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NiO Pseudocapacitance and Optical Properties: Does The Shape Win?

机译:NiO伪电容和光学特性:形状能胜出吗?

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摘要

In the present paper, we investigate the effects of alkali and operational temperature on NiO capacitive and optical properties. The NiO samples were prepared by a straightforward, surfactant-free hydrothermal synthesis, employing Ni(NO ) and either urea or moderately sterically hindered triethylamine (TEA). The syntheses were followed by calcinations at either 400 or 600 °C. NiO samples were characterized by XRD, scanning electron microscopy, and nitrogen adsorption isotherms. The optical properties were investigated by reflectance spectroscopy, and the pseudocapacitance was studied by cyclic voltammetry and galvanostatic charge charge-discharge measurements. We found that the synthesis with TEA yielded nanoflowers whereas the morphology of the synthesis with urea varied with the calcination temperature and resulted in nanoparticles or nanoslices at calcination temperatures of 400 and 600 °C, respectively. The NiO samples prepared at a lower temperature displayed a favorable combination of surface area and porosity that allowed for high performance with capacitances of 502 and 520 F g at a current density of 1 A g for nanoflowers and nanoparticles, respectively. The band gaps of all the samples were compatible with the estimated nanoparticle sizes. Finally, we used the synthesized NiO samples for the preparation of screen-printed electrodes (SPEs) modified by drop-casting and probed them against a [Fe(CN) ] probe.
机译:在本文中,我们研究了碱和操作温度对NiO电容和光学性能的影响。通过使用Ni(NO)和尿素或中等位阻三乙胺(TEA)进行直接,无表面活性剂的水热合成,制备了NiO样品。合成后在400或600°C下煅烧。通过XRD,扫描电子显微镜和氮吸附等温线对NiO样品进行表征。通过反射光谱研究光学性质,并且通过循环伏安法和恒电流充电-放电测量来研究假电容。我们发现用TEA合成可产生纳米花,而用尿素合成的形态随煅烧温度而变化,并分别在400和600°C的煅烧温度下产生纳米颗粒或纳米片。在较低温度下制备的NiO样品显示出表面积和孔隙率的良好组合,可在电流密度为1 A g的纳米花和纳米颗粒上分别以502 Fg和520 F g的电容实现高性能。所有样品的带隙与估计的纳米颗粒尺寸相容。最后,我们将合成的NiO样品用于通过滴铸法修饰的丝网印刷电极(SPE)的制备,并用[Fe(CN)]探针进行探测。

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