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1)  potential oscillations
电势振荡
1.
Investigations on the potential oscillations in the reduction of S_2O_8~(2-) by in situ Raman spectroscopy and EQCM;
原位拉曼光谱和石英晶体微天平研究S_2O_8~(2-)还原过程中的电势振荡
2.
New potential oscillations with periodic oxygen evolution have been observed during the electrooxidation of lead and lead-tin alloy in H2SO4 with cystine based on the CV criterion.
23%Sn合金电极在含胱氨酸(Cys)的硫酸溶液中电氧化时,涉及周期性析氧的新的电势振荡
3.
Two kinds of potential oscillations have been found during the reduction of permanganate in an acid solution on a gold disk electrode,and they are related to two different phase changes,respectively,at the interface of Au/electrolyte.
发现酸性溶液中,高锰酸钾在金电极表面阴极还原时能产生与两类不同界面相变相关联的电势振荡:一类发生在析氢之前,涉及阴极表面二氧化锰固体膜相的生成与溶解;另一类伴随间歇式阴极表面氢气逸出,源于高锰酸钾表面浓度的还原耗尽和析氢引起的对流恢复。
2)  oscillating electromotive force
振荡电动势
3)  Yukawa oscillations
振荡势
4)  electromotive force electron-coupled oscillator
电动势电子耦合振荡器
5)  oscillation circuit
振荡电路
1.
Analysis of chaos phenomena in nonlinear oscillation circuit;
非线性振荡电路的混沌分析
2.
Objective To construct an oscillation circuit for a gene analyzer based on quartz crystal microbalance.
目的 研制石英谐振组合靶基因检测仪自激式振荡电路。
3.
A new type of nanosecond high voltage pulse generator is designed with oscillation circuit.
分析各种窄脉冲产生方法后用振荡电路原理研制了一种新型ns级高压窄脉冲发生器,可输出脉宽20~100ns、幅值500~1000V的可调ns级脉冲电压。
6)  current oscillation
电流振荡
1.
The coupling action and synchronization of the current oscillation for two copper wire anodes in phosphoric acid solution are studied.
研究了恒电位下在磷酸溶液中的电流振荡行为,发现2个铜电极的电极间距和恒定电位对耦合电极振荡行为的影响,电极间的耦合作用改变了电极的振荡行为,两电极间呈现有不同相锁定,k/n相锁定和准周期同步,电极间电流振荡锁相,随电极距离的加大而失锁相。
2.
Current oscillations were observed upon anodic polarization of SUS 304 steel rotating disk electrode in H2SO4 solutions.
硫酸溶液中SUS304不锈钢旋转圆盘电极在正向电位扫描时产生电流振荡现象。
3.
The relation between the current oscillation parameters of this material and light intensity and electric field is studied.
用高温扩散方法制备出补偿Si∶(B,Mn)材料,并研究了这种材料的电流振荡参数与光照和电场之间的关系。
补充资料:分解电势(decomposition potential)
分子式:
CAS号:

性质:又称分解电势(decomposition potential)。使电解质持续稳定进行电解反应所必需的最低外加电压。单位:伏(V)。各种电解质因本性不同,其分解电压也不同,且随温度、电流密度、溶液浓度、电极材料、电解池结构等不同而异。此外,实际所须分解电压要超出理论分解电压(又称“反向电动势”,即原电池的电动势),其原因是由于电流通过时,电极上发生了极化作用。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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