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首页> 外文期刊>Applied Surface Science >Textile-based RGO-muffled cobalt (Ⅱ,Ⅲ) oxide hybrid nano-architectures for flexible energy storage device
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Textile-based RGO-muffled cobalt (Ⅱ,Ⅲ) oxide hybrid nano-architectures for flexible energy storage device

机译:基于纺织品的rgo-乳钴(Ⅱ,Ⅲ)氧化物杂交纳米架构,用于柔性储能装置

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摘要

Recent century is enduring a passionate development of hardback electronic devices that promised to be more reliable power sources with higher energy density and long-term stability. To push up the energy density limit of solid-state symmetric supercapacitor (SSC) devices here we report RGO-muffled cobalt (II, III) oxide nanowires hybrid nanostructures as a potential aspirant in the field of flexible and portable electronics. The eco-friendly chemical route was followed to synthesize RGO enfolded cobalt (II, III) oxide nanowires on flexible carbon fabric substrate (CONW-RGO), which disclosed prevailing electrochemical performances rather than cobalt (II, III) oxide nanowires on flexible carbon fabric (CONW). The specific capacitance of CONW-RGO electrode we achieved 1110 F/g at current density 1 A/g, measured in 3-electrode configuration. Also solid state symmetric device performances were investigated which provide extensive potential window of 0 to 1.5 V. As-fabricated device dispensed higher energy and power density 34.78 Wh/kg (0.214 mWh/cm(3)) and 3.6 kW/kg (23 mW/cm(3)) respectively and exhibited outstanding cyclic performance by retaining 86.4% capacitance after 10,000 cycles. This is the very first time report of using CONW-RGO electrode as binder-free flexible SSC device with moderately widen potential window.
机译:近世纪是持久的全天性开发的精装电子设备,承诺具有更高的能量密度和长期稳定性的更可靠的电源。为了提高固态对称超级电容器(SSC)器件的能量密度极限,我们将Rgo偏钴(III,III)氧化物纳米线杂交纳米结构作为柔性和便携式电子产品领域的潜在霍尔报告。遵循环保化的化学途径在柔性碳织物基材(CONW-RGO)上合成Rgo固氮的钴(III,III)氧化物纳米线,其公开了柔性碳织物上的普遍电化学性能而不是钴(II,III)氧化物纳米线(伙计)。 CONW-RGO电极的比电容在3电极构造中测量的电流密度1a / g处的1110 f / g。还研究了固态对称的器件性能,提供了0至1.5 V的广泛潜在窗口。用制造的装置分配更高的能量和功率密度34.78WH / kg(0.214 mwh / cm(3))和3.6 kW / kg(23毫克) / cm(3))分别通过在10,000个循环后保持86.4%的电容来表现出优异的循环性能。这是第一次使用COW-RGO电极作为无粘合剂柔性SSC器件的第一次报告,具有中度宽的潜在窗口。

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