| Literature DB >> 26463752 |
Jing Tang1,2, Tao Wang3, Rahul R Salunkhe1, Saad M Alshehri4, Victor Malgras1, Yusuke Yamauchi5,6,7.
Abstract
A facile and sustainable procedure for the synthesis of nitrogen-doped hierarchical porous carbons with a three-dimensional interconnected framework (NHPC-3D) was developed. The strategy, based on a colloidal crystal-templating method, utilizes nitrogenous dopamine as the precursor due to its unique properties, including self-polymerization under mild alkaline conditions, coating onto various surfaces, a high carbonization yield, and well-preserved nitrogen doping after heat treatment. The obtained NHPC-3D possesses a high surface area of 1056 m(2) g(-1) , a large pore volume of 2.56 cm(3) g(-1) , and a high nitrogen content of 8.2 wt %. The NHPC-3D is implemented as the electrode material of a supercapacitor and exhibits a specific capacitance as high as 252 F g(-1) at a current density of 2 A g(-1) . The device also shows a high capacitance retention of 75.7 % at a higher current density of 20 A g(-1) in aqueous electrolyte due to a sufficient surface area for charge accommodation, reversible pseudocapacitance, and minimized ion-transport resistance, as a result of the advantageous interconnected hierarchical porous texture. These results showcase NHPC-3D as a promising candidate for electrode materials in supercapacitors.Entities:
Keywords: carbon; doping; electrochemistry; mesoporous materials; microporous materials
Year: 2015 PMID: 26463752 DOI: 10.1002/chem.201503590
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236