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Vacancies and edges: Enhancing supercapacitive performance metrics of electrode materials

机译:空缺和边缘:增强电极材料的超级电容性能度量

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Insight into the role of reactive sites in charge storage materials is highly significant for the design and devel-opment of high performance electrode materials for supercapacitor. These active sites constitute micro-structural vacancies and edge defects that effectively modulate the surface microstructure, carrier concentration, electronic, optical and electrochemical properties of material. This review summarizes the recent progress in designing the vacancies and edge defects in range of supercapacitors electrode materials for high performance. Special emphasis is put on correlating the performance metrics of supercapacitor with vacancies and edges induced tailored properties (carrier concentration, coordination number of atom, interlayer spacing, surface area and mechanical strength) of electrode materials. Further, the dependency of tailored properties of electrode materials on size, position, concentration and stability of defects is critically analyzed. We also highlighted the influence of vacancy and edge defects on charge storage mechanism evaluation parameter (b-value) which may help researchers in near future to adjust the operating mechanism as per the device application. The challenges and opportunities ahead in this emerging field are also proposed.
机译:对电荷储存材料中反应部位的作用的洞察对于超级电容器的高性能电极材料的设计和开发,非常重要。这些活性位点构成微结构空位和边缘缺陷,有效地调节材料的表面微观结构,载流子浓度,电子,光学和电化学性质。该审查总结了在高性能的超级电容器电极材料范围内设计空缺和边缘缺陷的最新进展。特别强调将超级电容器的性能指标与空位和边缘相关联,诱导电极材料的定制性质(载体浓度,配位,层间间隔,表面积和机械强度)。此外,重大分析了电极材料的定制特性对缺陷的尺寸,位置,浓度和稳定性的依赖性。我们还强调了空缺和边缘缺陷对电荷存储机制评估参数(B值)的影响,这可能在不久的将来帮助研究人员,以根据设备应用调整操作机制。还提出了这一新兴领域的挑战和机遇。

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