Advanced Energy Materials · 2013 · 104 citations · 43 references
Materials ScienceChemical EngineeringEngineeringBattery Electrode MaterialsNovel CdcNanomaterialsNanoporous MaterialPorous CarbonAdvanced MesostructureMesocellular Silica FoamsEnergy StorageEnergy Storage DeviceElectrochemical Energy StorageElectrochemical Double Layer CapacitorChemistryHybrid MaterialsElectrochemistryCeramic Conversion
Highly porous carbide‐derived carbon (CDC) mesofoams (DUT‐70) are prepared by nanocasting of mesocellular silica foams with a polycarbosilane precursor. Ceramic conversion followed by silica removal and high‐temperature chlorine treatment yields CDCs with a hierarchical micro‐mesopore arrangement. This new type of polymer‐based CDC is characterized by specific surface areas as high as 2700 m 2 g −1 , coupled with ultrahigh micro‐ and mesopore volumes up to 2.6 cm 3 g −1 . The relationship between synthesis conditions and the properties of the resulting carbon materials is described in detail, allowing precise control of the properties of DUT‐70. Since the hierarchical pore system ensures both efficient mass transfer and high capacities, the novel CDC shows outstanding performance as an electrode material in electrochemical double‐layer capacitors (EDLCs) with specific capacities above 240 F g −1 when measured in a symmetrical two‐electrode configuration. Remarkable capacities of 175 F g −1 can be retained even at high current densities of 20 A g −1 as a result of the enhanced ion‐transport pathways provided by the cellular mesostructure. Moreover, DUT‐70 can be infiltrated with sulfur and host the active material in lithium–sulfur battery cathodes. Reversible capacities of 790 mAh g −1 are achieved at a current rate of C/10 after 100 cycles, which renders DUT‐70 an ideal support material for electrochemical energy‐storage applications.
43
Michel Armand, J.-M. Tarascon · Nature · 2008 · 19K citations
Materials for electrochemical capacitors
Patrice Simon, Yury Gogotsi · Nature Materials · 2008 · 15.8K citations · Full text
Triblock Copolymer Syntheses of Mesoporous Silica with Periodic 50 to 300 Angstrom Pores
Dongyuan Zhao, Jianglin Feng, Qisheng Huo et al. · Science · 1998 · 11.5K citations
Li–O2 and Li–S batteries with high energy storage
Peter G. Bruce, Stefan A. Freunberger, Laurence J. Hardwick et al. · Nature Materials · 2011 · 9.3K citations
Electrical Engineering, Engineering, Battery Electrode Materials +8
Carbon-Based Supercapacitors Produced by Activation of Graphene
Yanwu Zhu, Shanthi Murali, Meryl D. Stoller et al. · Science · 2011 · 6K citations