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Effect of ultrasonic treatment of activated carbon on capacitive and pseudocapacitive energy storage in electrochemical supercapacitors

机译:超声处理活性炭对电化学超级电容器中电容性和拟电容性能量存储的影响

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Purpose: Use of ultrasonic radiation for improving the properties of activated carbon was the aim of this paper. Increase of density of states at Fermi level was the main factor, responsible for working characteristics of electrochemical supercapacitors. Design/methodology/approach: Working parameters of supercapacitors on the base of activated carbon have been studied by means of precisional porometry, small angle X-ray scattering, cyclic voltamerometry, electrochemical impedance spectroscopy and computer simulation methods. Findings: The possibility to effect the interface between activated carbon and electrolyte by means of ultrasonic treatment in cavitation and noncavitation regimes is proved. It is shown that ultrasonic treatment in noncavitation regimes causes the significant increase of density of states at Fermi level that results in better farad-volt dependences. Research limitations/implications: This research is a complete and accomplished work. Practical implications: Modification of electric double layer by meanans in ultrasonic treatment, proposed in this work, could be regarded as effective way to obtaine the advanced electrode materials in devices of energy generation and storage. Originality/value: This work is important for physics, material science and chemistry because it is related with new possibilities to change the mobility of charge carries in electric double layer by means of ultrasonic irradiation.
机译:目的:利用超声辐射改善活性炭的性能是本文的目的。费米能级状态密度的增加是主要因素,其负责电化学超级电容器的工作特性。设计/方法/方法:通过精密孔率法,小角X射线散射,循环伏安法,电化学阻抗谱和计算机模拟方法研究了基于活性炭的超级电容器的工作参数。研究结果:证明了在空化和非空化状态下通过超声处理影响活性炭和电解质之间界面的可能性。结果表明,在非空化状态下进行超声处理会使费米能级的态密度显着增加,从而导致更好的法拉电压依赖性。研究的局限性/意义:这项研究是一项完整而完整的工作。实际意义:这项工作中提出的利用超声手段对双电层进行改性,可以被认为是在能量产生和存储装置中获得高级电极材料的有效途径。原创性/价值:这项工作对物理学,材料科学和化学很重要,因为它与通过超声波辐射改变双电层中电荷携带的迁移率的新可能性有关。

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