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Electric charging/discharging characteristics of super capacitor using de-alloying and anodic oxidized Ti-Ni-Si amorphous alloy ribbons

机译:使用去合金和阳极氧化的Ti-Ni-Si非晶态合金薄带超级电容器的充电/放电特性

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摘要

Charging/discharging behaviors of de-alloyed and anodic oxidized Ti-Ni-Si amorphous alloy ribbons were measured as a function of current between 10 pA and 100 mA, using galvanostatic charge/discharging method. In sharp contrast to conventional electric double layer capacitor (EDLC), discharging behaviors for voltage under constant currents of 1, 10 and 100 mA after 1.8 ks charging at 100 mA show parabolic decrease, demonstrating direct electric storage without solvents. The supercapacitors, devices that store electric charge on their amorphous TiO2-x surfaces that contain many 70-nm sized cavities, show the Ragone plot which locates at lower energy density region near the 2nd cells, and RC constant of 800 s (at 1 mHz), which is 157,000 times larger than that (5 ms) in EDLC.
机译:使用恒电流充电/放电方法,测量了脱合金和阳极氧化的Ti-Ni-Si非晶态合金带的充电/放电行为,其是10 pA至100 mA之间电流的函数。与传统的双电层电容器(EDLC)形成鲜明对比的是,在以100 mA的电流进行1.8 ks充电后,在1、10和100mA的恒定电流下,电压的放电行为呈抛物线型下降,表明没有溶剂即可直接储电。超级电容器是一种在包含许多70 nm尺寸空腔的非晶TiO2-x表面上存储电荷的设备,其Ragone图位于第二个电池附近的较低能量密度区域,RC常数为800 s(在1 mHz时) ),比EDLC(5 ms)大157,000倍。

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