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Designing ultrastable P2/O3-type layered oxides for sodium ion batteries by regulating Na distribution and oxygen redox chemistry
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作者 Jieyou Huang Weiliang Li +3 位作者 Debin Ye Lin Xu Wenwei Wu Xuehang Wu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第7期466-476,共11页
P2/O3-type Ni/Mn-based layered oxides are promising cathode materials for sodium-ion batteries(SIBs)owing to their high energy density.However,exploring effective ways to enhance the synergy between the P2 and 03 phas... P2/O3-type Ni/Mn-based layered oxides are promising cathode materials for sodium-ion batteries(SIBs)owing to their high energy density.However,exploring effective ways to enhance the synergy between the P2 and 03 phases remains a necessity.Herein,we design a P2/O3-type Na_(0.76)Ni_(0.31)Zn_(0.07)Mn_(0.50)Ti_(0.12)0_(2)(NNZMT)with high chemical/electrochemical stability by enhancing the coupling between the two phases.For the first time,a unique Na*extraction is observed from a Na-rich O3 phase by a Na-poor P2 phase and systematically investigated.This process is facilitated by Zn^(2+)/Ti^(4+)dual doping and calcination condition regulation,allowing a higher Na*content in the P2 phase with larger Na^(+)transport channels and enhancing Na transport kinetics.Because of reduced Na^(+)in the O3 phase,which increases the difficulty of H^(+)/Na^(+) exchange,the hydrostability of the O3 phase in NNZMT is considerably improved.Furthermore,Zn^(2+)/Ti^(4+)presence in NNZMT synergistically regulates oxygen redox chemistry,which effectively suppresses O_(2)/CO_(2) gas release and electrolyte decomposition,and completely inhibits phase transitions above 4.0 V.As a result,NNZMT achieves a high discharge capacity of 144.8 mA h g^(-1) with a median voltage of 3.42 V at 20 mA g^(-1) and exhibits excellent cycling performance with a capacity retention of 77.3% for 1000 cycles at 2000 mA g^(-1).This study provides an effective strategy and new insights into the design of high-performance layered-oxide cathode materials with enhanced structure/interface stability forSIBs. 展开更多
关键词 Sodium-ion batteries P2/O3-type layered oxides na distribution Oxygen redox chemistry Hydrostability
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Dual-Functional Electrode Promoting Dendrite-Free and CO_(2) Utilization Enabled High-Reversible Symmetric Na-CO_(2) Batteries
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作者 Changfan Xu Jiajia Qiu +6 位作者 Yulian Dong Yueliang Li Yonglong Shen Huaping Zhao Ute Kaiser Guosheng Shao Yong Lei 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2024年第3期123-132,共10页
