Cathode: The negative electrode of an electrolytic cell.
阴极:在电解池内的负电极。
When Al alloy is used to be negative electrode, negative voltage produced more heat.
反极性期间由于铝合金作为阴极,阴极压降大电弧产热量也增大。
The content of indium in the negative electrode active material is 0.02 wt % or less.
所述负极活性物质中的铟含量在0.02重量%以下。
The negative electrode includes at least zinc as a negative electrode active material.
所述负极至少含有锌作为负极活性物质;
Various new negative electrode materials, other than carbon materials had been developed.
其中碳素材料之外的各种新型负板材料的探索也引起关注。
Research progress on novel non-carbon negative electrode materials for lithium ion batteries;
寻找性能更为优良的非碳负极材料仍然是锂离子电池研究的重要课题。
The negative electrode (1) is formed of metallic magnesium and may also be formed of an alloy.
所述负极(1)由金属镁形成,还可以由合金形成。
A magnesium battery (10) comprises a negative electrode (1), a positive electrode (2), and an electrolyte (3).
本发明涉及一种镁电池(10),其包含负极(1)、正极(2)和电解质(3)。
The capacity of this electrode is much larger than that of the negative electrode to limit its depth of discharge.
这种电极的容量远大于负极的,成为限制放电深度的电极。
Non-aqueous electrolyte secondary battery negative electrode material, making method, and lithium ion secondary battery.
非水电解质二次电池负极材料,制造方法,和锂离子二次电池。
Measured positive and negative electrode potential must rely on the reference electrode, to determine its relative value.
测量正、负极电极电位要借助参比电极,来确定其相对值。
These results might be of assistance to improve negative electrode technology of alkaline manganese dioxide zinc battery.
试验结果可能有助于改进碱性锌锰电池负极工艺。
The negative electrode additives were chosed by electrochemical method. It was found that alkaloid effective to lead electrode.
用电化学方法对负极添加剂进行了筛选,发现生物碱对铅电极有积极影响;
Cation: an ion or group of ions having a positive charge and characteristically moving toward the negative electrode in electrolysis.
阳离子:带有正电荷的一个或一群离子,特点为在电解中向阴极运动。
Hydrogen-absorbing alloy, method of surface modification of the alloy, negative electrode for battery and alkaline secondary battery.
储氢合金,合金表面改性方法,电池和碱性二次电池负极。
The property of PAN-based carbon fibers and carbon fiber cloth used as negative electrode of secondary lithium ion battery is reviewed.
讨论了几种PAN基炭纤维和炭纤维布作为二次锂离子电池负极的行为。
It proved that the main reason of lapse of Ni-MH batteries after high-rate cycles is the fading of negative electrode alloy performance.
实验结果表明,高倍率充放电循环使电池性能下降的主要原因是负极合金性能的恶化。
In theory, if you replaced a lot of graphite in the cell with silicon, the thickness of the graphite negative electrode could be reduced.
理论上,如果用硅大量取代石墨,石墨阴极就可能变细,从而扩大容纳活性材料的空间。
Electrochemical battery cells, and more particularly, to cells comprising a lithium negative electrode and an iron disulfide positive electrode.
电化学电池,更具体地说,包括锂负极和二硫化铁正极的电池。
This kind of material can be used as negative electrode material of diversified lithium ion battery widely, and as electrode material of capacitor.
该类材料可以广泛地作为各种锂离子电池的负极材料,并可以作为电容器的电极材料。
The effects of two formation methods on the performance of Ni-Cd battery with sintered positive electrode and pasted negative electrode were compared.
比较了两种开口化成制度对半烧结镉镍电池性能的影响。
Disclosed is a fuel cell having a structure wherein a positive electrode and a negative electrode face each other through a proton conducting material.
本发明提供一种具有正极和负极通过其间的质子导体彼此面对的结构的燃料电池。
It was concluded that high internal pressure was caused by oxygen evolution of positive electrode and slow reducing rate of oxygen in negative electrode.
由此可以判定,内压升高的原因在于正极的析氧及负极氧还原速度的缓慢。
The powder microelectrode cyclic voltammetric method was proved to be able to estimate the cyclic performance of carbon negative electrode materials in LIB.
同时也证明了粉末微电极循环伏安法用于估测LIB炭负极材料的循环性能的可行性。
Aluminum has promising development prospects because of its high electrochemical equivalent, negative electrode potential, environmentally friendly and low price.
它电化学当量高,电极电位负,对环境友好,价格低廉,具有广阔的发展前景。
A battery comprises a positive electrode layer (20), a negative electrode layer (50), and an electrolyte layer (40) for conducting ions between the both electrode layers.
本发明的电池具有正极层20、负极层50和电解质层40,其中离子传导经由该电解质层而在两电极层之间进行。
The principle of estimating the cyclic performance of carbon negative electrode materials in LIB with the powder microelectrode cyclic voltammetric method was illustrated.
阐明了采用粉末微电极循环伏安法估测锂离子电池(LIB)炭负极材料的循环性能的原理。
Main products: Solar energy battery components, lithium battery, LED energy-saving lamps, lithium battery positive and negative electrode materials and graphite electrode.
主要关联产品:太阳能电池组件、锂离子电池、LED节能灯具、锂电池正、负极材料、石墨电极孕妇文胸配件妈咪扣等。
Main products: Solar energy battery components, lithium battery, LED energy-saving lamps, lithium battery positive and negative electrode materials and graphite electrode.
主要关联产品:太阳能电池组件、锂离子电池、LED节能灯具、锂电池正、负极材料、石墨电极孕妇文胸配件妈咪扣等。
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