in air and its properties were investigated by X-ray diffractormetry(XRD),scanning electron microscopy(SEM)and electrochemi... LiNi_(0.5)Mn_(1.5)O_(4)was prepared under various conditions by one-step solid-state reaction in air and its properties were investigated by X-ray diffractormetry(XRD),scanning electron microscopy(SEM)and electrochemical measurement.XRD patterns show that LiNi_(0.5)Mn_(1.5)O_(4)synthesized under various conditions has cubic spinel structure.SEM images exhibit that the particle size increases with increasing calcination temperature and time.Electro chemical test shows that the LiNi_(0.5)Mn_(1.5)O_(4)calcined at 700℃for 24 h delivers up to 143 mA·h/g,and the capacity retains 132 mA·h/g after 30 cycles. 展开更多
关键词 lithium ion batteries cathode material LiNi_(0.5)Mn_(1.5)O_(4) solid-state reaction
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Synthesis and electrochemical performance of Li_2Mg_(0.15)Mn_(0.4)Co_(0.45)SiO_4/C cathode material for lithium ion batteries
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作者 胡传跃 郭军 +2 位作者 李四军 彭秧锡 文瑾 《Journal of Central South University》 SCIE EI CAS 2012年第7期1791-1795,共5页
The synthesis, structure and performance of Li2Mg0.15Mn0.4Co0.45SiO4/C cathode material were studied. The Li2Mg0.15Mn0.4Co0.45SiO4/C solid solution with orthorhombic unit cell (space group Pmn21) was synthesized suc... The synthesis, structure and performance of Li2Mg0.15Mn0.4Co0.45SiO4/C cathode material were studied. The Li2Mg0.15Mn0.4Co0.45SiO4/C solid solution with orthorhombic unit cell (space group Pmn21) was synthesized successfully by combination of wet process and solid-state reaction at high temperature, and its electrochemical performance was investigated primarily. Li2Mg0.15Mn0.4Co0.45SiO4/C composite materials deliver a charge capacity of 302 mA-h/g and a discharge capacity of 171 mA.h/g in the first cycle. The discharge capacity is stabilized at about 100 mA-h/g after 10 cycles at a current density of 10 mA/g in the voltage of 1.5-4.8 V vs Li/Li^+. The results show that Mg-substitution for the Co ions in Li2Mn0.4Co0.6SiO4 improves the stabilization of initial structure and the electrochemical nerformance. 展开更多
关键词 lithium ion battery Li2Mg0.15Mn0.4Co0.45Si04/C cathode material SYNTHESIS
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Rate and Cycling Performance of Ti and Cu Dopedβ-NaMnO_(2) as Cathode of Sodium-ion Battery