Sodium-carbon dioxide(Na-CO_(2))batteries are regarded as promising energy storage technologies because of their impressive theoretical energy density and CO_(2)reutilization,but their practical applications are restr... Sodium-carbon dioxide(Na-CO_(2))batteries are regarded as promising energy storage technologies because of their impressive theoretical energy density and CO_(2)reutilization,but their practical applications are restricted by uncontrollable sodium dendrite growth and poor electrochemical kinetics of CO_(2)cathode.Constructing suitable multifunctional electrodes for dendritefree anodes and kinetics-enhanced CO_(2)cathodes is considered one of the most important ways to advance the practical application of Na-CO_(2)batteries.Herein,RuO2 nanoparticles encapsulated in carbon paper(RuCP)are rationally designed and employed as both Na anode host and CO_(2)cathode in Na-CO_(2)batteries.The outstanding sodiophilicity and high catalytic activity of RuCP electrodes can simultaneously contribute to homogenous Na+distribution and dendrite-free sodium structure at the anode,as well as strengthen discharge and charge kinetics at the cathode.The morphological evolution confirmed the uniform deposition of Na on RuCP anode with dense and flat interfaces,delivering enhanced Coulombic efficiency of 99.5%and cycling stability near 1500 cycles.Meanwhile,Na-CO_(2)batteries with RuCP cathode demonstrated excellent cycling stability(>350 cycles).Significantly,implementation of a dendrite-free RuCP@Na anode and catalytic-site-rich RuCP cathode allowed for the construction of a symmetric Na-CO_(2)battery with long-duration cyclability,offering inspiration for extensive practical uses of Na-CO_(2)batteries. 展开更多
关键词 CO_(2)cathode dendrite free ELECTROCATALYSIS na metal anode symmetric CO_(2)batteries
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NiCl_(2)作为添加剂对热电池NiF_(2)正极材料倍率性能的影响
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作者 赵亚旭 刘志成 +2 位作者 张梦起 原强 谢欣 《电源技术》 CAS 北大核心 2024年第9期1827-1831,共5页
与硫化物相比,氟化物作为热电池正极材料,具有较高的理论放电电压和放电比容量。其中,NiF_(2)正极材料的理论放电电压为2.96 V,理论放电比容量为554 mAh/g。然而,由于NiF_(2)本征的离子电导率较低,导致其作为热电池正极材料时倍率性能较... 与硫化物相比,氟化物作为热电池正极材料,具有较高的理论放电电压和放电比容量。其中,NiF_(2)正极材料的理论放电电压为2.96 V,理论放电比容量为554 mAh/g。然而,由于NiF_(2)本征的离子电导率较低,导致其作为热电池正极材料时倍率性能较差,在1 A/cm^(2)电流密度下出现明显的容量衰减现象;另外,NiF_(2)的实际放电电压也远低于理论值。NiCl2正极材料的倍率性能较为优异,将其作为添加剂与NiF_(2)正极材料进行复合,可以显著改善NiF_(2)正极材料在大电流密度下的极化现象,延长热电池的放电时间。 展开更多
关键词 NiF_(2) nicl_(2) 正极材料 倍率性能 热电池
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Composite solid electrolyte of Na3PS4-PEO for all-solid-state SnS2/Na batteries with excellent interfacial compatibility between electrolyte and Na metal 被引量:7
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作者 Xiaoyan Xu Yuanyuan Li +6 位作者 Jun Cheng Guangmei Hou Xiangkun Nie Qing Ai Linna Dai Jinkui Feng Lijie Ci 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2020年第2期73-78,共6页
