220
7 Nanomaterials for Supercapacitors
Xu Y, Lin Z, Zhong X, Huang X, Weiss NO, Huang Y, Duan X (2014) Holey graphene frameworks
for highly efficient capacitive energy storage. Nat Commun 5:4554
Yang S, Liu Y, Hao Y, Yang X, Goddard WA, Zhang XL, Cao B (2018) Oxygen-vacancy abundant
ultrafine Co 3 O 4 /graphene composites for high-rate supercapacitor electrodes. Adv Sci 5:1700659
Zhang Y-Z, Wang Y, Xie Y-L, Cheng T, Lai W-Y, Pang H, Huang W (2014a) Porous hollow
Co 3 O 4 with rhombic dodecahedral structures for high-performance supercapacitors. Nanoscale
6:14354–14359
Zhang Z, Xiao F, Qian L, Xiao J, Wang S, Liu Y (2014b) Facile synthesis of 3D MnO 2 -graphene
and carbon nanotube-graphene composite networks for high-performance, flexible, all-solid-state
asymmetric supercapacitors. Adv Energy Mater 4:1400064
Zheng M, Xiao X, Li L, Gu P, Dai X, Tang H, Hu Q, Xue H, Pang H (2017) Hierarchically
nanostructured transition metal oxides for supercapacitors. Sci China Mater 61:185–209
Zhu Y, Murali S, Stoller MD, Ganesh KJ, Cai W, Ferreira PJ et al (2011) Carbon-based
supercapacitors produced by activation of graphene. Science 332:1537–1541
7 Nanomaterials for Supercapacitors
Xu Y, Lin Z, Zhong X, Huang X, Weiss NO, Huang Y, Duan X (2014) Holey graphene frameworks
for highly efficient capacitive energy storage. Nat Commun 5:4554
Yang S, Liu Y, Hao Y, Yang X, Goddard WA, Zhang XL, Cao B (2018) Oxygen-vacancy abundant
ultrafine Co 3 O 4 /graphene composites for high-rate supercapacitor electrodes. Adv Sci 5:1700659
Zhang Y-Z, Wang Y, Xie Y-L, Cheng T, Lai W-Y, Pang H, Huang W (2014a) Porous hollow
Co 3 O 4 with rhombic dodecahedral structures for high-performance supercapacitors. Nanoscale
6:14354–14359
Zhang Z, Xiao F, Qian L, Xiao J, Wang S, Liu Y (2014b) Facile synthesis of 3D MnO 2 -graphene
and carbon nanotube-graphene composite networks for high-performance, flexible, all-solid-state
asymmetric supercapacitors. Adv Energy Mater 4:1400064
Zheng M, Xiao X, Li L, Gu P, Dai X, Tang H, Hu Q, Xue H, Pang H (2017) Hierarchically
nanostructured transition metal oxides for supercapacitors. Sci China Mater 61:185–209
Zhu Y, Murali S, Stoller MD, Ganesh KJ, Cai W, Ferreira PJ et al (2011) Carbon-based
supercapacitors produced by activation of graphene. Science 332:1537–1541
