论文标题
弯曲石墨电极的电气双层电容
Electrical Double Layer Capacitance of Curved Graphite Electrodes
论文作者
论文摘要
为了提高对电极曲率和能量存储机制之间关系的理解,对凸面和凹电电极表面之间的相关性以及使用分子双层电容器的差异电容进行了系统研究。每个电极由三层弯曲的石墨烯片组成,并具有凸面和凹面的表面,并将其应用于恒定的电势方法。差分电容显示了相对于电极的凸和凹面区域的曲率半径的波动行为。确定的原因是吸附离子的几何排列和溶剂化以及禁止进一步电荷积累的空间阻塞。由于总差分电容是根据凹形和凸表面的加权平均值计算的,因此总电极表面的单个曲率对总电容的影响大大降低。
To improve the understanding of the relation between electrode curvature and energy storage mechanisms, a systematic investigation of the correlation between convex and concave electrode surfaces and the differential capacitance of an electrochemical double layer capacitor using molecular dynamics simulations is presented. Each electrode consists of three layers of curved graphene sheets with a convex and concave surface to which the constant potential method was applied. The differential capacitance shows a fluctuating behavior with respect to the curvature radius of the convex and concave areas of the electrode. The reasons identified for this are differences in the geometric arrangement and solvation of the adsorbed ions as well as a steric hindrance prohibiting further charge accumulation. Because the total differential capacitance is calculated as a weighted average of contributions from concave and convex surfaces, the influence of individual curvatures on the total capacitance is significantly reduced for the total electrode surface.