High ionic conductivity and superior interfacial stability of solid electrolytes at the electrodes are crucial factors for high-performance all-solid-state sodium batteries. Herein, a composite solid electrolyte Na3PS... High ionic conductivity and superior interfacial stability of solid electrolytes at the electrodes are crucial factors for high-performance all-solid-state sodium batteries. Herein, a composite solid electrolyte Na3PS4-polyethylene oxide is synthesized by the solution-phase reaction method with an improved ionic conductivity up to 9.4 × 10-5 S/cm at room temperature. Moreover, polyethylene oxide polymer layer is wrapped homogeneously on the surface of Na3PS4 particles, which could effectively avoid the direct contact between Na3PS4 electrolyte and sodium metal, thus alleviate their side reactions. We demonstrate that all-solid-state battery SnS2/Na with the composite solid electrolyte Na3PS4-polyethylene oxide delivers an enhanced electrochemical performance with 230 m Ah/g after 40 cycles. 展开更多
关键词 COMPOSITE solid ELECTROLYTE na 3PS4 ALL-SOLID-STATE sodium battery SnS2
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An insight into failure mechanism of NASICON-structured Na3V2(PO4)3 in hybrid aqueous rechargeable battery 被引量:3
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作者 Xinxin Zhang Jun Ma +6 位作者 Pu Hu Bingbing Chen Chenglong Lu Xinhong Zhou Pengxian Han Lihua Chen Guanglei Cui 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2019年第5期1-7,共7页
NASICON (Na-super-ionic-conductors)-structured materials have attracted extensive research interest due to their great application potential in secondary batteries. However, the mechanism of capacity fading for NASICO... NASICON (Na-super-ionic-conductors)-structured materials have attracted extensive research interest due to their great application potential in secondary batteries. However, the mechanism of capacity fading for NASICON-structured electrode materials has been rarely studied. In this paper, we synthesized the NASICON-structured Na3V2(PO4)3/C composite by simple sol-gel and high-temperature solid-phase method and investigated its electrochemical performance in Na-Zn hybrid aqueous rechargeable batteries. After characterizing the structure, morphology and composition variations as well as the interfacial resistance changes of Na3V2(PO4)3/C cathode during cycling, we propose a mechanical and interfacial degradation mechanism for capacity fading of NASICON-structured Na3V2(PO4)3/C in Na-Zn hybrid aqueous rechargeable batteries. This work will shed light on enhancing the mechanical and in terfacial stability of NASICON-structured Na3V2(PO4)3/C in Na-Zn hybrid aqueous rechargeable batteries. 展开更多
关键词 Mechanical degradation na3V2(PO4)3 Zn metal ANODE HYBRID AQUEOUS battery Failure mechanism
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The application of carbon materials in nonaqueous Na‐O2 batteries 被引量:9
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作者 Xiaoting Lin Qian Sun +2 位作者 Kieran Doyle Davis Ruying Li Xueliang Sun 《Carbon Energy》 CAS 2019年第2期141-164,共24页
