Authors
Dawei Feng*, Ting Lei*, Maria R Lukatskaya*, Jihye Park, Zhehao Huang, Minah Lee, Leo Shaw, Shucheng Chen, Andrey A Yakovenko, Ambarish Kulkarni
Publication date
2018/1/1
Journal
Nature Energy
Volume
3
Pages
30–36
Description
For miniaturized capacitive energy storage, volumetric and areal capacitances are more important metrics than gravimetric ones because of the constraints imposed by device volume and chip area. Typically used in commercial supercapacitors, porous carbons, although they provide a stable and reliable performance, lack volumetric performance because of their inherently low density and moderate capacitances. Here we report a high-performing electrode based on conductive hexaaminobenzene (HAB)-derived two-dimensional metal−organic frameworks (MOFs). In addition to possessing a high packing density and hierarchical porous structure, these MOFs also exhibit excellent chemical stability in both acidic and basic aqueous solutions, which is in sharp contrast to conventional MOFs. Submillimetre-thick pellets of HAB MOFs showed high volumetric capacitances up to 760 F cm−3 and high areal …
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