Research Centre of Materials Science, Beijing Institute of Technology , Beijing 100081, P. R. China.
ACS Appl Mater Interfaces. 2017 Sep 13;9(36):30626-30634. doi: 10.1021/acsami.7b07746. Epub 2017 Aug 30.
Popcorn-derived porous carbon flakes have been successfully fabricated from the biomass of maize. Utilizing the "puffing effect", the nubby maize grain turned into materials with an interconnected honeycomb-like porous structure composed of carbon flakes. The following chemical activation method enabled the as-prepared products to possess optimized porous structures for electrochemical energy-storage devices, such as multilayer flake-like structures, ultrahigh specific surface area (S: 3301 m g), and a high content of micropores (microporous surface area of 95%, especially the optimized sub-nanopores with the size of 0.69 nm) that can increase the specific capacitance. The as-obtained sample displayed excellent specific capacitance of 286 F g at 90 A g for supercapacitors. Moreover, the unique porous structure demonstrated an ideal way to improve the volumetric energy density performance. A high energy density of 103 Wh kg or 53 Wh L has been obtained in the case of ionic liquid electrolyte, which is the highest among reported biomass-derived carbon materials and will satisfy the urgent requirements of a primary power source for electric vehicles. This work may prove to be a fast, green, and large-scale synthesis route by using the large nubby granular materials to synthesize applicable porous carbons in energy-storage devices.
爆米花衍生的多孔碳薄片已成功地从玉米的生物质中制造出来。利用“膨化效应”,玉米颗粒变成了由碳薄片组成的具有相互连接的蜂窝状多孔结构的材料。随后采用化学活化方法使所制备的产物具有优化的用于电化学储能器件的多孔结构,如多层片状结构、超高比表面积(S:3301 m 2/g)和高含量的微孔(微孔表面积为 95%,特别是尺寸为 0.69nm 的优化亚纳米孔),这可以增加比电容。所获得的样品在超级电容器中表现出优异的比电容,在 90A/g 时为 286F/g。此外,独特的多孔结构展示了一种提高体积能量密度性能的理想方法。在离子液体电解质的情况下,获得了 103Wh/kg 或 53Wh/L 的高能量密度,这在报道的生物质衍生碳材料中是最高的,将满足电动汽车对主要电源的迫切需求。这项工作可能证明是一种快速、绿色、大规模的合成方法,它使用大的颗粒状材料来合成适用于储能器件的多孔碳。