Na‐O2 batteries are advantageous as the candidates of next‐generation electric vehicles due to their ultrahigh theoretical energy density and have attracted enormous attention recently.Tremendous efforts have been d... Na‐O2 batteries are advantageous as the candidates of next‐generation electric vehicles due to their ultrahigh theoretical energy density and have attracted enormous attention recently.Tremendous efforts have been devoted to improve the Na‐O2 battery performance by designing advanced electrodes with various carbonbased materials.Carbon materials used in Na‐O2 batteries not only function as the air electrode to provide active sites and accommodate discharge products but also as Na anode protectors against dendrite growth and chemical/electrochemical corrosion.In this review,we mainly focus on the application of various carbonbased materials in Na‐O2 batteries and highlight their advances.The scientific understanding on the fundamental design of the material microstructure and chemistry in relation to the battery performance are summarized.Finally,perspectives on enhancing the overall battery performance based on the optimization and rational design of carbon‐based cell components are also briefly anticipated. 展开更多
关键词 air electrode carbon materials nonaqueous na‐O2 batteries sodium anode
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Na2FePO4F/C composite synthesized via a simple solid state route for lithium-ion batteries 被引量:3
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作者 HU Hai WANG Yu +2 位作者 HUANG Yan SHU Hong-bo WANG Xian-you 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第6期1521-1529,共9页
Using low-cost FePO4·2H2O as iron source,Na2FePO4F/C composite is prepared by alcohol-assisted ball milling and solid-state reaction method.The XRD pattern of Na2FePO4F/C composite demonstrates sharp peaks,indica... Using low-cost FePO4·2H2O as iron source,Na2FePO4F/C composite is prepared by alcohol-assisted ball milling and solid-state reaction method.The XRD pattern of Na2FePO4F/C composite demonstrates sharp peaks,indicating high crystalline and phase purity.The SEM and TEM images reveal that diameter of the spherical-like Na2FePO4F/C particles ranges from 50 to 300 nm,and HRTEM image shows that the surface of Na2FePO4F/C composite is uniformly coated by carbon layer with a average thickness of about 3.6 nm.The carbon coating constrains the growth of the particles and effectively reduces the agglomeration of nanoparticles.Using lithium metal as anode,the composite delivers a discharge capacities of 102.8,96.4 and 90.3 mA·h/g at rates of 0.5C,1C and 2C,respectively.After 100 cycles at 0.5C,a discharge capacity of 98.9 mA·h/g is maintained with capacity retention of 96.2%.The Li+diffusion coefficient(D)of Na2FePO4F/C composite is calculated as 1.71×10^–9 cm^2/s.This study reveals that the simple solid state reaction could be a practical and effective synthetic route for the industrial production of Na2FePO4F/C material. 展开更多
关键词 lithium-ion batteries na2FePO4F/C composite alcohol-assisted ball milling solid state reaction spherical-like particles
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LaNbO_(4)掺杂对Na-β"-Al_(2)O_(3)固态电解质性能的改善
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作者 张万星 刘立敏 +3 位作者 周晓亮 徐瑶 郭炜琳 张硕 《陶瓷学报》 CAS 北大核心 2024年第4期696-702,共7页
