1) combination Ni electrode
复合镍电极
1.
Using the combination electrode as anode and LaNi5 alloy as cathode, the effect of Tw-80 dosage on the tap density of β-Ni(OH)2 and the discharge capability of the combination Ni electrode was studied.
结果表明:振实密度和放电容量均随Tw-80用量增加先增大后减小;复合镍电极的放电平台比纯球镍电极高;Tw-80用量为2%制备的纳米粉体,以8%比例与球镍混合时,其复合镍电极的放电容量最大,达到256。
2) NiMoPTFE composite electrode
镍-钼-PTFE复合电极
3) nanocomposite nickel electrode
纳米复合镍电极
1.
The results showed that nanocomposite nickel electrode has excellent comprehensive performance than nanometer nickel electrode.
结果表明,纳米级氢氧化镍有较快的活化能力,CoOOH包Ni(OH)2则有较高的放电容量,而比例适当的纳米复合镍电极才有更好的电化学性能。
2.
The results show that nickel electrode with dispersed nanometer nickel hydroxide has higher capacity and plateau than that with non-dispersed one; nanocomposite nickel electrode has higher capacity and plateau than pure nanometer nickel electrode.
研究结果表明 :分散处理的纳米氢氧化镍颗粒制备的镍电极在容量与放电平台方面高于未处理的电极 ;纳米复合镍电极的电化学性能优于纳米镍电极。
4) sintered composite nickel-cobalt electrode
烧结复合镍钴电极
1.
<Abstrcat>Active carbon/sintered composite nickel-cobalt supercapacitor based on active carbon (250 F/g) as negative electrode and very thin sintered composite nickel-cobalt electrode of 0.
以比电容达250F/g的活性炭作为负极,0 31mm厚的超薄型烧结复合镍钴电极作为正极,组装了活性炭烧结复合镍钴超级电容器,用恒流充放电和交流阻抗法研究了它的性能。
5) Ni-Fe composite anodes
镍-铁复合阳极
6) compound electrode
复合电极
1.
Optimizing design of compound electrode structure parameter in electrical impedance tomography;
医学EIT复合电极结构参数优化设计
2.
The Cu/SnO2+Bi2O3/SeO2-V2O5 compound electrode is prepared using the electrodeposit and heat treatment method, and is used in the oxidation reaction of myrtenal and α-pinene to probe into the influence of density of electric current, reaction temperature, reaction time,concentration of KOH on the electrochemistry reaction of myrtenal.
用电沉积和热处理方法制备Cu/SnO2+Bi2O3/SeO2-V2O5复合电极,将该电极应用到α-蒎烯氧化合成桃金酿烯醛的反应中,探讨电流密度,反应温度,反应时间和KOH浓度对电化学合成桃金酿烯醛的影响。
3.
With resin carbon material as carrier,the third different types of platinum carbon compound electrodes were prepared by chemical adsorption reduction method,galvanization reduction method and ion sputter method.
以树脂碳为载体 ,用化学吸附还原法、电镀还原法和离子溅射法制备了 3种不同类型的铂碳复合电极 ,然后采用恒电位法测定了铂碳复合电极的阴极极化曲线 ,并以此为基础求出了这些铂碳复合电极的有关电化学参数。
补充资料:钼钴镍催化剂
分子式:
CAS号:
性质:一种用于炼油的加氢精制催化剂。深蓝色。片状或1.2~2.5mm的小球状。堆积密度0.86~1.0g/cm3。氧化铝为载体。活性组分大致含氧化镍2.6%~3.2%,氧化钴1.3%~1.9%,三氧化钼15%~18%。活性高。反应温度低。稳定性好。强度高。寿命长。脱氮脱硫性能比钴钼和镍催化剂好。常用于汽油、柴油、煤油的加氢精制。常压柴油和减压柴油的加氢脱硫。
CAS号:
性质:一种用于炼油的加氢精制催化剂。深蓝色。片状或1.2~2.5mm的小球状。堆积密度0.86~1.0g/cm3。氧化铝为载体。活性组分大致含氧化镍2.6%~3.2%,氧化钴1.3%~1.9%,三氧化钼15%~18%。活性高。反应温度低。稳定性好。强度高。寿命长。脱氮脱硫性能比钴钼和镍催化剂好。常用于汽油、柴油、煤油的加氢精制。常压柴油和减压柴油的加氢脱硫。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条