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作者 ZHOU Jingyu LI Xingyu +3 位作者 ZHAO Xiaolin WANG Youwei SONG Erhong LIU Jianjun 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2024年第12期1404-1412,I0010,I0011,I0012,共12页
Sodium-ion batteries are economical and environmentally sustainable energy storage batteries.Among them,β-NaMnO_(2),a promising sodium-ion cathode material,is a manganese-based oxide with a corrugated laminar structu... Sodium-ion batteries are economical and environmentally sustainable energy storage batteries.Among them,β-NaMnO_(2),a promising sodium-ion cathode material,is a manganese-based oxide with a corrugated laminar structure,which has attracted significant attention due to its structural robustness and relatively high specific capacity.However,it has short cycle life and poor rate capability.To address these issues,Ti atoms,known for enhancing structural stability,and Cu atoms,which facilitate desodiation,were doped intoβ-NaMnO_(2) by first-principles calculation and crystal orbital Hamilton population(COHP)analysis.β-NaMn_(0.8)Ti_(0.1)Cu_(0.1)O_(2) exhibits a notable increase in reversible specific capacity and remarkable rate properties.Operating at a current density of 0.2C(1C=219 mA·g^(–1))and within a voltage range of 1.8–4.0 V,the modified material delivers an initial discharge capacity of 132 mAh·g^(–1).After charge/discharge testing at current densities of 0.2C,0.5C,1C,3C,and 0.2C,the material still maintains a capacity of 110 mA h·g^(–1).The doping of Ti atoms slows down the changes in the crystal structure,resulting in only minimal variation in the lattice constant c/a during the desodiation process.Mn and Cu engage in reversible redox reactions at voltages below 3.0 V and around 3.5 V,respectively.The extended plateau observed in the discharge curve below 3.0 V signifies that Mn significantly contributes to the overall battery capacity.This study provides insights into modifyingβ-NaMnO_(2) as a cathode material,offering experimental evidence and theoretical guidance for enhancing battery performance in Na-ion batteries. 展开更多
关键词 FIRST-PRINCIPLES sodium-ion battery layered cathode material
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Effect of TiB_2 content on resistance to sodium penetration of TiB_2/C cathode composites for aluminium electrolysis 被引量:5