离子导体陶瓷材料的高断裂强度和优异热稳定性对于解决目前困扰碱金属电池发展的热失控问题具有重要意义,但其在室温下表现出的较高离子传输阻力限制了全固态电池的实际性能。以Na-β"-Al_(2)O_(3)(SBA)这一具备独特层状二维Na^(+... 离子导体陶瓷材料的高断裂强度和优异热稳定性对于解决目前困扰碱金属电池发展的热失控问题具有重要意义,但其在室温下表现出的较高离子传输阻力限制了全固态电池的实际性能。以Na-β"-Al_(2)O_(3)(SBA)这一具备独特层状二维Na^(+)传导结构的离子导体陶瓷为研究对象,通过合成具备“微弹性”特点的LaNbO_(4)陶瓷作为第二相来对SBA的晶粒间隙进行填充修饰,以改善SBA在室温下的离子传导性能。结果表明,0.50 wt.%的LaNbO_(4)掺入量对SBA的提升效果最佳,修饰后的SBA室温离子电导率达到了2.061 mS·cm^(-1)。对应的活化能也从纯相SBA的0.1714 eV降低到了0.1545 eV。陶瓷横截面的SEM图像表明,合适比例的LaNbO_(4)掺入不仅提高了SBA的烧结致密度,也改善了SBA的晶体生长趋势,因此修饰后的SBA的阻抗值发生了降低。在室温全固态对称钠电池的恒流循环实验中,使用掺杂SBA组装的对称电池能够以更低的电压运行也从实验层面上印证了上述观点。 展开更多
关键词 离子导体陶瓷 全固态电池 na-β"-Al_(2)O_(3) LaNbO_(4) 掺杂修饰
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Interface effect on promoting reversible conversion for Na2Se in the metal selenide as sodium ion batteries
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作者 Tianshuai Wang Jiewen Xiao +2 位作者 Xiyu Cao Yanchen Fan Qianfan Zhang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2020年第5期8-12,共5页
The rapid development of modern electronic devices has promoted more research in the field of high energy-density storage devices[1].Lithium ion batteries(LIBs)have been widely used in electronic devices and hybrid el... The rapid development of modern electronic devices has promoted more research in the field of high energy-density storage devices[1].Lithium ion batteries(LIBs)have been widely used in electronic devices and hybrid electric vehicles since their successful commercialization by Sony[2,3]. 展开更多
关键词 naION battery Graphene/na2Se interface REVERSIBLE CONVERSION reaction
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Na_(3)V_(2)(PO_(4))_(3)/C正极材料制备与储钠性能综合实验教学设计 被引量:2
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作者 张晓萍 隋裕雷 伍凌 《实验技术与管理》 CAS 北大核心 2023年第4期177-180,186,共5页
设计了“常温预还原-热处理法制备钠离子电池正极材料磷酸钒钠”综合性研究实验,探究了原料种类和热处理温度对Na_(3)V_(2)(PO_(4))_(3)/C的物相、晶体结构、晶粒尺寸、微观形貌及电化学性能的影响。研究表明,NH_(4)VO_(3)中的V^(5+)更... 设计了“常温预还原-热处理法制备钠离子电池正极材料磷酸钒钠”综合性研究实验,探究了原料种类和热处理温度对Na_(3)V_(2)(PO_(4))_(3)/C的物相、晶体结构、晶粒尺寸、微观形貌及电化学性能的影响。研究表明,NH_(4)VO_(3)中的V^(5+)更易被草酸常温还原,机械活化后所得前驱体为无定形结构,由该前驱体热处理制备的Na_(3)V_(2)(PO_(4))_(3)/C结晶度更高,且电化学性能更优。通过优化合成温度,发现在700℃下合成的Na_(3)V_(2)(PO_(4))_(3)/C具有最高的比容量、最优的倍率性能和最佳的循环性能。在实验中,学生通过材料制备、结构及形貌表征、电池制作与电化学性能分析等环节,能够达到强化理论知识、提高实验技能、激发创新性思维的目的。 展开更多
关键词 钠离子电池 正极材料 磷酸钒钠 综合实验
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热电池复合阴极材料NiCl_(2)/NiF_(2)放电性能的研究 被引量:2
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作者 马士平 曹勇 +4 位作者 张小强 魏开远 吴涛 王超 崔艳华 《中国材料进展》 CAS CSCD 北大核心 2021年第8期561-566,共6页
NiCl_(2)阴极材料具有高的理论放电电压和理论比能量,作为一种新型热电池阴极材料而被广泛研究。NiCl_(2)阴极材料在放电过程中会产生LiCl等物质,这将导致含LiCl的熔盐电解质出现成分偏析,并产生较大的极化阻抗,从而使NiCl_(2)阴极材料... NiCl_(2)阴极材料具有高的理论放电电压和理论比能量,作为一种新型热电池阴极材料而被广泛研究。NiCl_(2)阴极材料在放电过程中会产生LiCl等物质,这将导致含LiCl的熔盐电解质出现成分偏析,并产生较大的极化阻抗,从而使NiCl_(2)阴极材料的放电性能明显下降。通过添加不同含量的NiF_(2)构建NiCl_(2)/NiF_(2)双活性复合阴极材料,能够抑制NiCl_(2)阴极材料在放电过程中造成的熔盐成分偏析。研究结果表明,当添加的NiF_(2)质量分数为30%时,在电流密度为100 mA·cm^(-2)下NiCl_(2)/NiF_(2)双活性复合阴极材料的放电比容量达到291.2 mAh·g^(-1),比能量密度达0.701 Wh·g^(-1)(截止电压≥2 V),比能量密度分别是NiCl_(2)和NiF_(2)阴极材料的1.67和2.11倍。 展开更多
