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1)  electrochemical capacitor
电化学电容
1.
We used MnO2/C composite as the positive electrode material of the electrochemical capacitor.
实验表明,MnO2/C复合材料具有良好的电化学电容特性。
2.
Recently, research on the electrochemical capacitors (ECs) has received a great deal of attention for use in high-power energy storage devices because of higher power density than battery and higher energy density than conventional capacitors.
目前对电化学电容器的研究可以分为两个方面:一是研究开发新材料,寻找更理想的电极体系和材料;另一方面是进一步提高现有体系和材料的性能。
2)  electrochemical capacitance
电化学电容
1.
We found that the emittance and the electrochemical capacitance are equal to the g eometric capacitance in the classical limit.
发现在经典情况下 ,电导虚部和电化学电容都等于经典的几何电容 。
3)  electrochemical capacitance-voltage
电化学电容-电压
1.
Ultra-shallow Si p~+n junctions formed by plasma doping are characterized by electrochemical capacitance-voltage(ECV).
采用电化学电容-电压(ECV)法对等离子体掺杂制备的Si超浅p+n结进行了电学表征。
4)  electrochemical capacity
电化学容量
1.
Effects of boron additive and rapid quenching technique on the microstructrue and electrochemical capacity of La-Mg-Ni system hydrogen storage alloy;
硼及快淬工艺对La-Mg-Ni系贮氢合金的微观结构及电化学容量的影响
2.
Effects of purification and activation on morphology and electrochemical capacity of carbon nanocoils
纯化及活化对螺旋碳纳米纤维形貌及电化学容量的影响
3.
The formation enthalpy of hydride ΔH and the electrochemical capacity increase with increasing of the.
氢化物形成焓ΔH随La 含量增加而增加,电化学容量随之增加,同时,大电流放电性能提高。
5)  electrochemical capacitance
电化学容量
1.
All the ACNTs were used as the electrode materials of electrochemical super capacitors and the ACNTs electrochemical capacitances were tested by DC-5C battery testing instrument.
将这些ACNTs分别作为电极材料应用于电化学超级电容器,经电化学容量性能测试,发现ACNTs的电化学容量随活化剂用量的变化而变化,当mKOH/mCNTs=3时,达到最大值。
6)  discharge capacity
电化学容量
1.
Effect of boron on the discharge capacity and cycle life of rare-earth-based AB_5-type hydrogen storage alloy;
硼对稀土系AB_5型贮氢合金电化学容量及循环寿命的影响
2.
A simple model for discharge capacity of Ti-Mn based alloys;
Ti-Mn基储氢合金电化学容量的一个简易模型
补充资料:电化学电容器
分子式:
CAS号:

性质:利用电极存在双电层的原理制造的电容器。它包括双电层电容器和超电容器两大类。由于双电层的厚度在0.lnm数量级,其电容值较传统的电介质电容器大很多倍。

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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