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1)  ruthenium oxide(RuO2)
氧化钌(RuO2)
2)  ruthenium oxide
氧化钌
1.
Preparation and characterization of porous ruthenium oxide coatings as cathode material of hybrid capacitor;
混合电容器多孔氧化钌阴极涂层的制备与表征
2.
Effect of impurity ions on electrochemical super-capacitive properties of amorphous hydrated ruthenium oxide
杂质离子对非晶态水合氧化钌电化学超电容性能的影响
3.
Various ruthenium oxides(denoted as RuOx·nH2O) grown by cyclic voltammetry(CV) on Ta substrate were systematically studied for the application of electrochemical capacitors(EC).
研究了用循环伏安法在钽基体上制备电化学电容器用的氧化钌(记为RuOx。
3)  Ruthenium dioxide
二氧化钌
1.
Experiment results indicate that in process of preparing hydrate of ruthenium dioxide by hydrolyzing chlororuthenium acid many factors such as conentration of hydrolytic ruthenium ,temperature and pH value have influence on RaO2 productivity, specific suface, square resistance and temperature coefficient of resistance.
氯钌酸水解制备水合二氧化钌过程中,水解浓度、温度、pH值、洗涤对产率、比表面、方阻值、电阻温度系数都有影响,但终点pH值是影响二氯化钌性能的主要因素。
4)  Ruthenium tetroxide
四氧化钌
1.
Methods: Ruthenium tetroxide and osmium tetroxide were compared as post fixative in the preparation of hairless epidermis for transmission electron microscopic examination.
 方法 :裸鼠表皮分别用四氧化钌和锇酸固定后电镜下观察裸鼠表皮角质层脂质的超微结构。
2.
Node mice were treated topically with either acetone or 2% benzalkonium chloride, the visualization of the stratum corneum was carried out using a special fixation method utilizing 0 25% ruthenium tetroxide as the post fixative.
裸鼠表皮经丙酮和氯化苯甲烃铵处理后 ,样品用四氧化钌固定。
5)  RuO2·xH2O
二氧化钌
1.
Several different proportions of composite electrodes were fabricated with the RuO2·xH2O and active carbon, and tested in their electrochemical performances and physical characteristics.
用sol-gel法制备了水合二氧化钌,进而制备了二氧化钌/活性炭复合电极,并对各种不同配比的复合电极的电化学性能和物理性能进行了实验研究。
6)  RuO_2
二氧化钌
1.
Improvement of water washing technology in preparation of RuO_2.;
二氧化钌水洗工艺的改进
2.
And RuO_2·xH_2O powders was prepared by using RuCl_3 and NaOH as raw materials.
用醋酸锰和高锰酸钾制备二氧化锰粉末:用氯化钌和氢氧化钠制备水合二氧化钌粉末。
补充资料:超细二氧化钌粉末
分子式:
CAS号:

性质:微米级粒度的二氧化钌粉末,球状或树枝状。摇实密度1.25~1.5g/cm3。平均粒度<1.0μm,比表面积40~60m2/g。将纯金属钌转入溶液生成一定浓度的氯钌酸,加碱中和生成氢氧化钉、洗涤、烘干、磨细和脱水而成。用作厚膜电阻浆料的导电相。 

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