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Oxidative Intercalation for Monometallic Ni2+-Ni3+ Layered Double Hydroxide and Enhanced Capacitance in Exfoliated Nanosheets

机译:Ni2 + -Ni3 +层状双金属氢氧化物的氧化插层和剥离型纳米片中的增强电容

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摘要

Monometallic Ni2+-Ni3+ layered double hydroxide (LDH) is prepared using a simple oxidative intercalation process and may be further exfoliated into positively charged Ni(OH)(2) unilamellar sheets. The superior capacitive behavior of the unilamellar sheets stranded in carbon nanotubes (CNTs) networks is achieved because of the complete interfacial charge storage arising from the confined Faradaic reactions at the interfacial region. 3D nanosheet/CNT composites are prepared using an in situ electrostatic assembly of positive charged sheets with CNTs bearing negative charges. The restacking of active nanosheets during electrochemical cycling is effectively prohibited. Consequently, the outstanding specific capacitance and remarkable rate capability of the nanosheet/CNT hybrid electrodes are demonstrated, making them promising candidates for high performance supercapacitors, combining high-energy storage densities with high levels of power delivery.
机译:单金属Ni2 + -Ni3 +层状双氢氧化物(LDH)使用简单的氧化插层工艺制备,并可进一步剥落为带正电的Ni(OH)(2)单层板。由于在界面区域的有限的法拉第反应引起的完全界面电荷存储,实现了在碳纳米管(CNTs)网络中束缚的单层薄片的优异电容性能。 3D纳米片/ CNT复合材料是使用带正电片的原位静电组件和带有负电荷的CNT制备的。有效地禁止在电化学循环过程中将活性纳米片重新堆叠。因此,证明了纳米片/ CNT杂化电极出色的比电容和出色的倍率能力,使其成为高性能超级电容器的有希望的候选者,将高能量存储密度与高水平的功率传递结合在一起。

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