Marcus A. WorsleyPeter J. PauzauskieTammy Y. OlsonJuergen BienerJoe H. SatcherTheodore F. Baumann
We report the synthesis of ultra-low-density three-dimensional macroassemblies of graphene sheets that exhibit high electrical conductivities and large internal surface areas. These materials are prepared as monolithic solids from suspensions of single-layer graphene oxide in which organic sol-gel chemistry is used to cross-link the individual sheets. The resulting gels are supercritically dried and then thermally reduced to yield graphene aerogels with densities approaching 10 mg/cm(3). In contrast to methods that utilize physical cross-links between GO, this approach provides covalent carbon bonding between the graphene sheets. These graphene aerogels exhibit an improvement in bulk electrical conductivity of more than 2 orders of magnitude (∼1 × 10(2) S/m) compared to graphene assemblies with physical cross-links alone (∼5 × 10(-1) S/m). The graphene aerogels also possess large surface areas (584 m(2)/g) and pore volumes (2.96 cm(3)/g), making these materials viable candidates for use in energy storage, catalysis, and sensing applications.
Marcus A. Worsley (1427638)Peter J. Pauzauskie (1619314)Tammy Y. Olson (1629259)Juergen Biener (1410298)Joe H. Satcher (1865347)Theodore F. Baumann (1595977)
Shichang LuoYunlong MaXinlei WeiYinghua JinLi QiuWei Zhang
Shuliang LvHaihui LiuFang YanWenhao LuBoyang MaoJincan Zhang
Han HuZongbin ZhaoWubo WanYury GogotsiJieshan Qiu
Han Hu (131769)Zongbin Zhao (1293945)Wubo Wan (804251)Yury Gogotsi (1280355)Jieshan Qiu (1293942)