Department of Chemical and Biomolecular Engineering, Sogang University, Seoul, Korea.
Langmuir. 2013 Jan 29;29(4):1192-8. doi: 10.1021/la304556w. Epub 2013 Jan 11.
Inverse opal carbon materials were used as anodes for lithium ion batteries. We applied particulate inverse opal structures and their dispersion in the formation of anode electrodes via solution casting. We prepared aminophenyl-grafted inverse opal carbons (a-IOC), inverse opal carbons with mesopores (mIOC), and bare inverse opal carbons (IOC) and investigated the electrochemical behavior of these samples as anode materials. Surface modification by aminophenyl groups was confirmed by XPS measurements. TEM images showed mesopores, and the specific area of mIOC was compared with that of IOC using BET analysis. A half-cell test was performed to compare a-IOC with IOC and mIOC with IOC. In the case of the a-IOC structure, the cell test revealed no improvement in the reversible specific capacity or the cycle performance. The mIOC cell showed a reversible specific capacity of 432 mAh/g, and the capacity was maintained at 88%-approximately 380 mAh/g-over 20 cycles.
反蛋白石碳材料被用作锂离子电池的阳极。我们通过溶液浇铸将颗粒状反蛋白石结构及其分散体应用于阳极电极的形成中。我们制备了接枝有苯胺基的反蛋白石碳(a-IOC)、具有介孔的反蛋白石碳(mIOC)和裸反蛋白石碳(IOC),并研究了这些样品作为阳极材料的电化学行为。XPS 测量证实了表面的苯胺基修饰。TEM 图像显示了介孔,通过 BET 分析比较了 mIOC 的比表面积与 IOC 的比表面积。进行了半电池测试,比较了 a-IOC 与 IOC 以及 mIOC 与 IOC。在 a-IOC 结构的情况下,电池测试没有显示出可逆比容量或循环性能的改善。mIOC 电池的可逆比容量为 432 mAh/g,在 20 次循环中,容量保持在 88%-约 380 mAh/g。