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Insights into the influence of the pore size and surface area of activated carbons on the energy storage of electric double layer capacitors with a new potentially universally applicable capacitor model

机译:具有新的潜在普遍适用的电容模型的电气双层电容器储能磁性磁性碳孔径和表面积的影响

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The electric double layer formation of supercapacitors is governed by ion electrosorption at the electrode surface. Large surface areas are beneficial for the energy storage process, typically achieved by carbon electrode materials. It is a matter of debate whether pores provide the same contribution to the capacitance regardless of the size, or if subnanometer pores lead to an anomalous increase of capacitance. In our work, we developed a new model for normalized capacitance depending on pore sizes, using a combination of a sandwich type capacitor for micropores and double-cylinder capacitor model for larger pores. Modification factors for each capacitance value were calculated using the nonlinear generalized reduced gradient method to obtain a modified electric sandwich double-cylinder capacitor (ESDCC) model. The model was validated by comparing the measured capacitance values of a set of prepared activated carbons in organic electrolytes with simulated values according to the modified ESDCC model, using combined physisorption data of carbon dioxide and nitrogen. We concluded a non-constant capacitive contribution, with pores having the size of bare cations contributing to the capacitance to a larger extent and mesopores with the size of three solvated ions providing an unusual low contribution to the overall capacitance.
机译:超级电容器的电双层形成由电极表面的离子电吸收来控制。大表面积有利于能量存储过程,通常通过碳电极材料实现。无论尺寸如何,孔径为电容如何为电容提供相同的贡献,或者如果亚腔计孔导致电容的异常升高,则是争论。在我们的工作中,我们使用微孔和双缸电容器模型的夹层型电容器的组合来开发了根据孔径的归一化电容的新模型。使用非线性广义的减少梯度方法计算每个电容值的修改因子,以获得改进的电动夹层双缸电容器(ESDCC)模型。通过将根据改性的ESDCC模型的模拟值与模拟值的有机电解质中的一组制备的活化碳的测量电容值进行验证,使用二氧化碳和氮气的组合物质来验证该模型。我们得出了一种非恒定的电容贡献,孔具有裸阳离子的尺寸,该孔的尺寸有助于电容到更大的范围,并且中孔具有三个溶剂化离子的尺寸,为整体电容提供了不寻常的低贡献。

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