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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Numerical Analysis of Electric Double Layer Capacitors with Mesoporous Electrodes: Effects of Electrode and Electrolyte Properties
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Numerical Analysis of Electric Double Layer Capacitors with Mesoporous Electrodes: Effects of Electrode and Electrolyte Properties

机译:带介孔电极的双电层电容器的数值分析:电极和电解质性质的影响

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摘要

A theoretical study is presented of the behavior of electric double layer (EDL) supercapacitors constructed from mesoporous activated carbon electrodes. A three-dimensional (3D) computational model is developed to predict the equilibrium charge distribution within the supercapacitor as a function of key electrode and electrolyte properties. The model is based on the modified Poisson Boltzmann (MPB) equation and takes into account the impact of critical device parameters, including the size of the ions, the bulk ion concentration, the field-dependent permittivity of the electrolyte, the specific surface area of the electrodes, and the applied voltage. A key feature of the MPB model is that it limits the accumulation of ionic charge at the electrode electrolyte interface by accounting for the finite size of the ions. This provides more accurate predictions of capacitance than models based on a point charge approximation. The model is used to perform a systematic parametric analysis of device performance and quantify the relative impact of various parameters on the gravimetric capacitance. It is also used to compare the capacitance obtained using organic versus inorganic electrolytes. The analysis confirms that aqueous electrolytes are able to attain a higher capacitance and power density. The model can be adapted to analyze the effects of arbitrary electrode morphologies and a broad range of electrolyte properties. It provides unique insight into the internal physics of an electrochemical cell and is well suited for the rational design of novel EDL supercapacitors.
机译:从介孔活性炭电极构造的双电层(EDL)超级电容器的行为进行了理论研究。开发了三维(3D)计算模型,以预测超级电容器内的平衡电荷分布,该分布是关键电极和电解质性质的函数。该模型基于修改后的Poisson Boltzmann(MPB)方程,并考虑了关键设备参数的影响,这些参数包括离子的大小,体离子浓度,电解质的场相关介电常数,比表面积。电极和施加的电压。 MPB模型的一个关键特征是,通过考虑离子的有限大小,它可以限制离子电荷在电极电解质界面处的积累。与基于点电荷近似的模型相比,这提供了更准确的电容预测。该模型用于对设备性能进行系统的参数分析,并量化各种参数对重量电容的相对影响。它还用于比较使用有机电解质和无机电解质获得的电容。分析证实,水性电解质能够获得更高的电容和功率密度。该模型可适用于分析任意电极形态和各种电解质特性的影响。它提供了对电化学电池内部物理学的独特见解,非常适合新型EDL超级电容器的合理设计。

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