关键词 热电池 阴极材料 复合材料 nicl_(2)/NiF_(2)
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热电池正极材料NiCl_(2)的制备及性能研究 被引量:5
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作者 任玥盈 李继龙 +2 位作者 杨少华 许浩 占先知 《电源技术》 CAS 北大核心 2021年第6期756-759,767,共5页
采用高温升华工艺对NiCl_(2)材料进行处理,表征测试结果表明,处理得到的NiCl_(2)正极材料具有更好的结构。实验表明在850℃升华下得到的NiCl_(2)升华粉作为热电池正极材料时,单体电池的放电性能最佳。由于NiCl_(2)材料导电性能较差,针... 采用高温升华工艺对NiCl_(2)材料进行处理,表征测试结果表明,处理得到的NiCl_(2)正极材料具有更好的结构。实验表明在850℃升华下得到的NiCl_(2)升华粉作为热电池正极材料时,单体电池的放电性能最佳。由于NiCl_(2)材料导电性能较差,针对这一特征,对金属和非金属导电剂的添加进行了研究,同时也进一步对混合导电剂的改性进行研究,发现添加复配比例m(石墨烯)∶m(镍粉)为3∶7的混合导电剂的单体电池放电性能最优,初始放电电压为2.43 V,截止1.0 V的比容量为279.5 mAh/g。 展开更多
关键词 热电池 正极材料 nicl_(2) 放电性能
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高功率热电池NiCl_(2)正极材料研究进展 被引量:4
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作者 朱浩 刘慕霄 田雨萌 《电源技术》 CAS 北大核心 2021年第8期1095-1099,共5页
正极材料对于热电池的性能有着决定性的影响,随着军事装备的发展,武器电源的重要性愈发提高,现有的热电池体系已经难以满足现代化列装武器装备对电池性能的要求。综述了NiCl_(2)正极材料的研究现状和改性方案,展望了NiCl_(2)作为高功率... 正极材料对于热电池的性能有着决定性的影响,随着军事装备的发展,武器电源的重要性愈发提高,现有的热电池体系已经难以满足现代化列装武器装备对电池性能的要求。综述了NiCl_(2)正极材料的研究现状和改性方案,展望了NiCl_(2)作为高功率正极材料的发展趋势。 展开更多
关键词 热电池 nicl_(2)正极材料 高功率
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Progress and prospect for NASICON-type Na3V2(PO4)3 forelectrochemical energy storage 被引量:9
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作者 Qiong Zheng Hongming Yi +1 位作者 Xianfeng Li Huamin Zhang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2018年第6期1597-1617,共21页
Sodium-ion batteries (SIBs) have attracted increasing attention in the past decades, because of high over-all abundance of precursors, their even geographical distribution, and low cost. Na3V2(PO4)3 (NVP), atypi... Sodium-ion batteries (SIBs) have attracted increasing attention in the past decades, because of high over-all abundance of precursors, their even geographical distribution, and low cost. Na3V2(PO4)3 (NVP), atypical sodium super ion conductor (NASlCON)-based electrode material, exhibits pronounced structuralstability, exceptionally high ion conductivity, rendering it a most promising electrode for sodium storage.However. the comparatively low electronic conductivity makes the theoretical capacity of NVP cannot befully accessible even at comparatively low rates, presenting a major drawback for further practical ap-plications, especially when high rate capability is especially important. Thus, many endeavors have beenconformed to increase the surface and intrinsic electrical conductivity of NVP by coating the active mate-rials with a conductive carbon layer, downsizing the NVP particles, combining the NVP particle with vari-ous carbon materials and ion doping strategy. In this review, to get a better understanding on the sodiumstorage in NVP, we firstly present 4 distinct crystal structures in the temperature range of-30℃-225℃ namely α-NVP, β-NVP, β′-NVP and γ-NVP. Moreover, we give an overview of recent approaches to en-hance the surface electrical conductivity and intrinsic electrical conductivity of NVP. Finally, some poten-tial applications of NVP such as in all-climate environment and PHEV, EV fields have been prospected. 展开更多
