Synthesis and Characterization of Ni–Co–O Nanosheets on Silicon Carbide Microspheres/Graphite Composite for Supercapacitor Applications

C Pub Date : 2023-10-29 DOI:10.3390/c9040101
Han-Wei Chang, Zong-Ying Tsai, Jia-Jun Ye, Kuo-Chuang Chiu, Tzu-Yu Liu, Yu-Chen Tsai
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Abstract

The well-interconnected ternary Ni–Co–O nanosheets were grown on silicon carbide microspheres/graphite composite (gra@SiC/Ni–Co–O) by optimizing the electrodeposition method. Silicon carbide microspheres/graphite composite (gra@SiC) serves as a conductive template for the growth of Ni–Co–O nanosheets to form a binder-free 3D well-designed hierarchical interconnected network between the Ni–Co–O nanosheets and SiC microspheres. The obtained gra@SiC/Ni–Co–O is proposed as a great capacitance performance for supercapacitors. Field emission scanning electron microscopy (FESEM), Raman spectroscopy, high-resolution transmission electron microscopy (HRTEM) with selected area electron diffraction (SAED) and energy dispersive X-ray spectroscopy (EDS), X-ray photoelectron spectroscopy, and electrochemical analysis were employed to investigate the morphology and structural and electrochemical characteristics. The synergistic effects of EDLC (SiC microspheres) and pseudo-capacitance (Ni–Co–O nanosheets) can effectively improve the supercapacitive performance. It is also worth mentioning that after electrochemical testing, the redox reaction of Ni–Co–O nanosheets greatly promoted the faradic pseudo-capacitance contribution, and silicon carbide microspheres/graphite composite contributed to the formation of a 3D interconnected network, improving the cycling stability during the charging/discharging processes.
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超级电容器用碳化硅微球/石墨复合材料Ni-Co-O纳米片的合成与表征
通过优化电沉积方法,在碳化硅微球/石墨复合材料(gra@SiC/ Ni-Co-O)上生长出连接良好的三元Ni-Co-O纳米片。碳化硅微球/石墨复合材料(gra@SiC)作为Ni-Co-O纳米片生长的导电模板,在Ni-Co-O纳米片和SiC微球之间形成无粘结剂的三维精心设计的分层互连网络。所得的gra@SiC/ Ni-Co-O为超级电容器提供了良好的电容性能。采用场发射扫描电镜(FESEM)、拉曼光谱(Raman spectroscopy)、高分辨率透射电镜(HRTEM)、选择性区域电子衍射(SAED)和能量色散x射线能谱(EDS)、x射线光电子能谱(X-ray光电子能谱)和电化学分析等方法对其形貌、结构和电化学特性进行了研究。EDLC (SiC微球)和伪电容(Ni-Co-O纳米片)的协同效应可以有效地提高超电容性能。另外值得一提的是,经过电化学测试,Ni-Co-O纳米片的氧化还原反应极大地促进了faradic伪电容贡献,碳化硅微球/石墨复合材料有助于形成三维互联网络,提高了充放电过程中的循环稳定性。
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