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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Facile synthesis of porous Ni2CO3(OH)(2)/functionalized graphene composites with enhanced supercapacitive performance
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Facile synthesis of porous Ni2CO3(OH)(2)/functionalized graphene composites with enhanced supercapacitive performance

机译:具有增强的超电容性能的多孔Ni2CO3(OH)(2)/功能化石墨烯复合材料的轻松合成

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Graphene has great potential to significantly enhance the electrochemical activity of redox-active materials for supercapacitors. However, the agglomeration of graphene sheets remains a critical challenge to excellent energy storage performance of hybrid composites supported by graphene. Herein, a facile hydrothermal approach for the synthesis of porous Ni2CO3(OH)(2)/functionalized graphene (NCB/FGN) composites is developed. To improve the dispersion properties of graphene, sulfonated salicylic acid serving as a functionalized composition is covalently anchored to the surface of functionalized graphene. The systematic investigation indicates that the presence of functionalized graphene plays a crucial role in establishing the porous structure of hybrid composites. Compared to reduced graphene oxide (rGO), functionalized graphene is more beneficial to accommodate the expansion of the surface area and the reduction of the pore length in hybrid composites. The detailed electrochemical characterization demonstrates that the unique porous structure of NCB/FGN composites encompasses the great capability of rapid kinetic diffusion of active ions in electrolytes during the electrochemical reaction. The specific capacitance of NCB/FGN composites is 1508 F g(-1) at a current density of 1 A g(-1), higher than 1258 F g(-1) for NCB/rGO composites and 1039 F g(-1) for pristine NCB. After 3000 charge-discharge cycles at a current density of 10 A g(-1), the specific capacitance of NCB/FGN composites still approaches their initial capacitance.
机译:石墨烯具有极大地增强用于超级电容器的氧化还原活性材料的电化学活性的巨大潜力。然而,石墨烯片的团聚仍然是石墨烯负载的杂化复合材料优异的储能性能的关键挑战。本文中,开发了一种用于合成多孔Ni2CO3(OH)(2)/功能化石墨烯(NCB / FGN)复合材料的简便水热方法。为了改善石墨烯的分散性能,将用作官能化组合物的磺化水杨酸共价锚定在官能化石墨烯的表面上。系统研究表明,功能化石墨烯的存在在建立杂化复合材料的多孔结构中起着至关重要的作用。与还原的氧化石墨烯(rGO)相比,官能化的石墨烯在混合复合材料中更有利于适应表面积的增加和孔长度的减少。详细的电化学表征表明,NCB / FGN复合材料的独特多孔结构具有在电化学反应过程中电解质中活性离子快速动力学扩散的强大能力。在电流密度为1 A g(-1)时,NCB / FGN复合材料的比电容为1508 F g(-1),高于NCB / rGO复合材料的1258 F g(-1)和1039 F g(-1) )用于原始NCB。在以10 A g(-1)的电流密度进行3000次充放电循环后,NCB / FGN复合材料的比电容仍然接近其初始电容。

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