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1)  the cathode of OLED
OLED阴极
2)  OLED device
有机发光二极管(OLED)器件
3)  Organic light emitting diode (OLED)
有机发光二极管(OLED)
4)  cathode [英]['kæθəʊd]  [美]['kæθod]
阴极
1.
Influence of structural parameters on ordered cathode catalyst layer in proton exchange membrane fuel cells;
结构参数对质子交换膜燃料电池阴极有序催化层的影响
2.
Solution Combustion Synthesis and Characterization of Nanocrystalline La_(0.6)Sr_(0.4)Co_(0.2)Fe_(0.8)O_(3-δ) Cathode Powders;
纳米La_(0.6)Sr_(0.4)Co_(0.2)Fe_(0.8)O_(3-δ)阴极粉体的溶液燃烧法合成与性能表征
3.
Study on Cathode Metal Neodymium in Rare Earth Oxide Electrolysis Cell;
稀土氧化物电解槽内阴极产生金属钕的研究
5)  Cathodic polarization
阴极极化
1.
In order to improve the stability of low temperature chloride iron plating solution, the effects of five different stabilizers on deposit brightness, cathodic polarization behavior and the stability of the iron plating bath were studied by Hull cell test and cathodic polarization curve measurement.
为提高低温氯化物电镀铁溶液的稳定性,采用赫尔槽试验和阴极极化曲线测量方法,研究了5种稳定剂对镀层光亮区、阴极极化过程以及镀铁液稳定性的影响。
2.
The nanocrystalline Co-Ni alloys were prepared by jet electrodeposition in the nickel chloride and cobalt sulfate bath containing additive and the cathodic polarization curves of Co-Ni alloys were measured.
在氯化镍-硫酸钴体系电解液中采用添加剂喷射电沉积纳米晶Co-Ni合金,测定了其阴极极化曲线。
3.
In order to study the influence of surfactants on cathodic polarization in the Ni-nanoparticles composite electroplating bath,the curves of cathodic polarization were determined by means of scan potential in the cell of three electrodes.
采用动电势扫描法测定了几种表面活性剂对镍-纳米微粒复合镀液的阴极行为的影响,并与基础镀镍液中的阴极极化曲线进行了比较。
6)  cathode electrode
阴极电极
1.
A preparation method of ZnO/Ag bilayer negative feedback cathode electrodes was proposed,which can remarkably improve the field emission properties of carbon nanotube(CNT) films.
提出了一种可显著改善碳纳米管(CNTs)场致发射性能的ZnO/Ag双层膜负反馈阴极电极的制备方法。
2.
A new type of single-chamber direct microbial fuel cell was constructed successfully on the basis of studying the cathode electrode containing Fe3+.
在研制含铁离子阴极电极板的基础上,构建了单室直接微生物燃料电池。
补充资料:多元素空心阴极灯
分子式:
CAS号:

性质:在同一支灯中用几种金属制成阴极,同时发射几种元素特征谱线的锐线光源。可用合金、金属间化合物或将多种金属粉末按一定比例混合,并压制和烧结,作成阴极。最多可达7种元素,如Al,Ca,Cu,Fe,Mg,Si,Zn灯。避免每测一种元素换一个灯,但发射强度低于单元素灯。如果几种金属组合不当,将产生光谱干扰。

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