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作者 李劼 方静 +1 位作者 李庆余 赖延清 《Journal of Central South University of Technology》 EI 2004年第4期400-404,共5页
TiB2/C cathode composites with various contents of TiB2 were prepared and their characterizations were observed and compared. The expansion of samples due to sodium and bath penetration was tested with a modified labo... TiB2/C cathode composites with various contents of TiB2 were prepared and their characterizations were observed and compared. The expansion of samples due to sodium and bath penetration was tested with a modified laboratory Rapoport apparatus and the appearances of the cut sections of specimens after electrolysis were studied. The results show that the mass of TiB2/C cathode composites with mass fraction of TiB2 less than 70% appreciably increases, but that of the composites with mass fraction of TiB2 more than 70% decreases slightly after being baked. The resistance to sodium and bath penetration of TiB2/C cathode composites increases with the increase of TiB2 content, especially in the composites with high TiB2 content. TiB2/C cathode composites have high resistance to the penetration of sodium and bath as well as good wettability by molten aluminum, and keep integrality and have little change of appearance after electrolysis, which indicates that TiB2/C cathode composites can be used as inert wettable cathode for aluminum electrolysis. 展开更多
关键词 aluminium electrolysis TiB_2 cathode composite material sodium penetration
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钠离子电池正极材料NaMn_(0.33)Fe_(0.33)Ni_(0.33)O_(2)的喷雾干燥法制备及其改性 被引量:1
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作者 张庆印 杨訾 +2 位作者 赵静 张桂芳 时志强 《天津工业大学学报》 北大核心 2025年第1期40-46,共7页
为了制备颗粒较均一的钠离子电池正极材料NaMn_(0.33)Fe_(0.33)Ni_(0.33)O_(2)(NFM111),以乙酸镍四水合物、柠檬酸铁、乙酸锰四水合物、乙酸钠三水合物以及无水柠檬酸为原料配制出喷雾溶液,采用喷雾干燥法制备前驱体,预氧化后进行球磨... 为了制备颗粒较均一的钠离子电池正极材料NaMn_(0.33)Fe_(0.33)Ni_(0.33)O_(2)(NFM111),以乙酸镍四水合物、柠檬酸铁、乙酸锰四水合物、乙酸钠三水合物以及无水柠檬酸为原料配制出喷雾溶液,采用喷雾干燥法制备前驱体,预氧化后进行球磨并掺杂TiO_(2)后再进行高温烧结,得到NFM111@TiO_(2);采用物性表征和电化学测试,探究不同煅烧温度对NFM111的影响。结果表明:本文制备的NFM111@TiO_(2)颗粒的粒径大小一致;煅烧温度为900℃时增大了NFM111的层间距,进而增大了钠离子传输速率,NFM111@TiO_(2)的首圈放电比容量为143.2 mA·h/g,100圈后容量保持率为86.8%,具有良好的电化学性能。 展开更多
关键词 喷雾干燥法 钠离子电池 正极材料 层状氧化物 掺杂
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退役锰酸锂电池正极材料优先提锂 被引量:1