关键词 Sodium ion batteries na3 V2(PO4)3Crystal structure Electrical conductivity Energy storage
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Nano-sized carboxylates as anode materials for rechargeable lithium-ion batteries 被引量:2
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作者 Xiaoyan Wu Jie Ma +2 位作者 Yong-Sheng Hu Hong Li Liquan Chen 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2014年第3期269-273,共5页
Nano-sized caiboxylales Na2C7H3NO4 and Na2C6H2N2O4 were prepared and investigated as anode materials for lithium-ion batteries.Both carboxylates exhibit high reversible capacities around 190 mAh/g above a cut-off volt... Nano-sized caiboxylales Na2C7H3NO4 and Na2C6H2N2O4 were prepared and investigated as anode materials for lithium-ion batteries.Both carboxylates exhibit high reversible capacities around 190 mAh/g above a cut-off voltage of 0.8 V vs.Li+/Li.potentially improving the safety of the batteries.In addition,good rate performance and long cycle life of these carboxylates make them promising candidates as anode materials for lithium-ion batteries. 展开更多
关键词 CARBOXYLATES na2C7H3NO4 na2C6H2N2O4 ANODE lithium-ion batteries
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Na^(+)掺杂V_(2)O_(5)电极材料的制备及其储锌性能
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作者 陈文昊 武目选 +1 位作者 颉雨佳 朱裔荣 《包装学报》 2022年第4期36-41,共6页
针对V_(2)O_(5)电子传输慢、离子扩散受阻以及循环性能不稳定等问题,通过一步水热法制备Na_(0.4)V_(2)O_(5)纳米粉体材料,并作为锌离子电池正极材料。结果表明,Na_(0.4)V_(2)O_(5)电极的倍率性能和循环稳定性均优于V_(2)O_(5)电极。Na^... 针对V_(2)O_(5)电子传输慢、离子扩散受阻以及循环性能不稳定等问题,通过一步水热法制备Na_(0.4)V_(2)O_(5)纳米粉体材料,并作为锌离子电池正极材料。结果表明,Na_(0.4)V_(2)O_(5)电极的倍率性能和循环稳定性均优于V_(2)O_(5)电极。Na^(+)掺杂通过改变V_(2)O_(5)的层状结构,改善V_(2)O_(5)的电子传输和离子扩散,从而提高电极电导特性和结构稳定性。Na_(0.4)V_(2)O_(5)电极是倍率性能和循环稳定性优良的电极材料。 展开更多
关键词 na_(0.4)V_(2)O_(5) 锌离子电池 na^(+)掺杂 电化学性能
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钠离子电池层状负极材料Na_(2)Ti_(3)O_(7)的研究进展
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作者 文淑湘 王诗敏 +1 位作者 张晶晶 李世友 《功能材料》 CAS CSCD 北大核心 2021年第8期8052-8059,共8页
层状钛酸钠(Na_(2)Ti_(3)O_(7))材料因其工作电压低、结构稳定、成本较低、绿色环保等优点,逐渐成为钠离子电池负极材料研究热点之一。综述了Na_(2)Ti_(3)O_(7)负极材料的主要制备方法,从体积膨胀、相变、表面副反应等角度分析了其电化... 层状钛酸钠(Na_(2)Ti_(3)O_(7))材料因其工作电压低、结构稳定、成本较低、绿色环保等优点,逐渐成为钠离子电池负极材料研究热点之一。综述了Na_(2)Ti_(3)O_(7)负极材料的主要制备方法,从体积膨胀、相变、表面副反应等角度分析了其电化学性能衰减的主要原因,并介绍了氧空位引入、掺杂、表面修饰、形貌调控等改性方法,最后对Na_(2)Ti_(3)O_(7)负极材料未来的研究方向及发展趋势进行了展望。 展开更多
关键词 钠离子电池 层状钛酸钠 制备 衰减 改性
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碳纳米纤维修饰Na_(3)V_(2)(PO_(4))_(3)电极材料的研究 被引量:1
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作者 周子凡 许晓纯 卢梓淇 《广东化工》 CAS 2021年第19期5-6,共2页
本研究采用静电纺丝工艺和煅烧工艺制备碳纳米纤维修饰Na_(3)V_(2)(PO_(4))_(3)材料。所制备的Na_(3)V_(2)(PO_(4))_(3)纳米粒子均匀嵌入在碳纳米纤维中,可以加快充放电循环中的电子和离子传输速率。所制备的钠离子电池复合电极具有良... 本研究采用静电纺丝工艺和煅烧工艺制备碳纳米纤维修饰Na_(3)V_(2)(PO_(4))_(3)材料。所制备的Na_(3)V_(2)(PO_(4))_(3)纳米粒子均匀嵌入在碳纳米纤维中,可以加快充放电循环中的电子和离子传输速率。所制备的钠离子电池复合电极具有良好的电性能,在较低的放电速率(0.1C)下,可提供110 mAh·g^(-1)的高放电容量,约为理论容量的93.7%。当达到5C,可以能提供86 mAh·g^(-1)的初始可逆容量,经过100次循环后仍保持96%的容量。 展开更多
