anode material信息详情
阳极材料
anode───n.(在电解池中)阳极;(在原电池中)负极
alloying anode───合金阳极
anode rod───阳极棒;阳极导杆
anode definition───阳极定义
material───n.材料;用具;(有指明特征的)人才;素材;曲目;布料;adj.物质的;身体需要的;和推理内容有关的;重要的;(证据或事实)决定性的;客观存在的;物欲的;n.(Material)(意、美)妈特力娅丽(人名)
anode photodiode───阳极光电二极管
anode transformers───阳极变压器
anode cathode───阳极阴极
instructional material───教材
most promising anode material is perhaps the alloy of tin.───锡的合金可能是更有前景的负极材料。
metal tin electrodeposited on cupper foil was used as anode material of lithium-ion batteries.───电镀法在铜箔上制得了金属锡电极,用作锂离子蓄电池阳极材料进行了电化学测试。
The solution can promote the anode material says anode activator activation.───镀液中能促进阳极活化的物质称阳极活化剂。
The achievements laid an important foundation for industrialization of natural graphite as the anode material of lithium-ion battery.───本课题的研究成果,为实现天然石墨作为锂离子电池负极材料产业化奠定了重要基础。
When protecting steel, cast iron, or copper, the anode material can be magnesium, zinc, or aluminum.───当保护钢、铸铁或铜时,可选锰、锌和铝作阳极材料。
Aluminum is a very attractive anode material for energy storage and conversion.───铝是一种性能优良的电化学能源体系的阳极材料。
The research team plans to include a nanocomposite sulfur cathode and lithium-rich composite anode material.───该研究小组计划,包括纳米复合硫阴极和丰富的锂复合负极材料。
The processing of the anode material, need when ideal match, recommended for welding 1000 series aluminium alloy.───对经阳极化处理的材料,需要配色时十分理想,推荐用于焊接1000系列铝合金。
The preparation of a novel natural graphite anode material coated with iron hydroxide has been studied.
Due to the influence of properties, resource and cost, anode material of electrolytic capacitor changed from Al to Ta, Nb and suboxide in turn.
It is a common knowledge that the anode material accounts for over 40% of the total cost of lithium battery and lithium manganate is the most promising anode material.
Electrolyzing anode material used in the invention is inert electrode such as graphite or cermet or metal alloy preferably.
The metal tin electrodeposited on cupper foil was used as anode material of lithium-ion batteries.
Lithium metal is the most promising anode material because of its most negative normal electrode potential and the highest specific energy.
The main influencing factors on electrolysis efficiency of the method were: oxide cathode conductivity, O2- diffusion, cathode potential, anode material.
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