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首页> 外文期刊>Journal of Materials Science >High-throughput microwave synthesis and characterization of NiO nanoplates for supercapacitor devices
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High-throughput microwave synthesis and characterization of NiO nanoplates for supercapacitor devices

机译:超级电容器器件NiO纳米板的高通量微波合成与表征

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In order to produce economically viable supercapacitor devices for electrical energy storage, low cost, and high throughput methods must be developed. We developed a microwave based synthesis for the formation of β-Ni(OH)_2 for the formation of nickel oxide nanoplates. These nanoplates have shown excellent properties as pseudocapacitive devices with high-specific capacitance. Novel to this article is the use of a microwave reactor which enables a growth process of only 10 min in duration as compared to previous reports requiring a 24 h period. The resulting NiO nanoplates were fully characterized by electron microscopy, electron diffraction, energy dispersive X-ray spectroscopy, UV-Vis spectroscopy, thermo gravimetric analysis, and surface area and porosity measurements. Nanoplates formed using the microwave reactor is similar to those formed by hydrothermal processes. NiO-single walled carbon nanotube composites were made without any binder and the specific capacitance was measured using charge discharge techniques.
机译:为了生产用于电能存储的经济可行的超级电容器装置,必须开发低成本和高吞吐量的方法。我们开发了一种基于微波的合成方法,用于形成β-Ni(OH)_2,用于形成氧化镍纳米板。这些纳米板作为具有高比电容的伪电容器件具有出色的性能。本文的新颖之处在于使用了微波反应器,与之前需要24小时的报告相比,该反应器的生长过程仅需10分钟。所得的NiO纳米板通过电子显微镜,电子衍射,能量色散X射线光谱,UV-Vis光谱,热重分析以及表面积和孔隙率测量进行了全面表征。使用微波反应器形成的纳米板与通过水热工艺形成的纳米板相似。制备没有任何粘合剂的NiO单壁碳纳米管复合材料,并使用电荷放电技术测量比电容。

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