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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Hierarchically porous carbon materials with controllable proportion of micropore area by dual-activator synthesis for high-performance supercapacitors
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Hierarchically porous carbon materials with controllable proportion of micropore area by dual-activator synthesis for high-performance supercapacitors

机译:具有可控比例的微孔区域的分层多孔碳材料,通过双激活剂合成进行高性能超级电容器

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摘要

It is commonly accepted that different structural parameters of electrode materials (i.e. S-BET, S-micro, V-tot, R-t and I-D/I-G) have different effects on the electrochemical properties (i.e. specific capacitance, power density, energy density, and rate capability) in terms of the influencing magnitude and trend. It's therefore extremely desirable to establish a relatively unified structure-function relationship using a single performance indicator. This work luckily finds a defined/composite performance indicator (S-micro/S-BET), which can uniformly influence the capacitor performances. Such analysis is based on the characterization of the as-assembled symmetric electrochemical double-layer capacitors using a series of samples as electrodes (obtained by a dual-activator strategy with C3N3Na3S3 and KOH as dual activators and egg yolk as precursor). All the electrochemical performances (the specific capacitance, rate capability, energy storage performance, etc.) have the same tendency with S-micro/S-BET changes and the peak for all the performances can be obtained when the S-micro/S-BET value is 53.53% in this research. Herein, S-micro/S-BET is expected to be one composite performance indicator to reflect the structure-function relationship and in turn judge the whole performances of the materials through the relationship of S-micro/S-BET and a single performance, thus greatly simplifying the screening of electrode materials for high-performance supercapacitors.
机译:通常接受电极材料的不同结构参数(即S-BET,S-MICRO,V-TOT,RT和ID / IG)对电化学性质(即特定电容,功率密度,能量密度和和速率能力)在影响幅度和趋势方面。因此,非常希望使用单个性能指示符建立相对统一的结构功能关系。这项工作幸运地找到了定义/复合性能指标(S-MICRO / S-BET),可以均匀地影响电容器性能。这种分析基于使用一系列样品作为电极的组装对称电化学双层电容器的表征(通过用C3N3NA3S3和KOH作为双激活剂和蛋黄作为前体获得的双激活剂策略获得)。所有电化学性能(特定电容,速率,能量存储性能等)具有与S-Micro / S-BET变化相同的趋势,并且当S-Micro / S-时,可以获得所有性能的峰值本研究中BET值为53.53%。这里,S-MICRO / S-BET预期是一个复合性能指标,以反映结构功能关系,反过来通过S-MICRO / S-BET的关系和单一性能来判断材料的整体性能,从而大大简化了用于高性能超级电容器的电极材料的筛选。

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