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作者 张忠堂 张功喜 +3 位作者 李田玉 卢人航 刘兰进 严康 《中国有色金属学报》 北大核心 2025年第5期1726-1738,共13页
以退役锰酸锂电池正极材料为研究对象,使用黄铁矿(FeS2)作为硫化剂进行混合焙烧,通过水浸焙烧产物优先浸出Li_(2)SO_(4),从而达到选择性提锂的目的。本文考察了不同因素对“硫化焙烧-水浸”过程有价金属浸出率的影响,并采用X射线衍射仪(... 以退役锰酸锂电池正极材料为研究对象,使用黄铁矿(FeS2)作为硫化剂进行混合焙烧,通过水浸焙烧产物优先浸出Li_(2)SO_(4),从而达到选择性提锂的目的。本文考察了不同因素对“硫化焙烧-水浸”过程有价金属浸出率的影响,并采用X射线衍射仪(XRD)、扫描电镜能谱仪(SEM-EDS)和X射线光电子能谱仪(XPS)对物料进行了表征和分析,明确了Li、Mn、Fe物相转化规律。结果表明:通过硫化焙烧可实现Li向Li_(2)SO_(4)物相转化,证实了该工艺具有理论可行性。确定焙烧的最佳条件为焙烧温度550℃、FeS_(2)与正极材料Li的摩尔比1∶2、焙烧保温时间1 h、焙烧气氛纯N2。在最佳工艺条件下,Li浸出率可达92.78%,其他有价金属几乎不浸出,可实现高效选择性提Li。 展开更多
关键词 退役锰酸锂电池 正极材料 黄铁矿(FeS_(2)) 选择性提锂 硫化焙烧
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热电池用高电压正极材料简述
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作者 王岩 白鑫涛 +2 位作者 刘海瑞 田原 张清旭 《电源技术》 北大核心 2025年第4期685-690,共6页
传统热电池采用金属硫化物作为正极材料,随着对电池高能量密度需求的增加,对新型高电压正极材料的需求也越来越迫切,国内外都在开展高电压正极材料在热电池中应用的探索。综述了国内外学者对卤化物、氧化物正极材料的研究进展,对最新实... 传统热电池采用金属硫化物作为正极材料,随着对电池高能量密度需求的增加,对新型高电压正极材料的需求也越来越迫切,国内外都在开展高电压正极材料在热电池中应用的探索。综述了国内外学者对卤化物、氧化物正极材料的研究进展,对最新实验结果进行报道,总结其出现的问题及优化方向。 展开更多
关键词 热电池 高电压 正极材料
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双金属掺杂多孔碳正极材料的合成与电化学性能
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作者 曹翔宇 张嘉盈 +3 位作者 丰赟 申林坤 张秀玲 闫娟枝 《无机化学学报》 北大核心 2025年第3期509-520,共12页
利用水热反应制备了葡萄糖缩聚物包覆铁氰化钴晶体的复合前驱体,经过碳化、酸刻蚀和硫负载,最终获得一种双金属(Co、Fe)及氮掺杂的多孔碳/硫复合材料(e-CF@NPC/S,其中CF表示CoFe合金,NPC表示氮掺杂的多孔碳)。进而通过改变形成核壳的原... 利用水热反应制备了葡萄糖缩聚物包覆铁氰化钴晶体的复合前驱体,经过碳化、酸刻蚀和硫负载,最终获得一种双金属(Co、Fe)及氮掺杂的多孔碳/硫复合材料(e-CF@NPC/S,其中CF表示CoFe合金,NPC表示氮掺杂的多孔碳)。进而通过改变形成核壳的原料比例获得系列样品,研究其作为锂硫电池正极的电化学性能。结果表明:该材料的核壳结构提供了充足的空间应对电池反应过程中的活性物质负载及体积变化,碳外壳的空间位阻同时起到了抑制穿梭效应的积极作用和阻碍离子扩散的负面作用,而合金纳米粒子提供吸附和催化作用的效果取决于其表面活性位点的数量。在多种作用的协同下,e-CF@NPC-3/S表现出优异的综合电化学性能,在0.2C的电流密度下循环100次后能保持996.9 mAh·g^(-1)的可逆比容量和92.35%的容量保持率。在1C的高电流密度下循环300次后,e-CF@NPC-3/S仍具有684.5 mAh·g^(-1)的可逆比容量(循环衰减率为0.049%)。 展开更多
关键词 金属掺杂 锂硫电池 正极材料 复合材料 核壳结构
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碳酸锰两步反应制备P2-Na_(0.67)MnO_(2)正极材料及性能
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作者 张庆堂 高鹏飞 王晓梅 《功能材料》 北大核心 2025年第4期4010-4015,共6页
采用MnCO_(3)为原料,通过两步和一步反应制备P2-Na_(0.67)MnO_(2)正极材料(分别命名为NMO-2,NMO-1),并对合成样品进行结构表征以及电化学性能等测试。研究结果表明,NMO-2和NMO-1的晶粒尺寸分别为51、60 nm,小的晶粒尺寸可缩短钠离子迁... 采用MnCO_(3)为原料,通过两步和一步反应制备P2-Na_(0.67)MnO_(2)正极材料(分别命名为NMO-2,NMO-1),并对合成样品进行结构表征以及电化学性能等测试。研究结果表明,NMO-2和NMO-1的晶粒尺寸分别为51、60 nm,小的晶粒尺寸可缩短钠离子迁移距离,和NMO-1的不规则颗粒不同,NMO-2为明显的一维棒状和二维片状颗粒。当NMO-2作为电池正极时,0.1 C倍率下放电比容量为140 mAh/g,10 C高倍率下放电比容量为71.8 mAh/g,且在0.5 C倍率下循环100次后容量保持率为89.5%。 展开更多
