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Controllable Synthesis of Mesoporous Co_3O_4 Nanostructures with Tunable Morphology for Application in ACHTUNGTRENUNGSupercapacitors

机译:具有可调整形态的介孔Co_3O_4纳米结构的可控制合成,用于乙酰丙酮超级电容器

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摘要

Novel and complex mesoporous 2D and 3D architectures of the oxide semiconductor Co_3O_4, including nanosheets, nearly monodisperse microspheres that are self-assembled from nanosheets, and copper-coin-like nanosheets, have been synthesized through a facile binary-solution route and sequential thermal decomposition at atmospheric pressure. The influence of different reaction conditions on the morphology of the products has been discussed in detail. The results revealed that the volume ratio of H_2O and ethanolamine (EA) play a crucial role in the morphology of the precursor. The thermal decomposition of the corresponding precursor leads to the formation of the mesoporous structure. The products have been characterized by X-ray diffraction techniques, fieldemission scanning electron micopy (FESEM), transmission electron microscopy (TEM), high-resolution TEM (HRTEM), and Raman spectroscopy. The electrochemical properties of the Co3O4 electrodes were investigated by cyclic voltammetry (CV) and galvanostatic charge–discharge measurements. The electrochemical experiments revealed that the specific capacitance of the Co_3O_4 nanosheets was higher than that of the Co_3O_4 microspheres in a KOH electrolyte solution (3m). Furthermore, the Co3O4 nanosheet electrodes exhibited good rate capabilities, and maintained 93% of the initial capacity at a current density of 5 mAcm~(-2) in a KOH (3m) electrolyte solution. The results show that Co3O4 nanosheets might have potential applications as electrode materials for supercapacitors.
机译:氧化物半导体Co_3O_4的新颖且复杂的介孔2D和3D结构,包括纳米片,由纳米片自组装的几乎单分散的微球和类似铜币的纳米片,已通过便捷的二元溶液路线和顺序热分解法合成在大气压下。详细讨论了不同反应条件对产物形态的影响。结果表明,H_2O与乙醇胺(EA)的体积比在前体的形貌中起着至关重要的作用。相应的前体的热分解导致中孔结构的形成。产品已通过X射线衍射技术,场发射扫描电子显微镜(FESEM),透射电子显微镜(TEM),高分辨率TEM(HRTEM)和拉曼光谱进行了表征。通过循环伏安法(CV)和恒电流充放电测量研究了Co3O4电极的电化学性能。电化学实验表明,在KOH电解质溶液(3m)中,Co_3O_4纳米片的比电容高于Co_3O_4微球的比电容。此外,Co3O4纳米片电极表现出良好的倍率性能,并在KOH(3m)电解质溶液中以5 mAcm〜(-2)的电流密度维持初始容量的93%。结果表明,Co3O4纳米片可能具有作为超级电容器电极材料的潜在应用。

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