Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8016604 | Materials Letters | 2016 | 5 Pages |
Abstract
Nanoporous Co3O4 plates are synthesized by a facile approach combining hydrothermal treatment and subsequent calcination. Nanoporous Co3O4 plates with a large surface area (161.9 m2 gâ1), small crystalline size (~ 3.0 nm) and thin thickness (~10 nm) show potentials for electrochemical energy storage. Nanoporous Co3O4 plates as electroactive materials for supercapacitor displayed a good rate capability and specific capacitance of 356.6 F gâ1 at 0.4 A/g without any obvious degradation over 2500 cycles. They also delivered a high specific capacity of 944.4 mA h gâ1 at 100 mA g â1 and a good rate capability as the anodes for lithium-ion batteries.
Related Topics
Physical Sciences and Engineering
Materials Science
Nanotechnology
Authors
Wangyan Gou, Xuemei Zhou, Jing Li, Yuanyuan Ma,