关键词 钠离子电池 正极材料 层状氧化物 锰酸钠
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纳米球壳磷酸-硫酸亚铁钠复合正极材料的制备
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作者 王亚平 申志强 +3 位作者 辛娜 姜舟舰 王奎 栗欢欢 《电源技术》 北大核心 2025年第7期1416-1426,共11页
针对传统铁基聚阴离子正极材料NaFePO_(4)(能量密度小、电压低)与Na_(2)Fe_(2)(SO_(4))_(3)(稳定性差、成本高)的固有局限性,提出“磷酸盐/硫酸盐复合协同调控”策略,利用磷酸盐的结构稳定特性构筑三维骨架,硫酸盐的高电压特性优化材料... 针对传统铁基聚阴离子正极材料NaFePO_(4)(能量密度小、电压低)与Na_(2)Fe_(2)(SO_(4))_(3)(稳定性差、成本高)的固有局限性,提出“磷酸盐/硫酸盐复合协同调控”策略,利用磷酸盐的结构稳定特性构筑三维骨架,硫酸盐的高电压特性优化材料导电结构,制备了高工作电压的磷酸-硫酸亚铁钠(NFSP)复合正极材料。采用有机膦酸-柠檬酸-碳纳米管三碳源体系,结合配位辅助原位碳包覆技术,创造性地构建出纳米球壳型导电网络复合结构,NFSP-0.2显示出优异的电化学性能:0.1 C倍率下放电比容量82.7mAh/g(较纯硫酸盐体系提升19.9%),3.665 V高压平台。1 C倍率100次循环后,容量比纯硫酸盐体系的初始容量高53%。这种复合型聚阴离子正极材料对钠离子电池的发展具有巨大的潜力。 展开更多
关键词 钠离子电池 正极材料 复合聚阴离子型 磷酸-硫酸亚铁钠
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退役锂电池正极材料多离子体系的水基低共熔溶剂浸出
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作者 何玲 张建磊 +3 位作者 董其铮 候显 李子轩 李文生 《中国有色金属学报》 北大核心 2025年第6期2103-2111,共9页
为高效分离退役锂电池正极材料多离子体系中的铝元素,分析了以柠檬酸(CA)和乙二醇(EG)为主要成分的水基低共熔溶剂对退役锂电池正极材料的多离子体系浸出及分离过程。利用该溶剂良好的体系稳定性和优异的浸出性能,研究不同极性水基低共... 为高效分离退役锂电池正极材料多离子体系中的铝元素,分析了以柠檬酸(CA)和乙二醇(EG)为主要成分的水基低共熔溶剂对退役锂电池正极材料的多离子体系浸出及分离过程。利用该溶剂良好的体系稳定性和优异的浸出性能,研究不同极性水基低共熔溶剂对各金属元素浸出率的影响。结果表明:最佳浸出条件为n(EG)∶n(CA)=1.5∶1,浸出温度为90℃,浸出时间为1 h,固液比(g/mL)为3∶100;在最佳条件下,Al、Co、Fe、Li、Mn和Ni的浸出率分别为6.55%、99.26%、90.23%、95.22%、83.77%和95.71%。该柠檬酸/乙二醇水基低共熔溶剂无需额外添加还原剂即可实现高效浸出,成功分离了多离子正极材料中的Al、Co、Fe、Li、Mn和Ni等金属元素,尤其是对Al元素的选择性分离展现出显著优势。 展开更多
关键词 柠檬酸 乙二醇 水基低共熔溶剂 极性 多离子正极材料 酸浸
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Zr改性LiNi_(0.9)Mn_(0.1)O_(2)正极材料的制备及电化学性能研究
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作者 李韡 赵煜埂 +2 位作者 刘婧 单桂轩 张金利 《天津大学学报(自然科学与工程技术版)》 北大核心 2025年第5期520-530,共11页
锂离子电池具有体积小、工作温度范围宽和高能量密度等特点,已被广泛应用于新能源汽车动力电池、储能等领域.在众多锂离子电池材料中,富镍无钴正极材料LiNi_(0.9)Mn_(0.1)O_(2)(NM)因其优异的放电比容量、较低的生产成本和环境友好性而... 锂离子电池具有体积小、工作温度范围宽和高能量密度等特点,已被广泛应用于新能源汽车动力电池、储能等领域.在众多锂离子电池材料中,富镍无钴正极材料LiNi_(0.9)Mn_(0.1)O_(2)(NM)因其优异的放电比容量、较低的生产成本和环境友好性而成为研究热点.但该材料同时也存在循环稳定性差、Li^(+)/Ni^(2+)混排严重和电解液侵蚀造成的材料结构退化等问题.为了提高NM材料的电化学性能,采用高剪切强化共沉淀法在材料前驱体中嵌入Zr进行改性,研究了Zr嵌入对材料晶体结构与形貌、循环性能、倍率性能、电荷转移阻抗和Li^(+)迁移速率等方面的影响.研究表明,在优选的条件下制备出的改性材料LiNi_(0.9)Mn_(0.08)Zr_(0.02)O_(2)(NM-2Zr)具有优良的层状结构特征和结晶度,Zr改性后提高了材料的Li^(+)迁移速率、降低了Li^(+)/Ni^(2+)混排度.改性材料NM-2Zr的初始放电容量为219.3(mA·h)/g(25℃,2.7~4.4 V,0.1 C),高于未改性的NM材料(208.3(mA·h)/g).1.0 C下NM-2Zr的初始放电容量为183.2(mA·h)/g,循环150圈后容量保持率为87.4%,优于NM材料(178.8(mA·h)/g,84.6%).在5.0 C的高倍率下NM-2Zr的初始放电容量为144.8(mA·h)/g,循环150圈后容量保持率为95.1%,同样优于NM材料(132.5(mA·h)/g,90.0%).此外,Zr改性还能显著提高材料的结构稳定性,抑制充放电循环过程中晶间微裂纹的产生和不可逆相变的发生,同时还降低了界面处电荷转移阻抗的增长. 展开更多
