Results 51 to 60 of about 37,717 (167)

Multi‐Dimensional Characterization of Sodium‐Ion Battery Materials: Bridging Atomic Structure, Interface Chemistry and Electrochemical Performance

open access: yesRare Metals, Volume 45, Issue 4, April 2026.
ABSTRACT Sodium‐ion batteries (SIBs) have emerged as promising candidates for large‐scale energy storage due to their cost‐effectiveness and resource abundance. However, challenges such as sluggish ion diffusion kinetics, structural degradation, and interfacial instability hinder their practical applications.
Yunze Wang   +7 more
wiley   +1 more source

荒漠草原绿洲化过程中灌溉玉米地土壤夏季盐渍化特征

open access: yesShuitu Baochi Xuebao, 2011
在地处宁夏中部荒漠草原区的红寺堡扬黄灌区,选取不同利用年限的灌溉玉米地,以临近的未利用地为对照,对其夏季含盐量及盐离子组分变化规律、剖面分布类型、时空相关性及其碱化特征进行了系统分析。结果表明,在退化草地转化成灌溉农田的过程中,土壤夏季含盐量剖面分布变化依次为表聚型、均匀型(震荡型)和底聚型。未利用地0-60 cm土层总含盐量6.0‰,耕种8年后只有2.25‰,表层(0-20cm)的总盐含量降幅高达80.2%。未利用地盐分表聚特征主要由氯离子、镁离子、钙离子和钾离子决定 ...
杨新国   +4 more
doaj  

Synthesis and Modification of High-voltage Lithium Nickel Manganese Oxide Cathode Material for Lithium-ion Batteries [PDF]

open access: yes, 2014
随着锂离子电池的应用从手机、数码相机和笔记本电脑等电子仪器领域扩展至电动汽车、通信技术和移动存储设备等领域,人们对锂离子电池的性能,特别是对功率密度和工作电压,提出了越来越高的要求。锂离子电池工作电压和功率密度等性能,主要由正极材料决定。因此,发展高电压正极材料是发展高能量密度锂离子电池重要的研究方向之一。 LiMn2O4(LMO)具有低成本、低毒性和良好的安全性能等优点,被认为是一种理想的正极材料。然而LMO能量密度低,研究表明当向LMO掺杂一定量的镍形成镍锰酸锂LiNi0.5Mn1.5O4(LNMO)
王静
core  

Bi/Bi2O3 Nanoparticles In Situ Embedded in Carbon as Anode Materials for Fast and Long‐Lasting Sodium–Ion Storage

open access: yesRare Metals, Volume 45, Issue 4, April 2026.
ABSTRACT Bismuth anode materials are considered promising anode candidates for sodium–ion batteries (SIBs) due to their high theoretical capacity and appropriate working potential. Nevertheless, the significant volume expansion that occurs during the cycling process restricts its broader application in sodium–ion storage. Herein, Bi/Bi2O3 nanoparticles
Jiaju Lu   +3 more
wiley   +1 more source

南方电网沿海绝缘子积污成分与海洋盐雾及附近污染源的关联性

open access: yesDianci bileiqi, 2018
沿海地区的输电线路绝缘子会受到盐雾等沿海地区特有的气象条件影响,其表面积污特性与积污成分与内陆地区有明显差异,从而对其闪络电压会有显著影响。为了研究输电线路绝缘子积污成分受海洋盐雾的影响,了解海洋盐雾浓度由于离海岸的距离不同时绝缘子污秽成分的变化规律,对南网沿海多地的输电线路绝缘子的表面污秽进行了采样,利用离子色谱仪与质谱仪检测了样品的阴阳离子等成分,分析了污秽数据与海边距离及附近污染源的相关性。结果表明,绝缘子表面污秽与海洋盐雾具有显著的相关性。当距离海岸越远,海洋盐雾的盐度越低 ...
廖一帆   +7 more
doaj  

隔离涂层防绝缘子铁帽腐蚀的可行性研究

open access: yesDianci bileiqi, 2021
超/特高压直流输电线路瓷和玻璃绝缘子铁帽电腐蚀问题突出,有效的防腐蚀措施对电力系统的安全稳定运行具有重要意义。为了确定绝缘子铁帽表面喷涂隔离涂层的关键参数,本研究建立了绝缘子三维有限元模型,计算了绝缘子铁帽表面隔离涂层不同喷涂情况下的泄漏电流密度和电位分布,并试验验证了隔离涂层防铁帽腐蚀的可行性。研究结果表明:隔离涂层能够有效减小绝缘子铁帽的泄漏电流密度,绝缘子铁帽泄漏电流密度最大值随着隔离涂层高度的增加而增大,隔离涂层高度变化对绝缘子表面电位分布的影响较小;隔离能够对绝缘子铁帽起到有效的防腐蚀作用 ...
唐平   +4 more
doaj  

Study on the carbonitriding cast iron by liquid micro-discharge plasma [PDF]

open access: yes, 2016
液相微弧放电等离子体电解碳氮共渗技术是一种新兴的表面改性技术。相对于传统表面改性技术,它具有能耗低、不需要真空装置、成本小、环境污染小、工艺简单等特点,在航空航天、军工、机械、电子、医疗、装饰等许多领域具有广阔应用前景。 本论文采用液相微弧放电等离子体电解碳氮共渗技术,在乙酰胺甘油水溶液电解液体系中对铸铁表面进行了碳氮共渗处理。电源参数为:电流大小固定为3A,频率固定为100Hz,占空比固定为25%;电解液配方为:去离子水750mL,乙酰胺150g,甘油80mL ...
李俊雄
core  

Engineering Geometric Active Sites in Cobalt Spinel Oxides for Energy and Environmental Catalysis

open access: yesRare Metals, Volume 45, Issue 4, April 2026.
ABSTRACT Cobalt‐based spinel oxides (Co3O4 and derivatives) are among the most promising transition metal oxides for electrochemical energy conversion and environmental catalysis due to their abundant active sites, structural tunability, and robust redox flexibility.
Shenning Liu   +6 more
wiley   +1 more source

A Multifunctional MXene/CNF/PVB Fabric via Layer‐by‐Layer Construction for Electromagnetic Interference Shielding, Joule Heating, and Infrared Stealth

open access: yesRare Metals, Volume 45, Issue 4, April 2026.
ABSTRACT The rapid advancement of 5G communication technology has intensified electromagnetic pollution, creating an urgent demand for flexible multifunctional fabrics with efficient electromagnetic interference (EMI) shielding performance. This study proposes a novel material‐stacked construction strategy to fabricate multifunctional MXene/cellulose ...
Zong‐Kai Yan   +9 more
wiley   +1 more source

用于脉冲功率技术中的离子束断路开关

open access: yesGaoya dianqi, 1998
介绍用于真空储能装置中的离子束断路开关——IBOS。它是利用高速低密离子束代替低密中速等离子体融蚀断路开关“等离子体”而形成的,从而获得了更短的开断时间(
白峰, 邱毓昌
doaj  

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