它的 wettability,电极涂层技术和电的化学性能上的活性炭(交流) 的粒子尺寸的效果被学习为高力量要求装配非水的电的双层电容器(EDLC ) 。结果证明特定的曲面面积和交流的全部的毛孔体积分别地从 2 137 m 2/g 减少到 1 683 m 2/g, 和 0.95 厘米 3/g 到 0.78 厘米 3/g, ,如果它是为 8 h 的球工厂。毛孔尺寸分布在到在不同球工厂时间的 3.5 nm 的 0.7 nm 的范围是类似的。在那里存在而,交流的表面上的氧化在球工厂过程和 O-C=O 氧作文的比率期间增加那些公司, C=O 减少。在当前的收集者上涂的交流的脱皮的力量是有交流的粒子尺寸以及 EDLC 的电阻的几乎反比例,并且它的电容减少大约 6% 。
The effects of particle size of activated carbon (AC) on its wettability, electrode coating technology and electric chemical performance were studied to assemble nonaqueous electric double layer capacitors (EDLCs) for high power requirements. The results show that the specific surface area and total pore volume of AC decrease from 2 137 m^2/g to 1 683 m^2/g, and 0.95 cm^3/g to 0.78 cm^3/g, respectively, if it is ball-milled for 8 h. The pore size distributions are similar in the range of 0.7 nm to 3.5 nm for different ball-milling time. There exists oxidation on the surface of AC during the ball-milling process and the ratios of O-C=O oxygen compositions increase whereas those of C-O, C=O decrease. The peeling strength of AC coated on current collector is almost inverse proportion with the particle size of AC as well as the resistance of EDLCs, and its capacitance decreases about 6%.