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首页> 外文期刊>RSC Advances >The effect of diameter size of single-walled carbon nanotubes on their high-temperature energy storage behaviour in ionic liquid-based electric double-layer capacitors
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The effect of diameter size of single-walled carbon nanotubes on their high-temperature energy storage behaviour in ionic liquid-based electric double-layer capacitors

机译:单壁碳纳米管直径尺寸对离子液体类电双层电容器中的高温储能性能的影响

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We investigated the effect of the diameter size of single-walled carbon nanotubes (SWCNTs), on their high-temperature energy storage behavior in an electric double layer capacitor (EDLC) using the ionic liquid triethyl(2-methoxyethyl) phosphonium bis(trifluoromethylsulfonyl)imide (P _(222(2O1)) -TFSI). We used four SWCNT samples with diameter sizes ranging from 0.8 to 5 nm, and evaluated their electrochemical charge storage behavior through galvanostatic charge/discharge and electrochemical impedance spectroscopy (EIS). We found that for the SWCNTs with small average diameter of 1 nm, the value of the electrode capacitance measured at a current density of 5 mA g ~(?1) increased from 15.8 at room temperature to 27.5 F g ~(?1) at 150 °C, and the value measured at a current density of 80 mA g ~(?1) increased from 14.0 at room temperature to 22.1 F g ~(?1) at 150 °C. The larger diameter samples on the other hand did not show any significant change in their capacitance with temperature. We calculated the size of the interstitial tube spaces from the Raman spectra of the samples, and used density functional theory (DFT) calculations to estimate the sizes of the cation and anion of the electrolyte. The obtained results suggest that the temperature-induced changes in the electrolyte properties improved the ion accessibility into the otherwise constrained space inside the small diameter SWCNTs, while the spaces inside the larger SWCNTs already provided easily accessible storage sites hence good performance at room temperature, making the increase in temperature of little to no effect on the charge storage performance in such SWCNTs.
机译:我们研究了单壁碳纳米管(SWCNTS)直径尺寸的影响,使用离子液体三乙基(2-甲氧基乙基)鏻双(三氟甲基磺酰基)在电双层电容器(EDLC)中的高温能量存储行为上的影响IMIDE(P _(222(2O1))-TFSI)。我们使用了从0.8至5nm的直径尺寸的四个SWCNT样品,并通过电镀电荷/放电和电化学阻抗光谱(EIS)评估其电化学电荷存储行为。我们发现,对于平均直径为1nm的Swcnts,在室温下以5mA G〜(α1)的电流密度测量的电极电容的值从室温下增加到27.5 f g〜(?1)在150℃下,在80mA g〜(α1)的电流密度下测量的值在150℃下以14.0升至22.1fg〜(α1)。另一方面,较大直径的样品没有显示其具有温度的电容的任何显着变化。我们从样品的拉曼光谱计算出间隙管空间的大小,并使用密度泛函理论(DFT)计算来估计电解质的阳离子和阴离子的尺寸。所得结果表明,电解质特性的温度诱导的变化将离子可接近性改善到小直径SWCNTS内的其他限制空间中,而较大的SWCNT内的空间已经提供了易于接近的存储场所,因此在室温下表现良好,使得在这种SWCNTS中的电荷存储性能没有影响的温度略微增加。

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