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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Enhanced pseudocapacitive energy storage properties of budding-branch like MoO2@C/CNT nanorods
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Enhanced pseudocapacitive energy storage properties of budding-branch like MoO2@C/CNT nanorods

机译:增强了萌芽分支的假伪容量储存特性,如MOO2 @ C / CNT纳米棒

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Despite its high theoretical capacitance, molybdenum dioxide still cannot be well applied in supercapacitors due to its low conductivity and structural instability. Generally, compositing molybdenum dioxides with carbon materials can provide new possibilities. In this work, we successfully fabricated a budding-branch like MoO2@C composite wrapped by carbon nanotubes (CNTs). Different from those MoO2 nanodots synthesized by traditional approaches, the MoO2 nanodots in this composite were distributed uniformly inside the carbon rods, which effectively alleviated their self-aggregation and benefited their electron transportation. The introduction of the CNTs further provided the composite with better contact with the electrolyte and increased charge transfer. The prepared MoO2@C/CNT electrode exhibits a superior specific capacitance of 1667.2 F g(-1) at 1 A g(-1) and an excellent reversibility of 92.8% capacitance retention after 3000 cycles. Furthermore, asymmetric supercapacitor devices based on the MoO2@C/CNT composite and active carbon were assembled, which showed promising electrochemical properties at an extended operating voltage of 1.4 V and could light a green LED device for 15 minutes after charging for 30 s.
机译:尽管其高理论电容,因此由于其低导电性和结构不稳定,二氧化钼仍然​​不能很好地应用于超级电容器。通常,用碳材料合成二氧化钼可以提供新的可能性。在这项工作中,我们成功地制造了由碳纳米管(CNT)包裹的Moo2 @ C复合材料等萌芽分支。与通过传统方法合成的那些Moo2纳米蛋白不同,该复合材料中的MOO2纳米蛋白均匀地分布在碳棒内部,这有效地缓解了它们的自聚集并使其电子传输受益。 CNT的引入进一步提供了复合材料,具有更好地与电解质接触并增加电荷转移。制备的MOO2 @ C / CNT电极在1A(-1)下表现出1667.2V(-1)的优异比电容,并且在3000次循环后的92.8%电容保留的优异可逆性。此外,组装了基于MOO2 @ C / CNT复合材料和活性炭的非对称超微涂料器件,其在延长工作电压为1.4V的延长工作电压下显示有前景的电化学性能,并且在充电30秒后可以亮绿色LED装置15分钟。

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