关键词 锂离子电池 富镍正极材料 无钴材料 高剪切强化共沉淀法 锆改性
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红外吸收法检测LiFePO_(4)/C的碳含量
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作者 王琳 王楠 王耀武 《电池》 北大核心 2025年第2期396-401,共6页
基于自动进样-高频燃烧-红外吸收光谱原理,建立了宽范围测定碳包覆磷酸铁锂(LiFePO_(4)/C)正极材料中碳的方法。以某送检的LiFePO_(4)/C样品作为研究对象,通过SEM确定待测样品中碳的存在且分布相对均匀,探究称样量、助熔方式、分析参数... 基于自动进样-高频燃烧-红外吸收光谱原理,建立了宽范围测定碳包覆磷酸铁锂(LiFePO_(4)/C)正极材料中碳的方法。以某送检的LiFePO_(4)/C样品作为研究对象,通过SEM确定待测样品中碳的存在且分布相对均匀,探究称样量、助熔方式、分析参数和功率模式等实验条件,发现当称样量为0.0500 g,助熔方式为m(Fe)+m(W)=0.5000 g+0.7000 g,吹扫时间、延迟时间均为20 s,恒定功率模式(100%)时,结果可靠。方法的线性相关性(R 2)在低碳区、高碳区分别为0.9996、0.9990,检出限为0.0000596%,相对标准偏差(RSD,n=7)为0.80%~1.89%,样品的加标回收率为99.5%~101.5%。该方法的检测范围宽、准确性好、精密度高、自动化水平高。 展开更多
关键词 红外吸收 助熔剂 正极材料 磷酸铁锂 碳包覆 碳含量
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基于多物理场耦合分析的电解加工阴极设计与优化
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作者 袁奎 付恒勋 +4 位作者 李荣 秦东 谌立贵 钱龙宇 吴怀超 《机床与液压》 北大核心 2025年第10期79-85,共7页
电解加工(ECM)技术可有效解决难磨材料(如高速钢)传统磨削加工的弊端,但电解加工的极间间隙受电场、流场和温度场等多个物理场的影响,加之物理场之间的耦合机制较为复杂,现有阴极优化设计方法大多基于简化模型开展。为了有效解决高速钢... 电解加工(ECM)技术可有效解决难磨材料(如高速钢)传统磨削加工的弊端,但电解加工的极间间隙受电场、流场和温度场等多个物理场的影响,加之物理场之间的耦合机制较为复杂,现有阴极优化设计方法大多基于简化模型开展。为了有效解决高速钢电解加工阴极设计问题,以轧辊用M42(W2Mo9Cr4VCo8)高速钢为研究对象,基于多物理场耦合模型提出了一种电解加工成型阴极迭代优化设计方法,并进行高速钢电解加工工艺实验,以提高电解加工阴极的设计精度和效率。结果表明:相较于传统阴极设计方法,优化后阴极的加工稳定性较好,加工后工件表面的平均圆度误差为13.67μm,验证了该优化方法的可行性和科学性。 展开更多
关键词 电解加工(ECM) 难磨材料 多物理场耦合 阴极设计
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羧基化碳纳米管含量对锂硫电池SPAN正极材料循环性能的影响
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作者 张兴祥 穆钟林 +1 位作者 刘浩 刘海辉 《天津工业大学学报》 北大核心 2025年第1期32-39,共8页
针对锂硫电池(LSB)中存在的硫利用率低、循环稳定性差的问题,采用简单的静电纺丝技术,并结合半碳化、硫化方法制备了一种独立的硫化聚丙烯腈/羧基化多壁碳纳米管(SPAN/MWCNTs-COOH)复合材料。将该材料直接用作锂硫电池的正极材料,并探... 针对锂硫电池(LSB)中存在的硫利用率低、循环稳定性差的问题,采用简单的静电纺丝技术,并结合半碳化、硫化方法制备了一种独立的硫化聚丙烯腈/羧基化多壁碳纳米管(SPAN/MWCNTs-COOH)复合材料。将该材料直接用作锂硫电池的正极材料,并探究了不同的MWCNTs-COOH添加量对电池循环性能的影响。结果表明:由于其独特的纳米纤维三维网络结构,促进了电池中离子的快速转移,提高了电池的电导率,所制备的正极材料具有库伦效率高、循环稳定性好、柔韧性好等特点。添加9%(质量分数)MWCNTs-COOH的正极材料在0.2 C循环200圈后的容量为533.97 mA·h/g,在0.5 C循环500圈后容量达到429.21 mA·h/g,在较高的电流密度1 C下,仍表现出较好的循环稳定性。 展开更多
关键词 锂硫电池 硫化聚丙烯腈 正极材料 自支撑 羧基化碳纳米管 循环性能
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