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1)  double-layer capacitance
双电层电容
1.
By using Randles equivalent circuit, the kinetic factors on electrode reaction between the alloy and the salt were obtained, such as electrolyte resistance Re, double-layer capacitance Cd, charge transfer resistance Rct, rate constant of desulfurization reaction Kf and so on.
通过用Randles等效电路,将所得的阻抗响应用非线性最小二乘法拟和,得到了Sn—S/ZnCl2-NaCl体系界面脱硫反应动力学的参数,溶液电阻Re,界面反应电荷传递电阻Rct,双电层电容Cd及界面脱硫反应的速率常数Kf。
2.
The large capacitance exhibited by these systems was demonstrated to arise from a combination of the double-layer capacitance and pseudo-capacitance associated with surface redox-type reactions.
研究证明 ,电化学电容所具有的大容量是由于电极表面的双电层电容和氧化还原反应导致的“准电容”的共同作用而引起的。
2)  double layer capacitor
双电层电容
1.
Based on the basic electrochemical theory, the existence and effects of the double layer capacitor are described.
基于电化学原理描述了双电层电容的产生及其影响,通过采用电化学阻抗谱方法和测量阶跃响应曲线并进行参数拟合的方法,建立了电解槽负载的等效电路模型。
2.
Electrochemical double layer capacitor (EDLC) is playing great roles in R&D of power engineering as a new energy storage device.
组装了双电层电容器 ,直流充放电、循环伏安以及交流阻抗等实验显示其具有良好的电化学性能 ,活性物质的比容量为 173 。
3)  Double layer capacitance
双电层电容
1.
In addition,the effect of the double layer capacitance and the relaxation time constant on the impedance diagrams is .
此外还研究了双电层电容及弛豫时间常数对阻抗频谱的影响。
4)  capacitance of electric double layer
双电层电容
1.
It can also correct the measuring deviation caused by the charging current of the capacitance of electric double layer,and the detecting precision c.
双电层电容充电电流引起的测量误差作了修正,检测精度达到0。
2.
It can also correct the measuring deviation caused by the charging current of the capacitance of electric double layer.
本仪器采用微分电位法,使各层界面自动分层难题得到了解决,同时对双电层电容充电电流所引起的测量误差作了修正。
5)  EDLC
双电层电容
1.
Then the AC-SnO2/KOH/AC-SnO2 EDLC was assembled.
应用sol-gel浸渍与热处理工艺相结合,在活性炭表面包覆Sb掺杂的SnO2薄膜对电极进行修饰,构成AC-SnO2/KOH/AC-SnO2双电层电容器,测试结果表明,400 mA/g电流密度条件下,修饰后的双电层电容器在0。
2.
Preparation of high porosity carbon electrodes from raw needle coke and their characterization for EDLCs;
该活性炭电极的比电容达305F/g,有相对较高的能量密度、良好的功率特性以及双电层电容特性。
6)  double-layer capacitance
双层电容
补充资料:双电层电容器
分子式:
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性质:由一对可极化电极和电解质组成的电容器。电荷储存在电极和电解质之间所构成的界面上。由于界面层的厚度是在0.lnm的数量级,因而其电容量很大。它的比能量小于电池,大于电介质电容器,而比功率大大超过电池。它具有充电快速、可大电流放电、在宽广的温度范围内充放电性能稳定、循环寿命长、安全、无污染等优点。1978年日本研制成新型活性炭有机电解质电容器,已商品化。

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