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1)  carbon electrode
碳电极
1.
Polarization of carbon electrode and its steps for replying in manufacture of fluorine;
电解制氟中碳电极极化及其应对措施
2.
Contrast to carbon electrodes,carbon electrode for producing NF_3 is confirmed.
通过正交试验得出了碳电极制备NF3的工艺参数,通过对比不同碳电极之间的差异,得到了制备NF3所需要的碳电极的特征。
3.
To perfect the performance of capacitor, the influence of some kinds of conductive agent, binder and making technology of carbon electrode to the performance of pressing nickel foam electrode is researched and the optimized program of making advanced performance nicked foam carbon electrode is determined.
为了进一步完善电容器性能,研究了不同导电剂、粘结剂和电极制作工艺对压片式泡沫镍碳电极性能的影响,确定了制作高性能泡沫镍碳电极的优选方案。
2)  carbon electrodes
碳电极
1.
Back electromotive force(BEMF) between two carbon electrodes, together with the wittibility of electrodes by the cryolite-alumina melts were studied in a walles cell with continual pulse technique.
本文采用连续脉冲技术,在观察无壁电解槽中电解质对碳电极湿润性的同时测量了两极间的电动势。
3)  carbon paste electrode
碳糊电极
1.
Study on anodic adsorptive voltammetry of palladium-dimethyl glyoxime complex at a carbon paste electrode;
钯(Ⅱ)-丁二酮肟络合物在碳糊电极上的阳极吸附伏安法研究
2.
Anodic adsorptive voltammetric determination of astemizole at a carbon paste electrode;
碳糊电极阳极吸附伏安法测定阿司咪唑
3.
Study on electrochemical properties of nanoparticle Ag_2O modified carbon paste electrode;
纳米Ag_2O修饰碳糊电极的电化学性能研究
4)  Glassy carbon electrode
玻碳电极
1.
Study on electrochemical behaviour of ethinylestradiol at a glassy carbon electrode;
炔雌醇在玻碳电极上的电化学行为研究
2.
Study on the electrochemical behavior of amiodarone at glassy carbon electrode;
盐酸胺碘酮在玻碳电极上的电化学行为研究
3.
Selective detection of tryptophan using multiwall carbon nanotube modified glassy carbon electrode;
多壁碳纳米管修饰玻碳电极选择性测定色氨酸
5)  GC electrode
玻碳电极
1.
in this paper, the effect of modifying procedure of the GC electrode on the electrode reaction kinetics of benzoquinone and the modified mechanism of enzyme electrode havebeen studied.
碳电极经电化学氧化处理,可提高苯醒电子中继物电极反应的可逆性,其原因在于电极表面氧化生成的羧基与醌基之间形成氢键,提高了电极表面电子冲继物的浓度,降低了异相电荷传递的活化
2.
At bare GC electrode and single-wall carbon nanotubes(SWNT) modified electrode, the electron transfer rate(α) of DHA was 0.
采用电化学方法测定了DHA在裸玻碳电极(GC电极)和单壁碳纳米管修饰电极(SWNT/GC电极)上的电子传递速率(a)分别为0。
6)  Li-C Electrode
锂碳电极
补充资料:玻璃碳电极
分子式:
CAS号:

性质:玻璃碳简称玻碳,是将聚丙烯腈树脂或酚醛树脂等在惰性气氛中缓慢加热至高温(达1800℃)处理成外形似玻璃状的非晶形碳,适于作电极的电子导体材料。玻璃碳电极的优点是导电性好,化学性稳定,热胀系数小,质地坚硬,气密性好,电势适用范围宽(约从-1~1V,相对于饱和甘汞电极),可制成圆柱、圆盘等电极形状,用它作基体还可制成汞膜玻碳电极和化学修饰电极等。在电分析化学中得到日益广泛的应用。

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