关键词 钠离子电池 na_(3)V_(2)(PO_(4))_(3)@C 纳米纤维 纺丝 钠离子存储
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Forging Inspired Processing of Sodium-Fluorinated Graphene Composite as Dendrite-Free Anode for Long-Life Na–CO_(2) Cells
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作者 Yangjun Mao Xiao Chen +7 位作者 Hao Cheng Yunhao Lu Jian Xie Tao Zhang Jian Tu Xiongwen Xu Tiejun Zhu Xinbing Zhao 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2022年第2期572-581,共10页
Na–CO_(2) batteries recently are emerging as promising energy-storage devices due to the abundance of Na in the earth’s crust and the clean utilization of greenhouse gas CO_(2) .However,similar to metallic Li,metall... Na–CO_(2) batteries recently are emerging as promising energy-storage devices due to the abundance of Na in the earth’s crust and the clean utilization of greenhouse gas CO_(2) .However,similar to metallic Li,metallic Na also suffers from a serious issue of dendrite growth upon repeated cycling,while a facile method to solve this issue is still lacking.In this work,we report an effective,environmentally friendly method to inhibit Na dendrite growth by in situ constructing a stable,NaF-rich solid electrolyte interface(SEI)layer on metallic Na via adding a small amount(~3 wt%)of fluorinated graphene(FG)in bulk Na.Inspired by the forging processing,a uniform Na/FG composite was obtained by melting and repetitive FG-adsorbing/hammering processes.The Na/FG–Na/FG half cell exhibits a low voltage hysteresis of 110–140 mV over 700 h at a current density up to 5 mA cm^(-2) with an areal capacity as high as 5 mAh cm^(-2).Na–CO_(2) full cell with the Na/FG anode is able to sustain a stable cycling of 391 cycles at a limited capacity of 1000 mAh g^(-1).Long cycle life of the cell can be attributed to the protecting effect of the in situ fabricated NaF-rich SEI layer on metallic Na.Both experiments and density functional theory(DFT)calculations confirm the formation of the NaF-rich SEI layer.The inhibition effect of the NaF-rich SEI layer for Na dendrites is verified by in situ optical microscopy observations. 展开更多
关键词 composite anode fluorinated graphene na dendrite na-CO_(2)battery naFrich protecting layer
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半导体光电材料B_(2)S_(3)在离子电池中的应用性质研究
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作者 依力亚斯·阿不都尔依木 陈长城 +2 位作者 高林淞 云雄飞 芦鹏飞 《激光技术》 CAS CSCD 北大核心 2024年第6期884-890,共7页
为了满足新型可再生能源技术对电极材料具有合适的结构、电子和机械性能的要求,采用第一性原理,计算研究了具有动态、机械和热稳定性B_(2)S_(3)半导体光电材料的电化学性能及其潜在应用。结果表明,作为阳极材料,B_(2)S_(3)单层具有合适... 为了满足新型可再生能源技术对电极材料具有合适的结构、电子和机械性能的要求,采用第一性原理,计算研究了具有动态、机械和热稳定性B_(2)S_(3)半导体光电材料的电化学性能及其潜在应用。结果表明,作为阳极材料,B_(2)S_(3)单层具有合适的存储容量(Li:227.2 mAh/g;Na:340.8 mAh/g)、超低扩散势垒(Li:0.23 eV;Na:0.14 eV)和低平均开路电压(Li:0.515 eV;Na:0.162 eV),在充放电过程中具有相对较小的晶格变化(Li:2.5%;Na:2.1%);在不同浓度的锂/钠离子吸附下,B_(2)S_(3)单层的金属特性保持不变,具有良好的导电性和电池运行稳定性,表明B_(2)S_(3)半导体光电材料是一种有吸引力的锂/钠离子电池阳极候选材料。B_(2)S_(3)单层的优异特性可促使进一步探索其作为锂/钠离子电池阳极材料的应用。 展开更多
关键词 材料 锂/钠离子电池 第一性原理 B_(2)S_(3)
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