Nanoporous graphene/single wall carbon nanohorn heterostructures with enhanced capacitance

被引:39
作者
Annamalai, K. P. [1 ,2 ]
Gao, Jianping [1 ,2 ]
Liu, Lile [1 ,2 ]
Mei, Jun [3 ]
Lau, Woonming [3 ]
Tao, Yousheng [1 ,2 ,3 ,4 ]
机构
[1] Chinese Acad Sci, FJIRSM, Key Lab Design & Assembly Funct Nanostruct, Fuzhou 350002, Peoples R China
[2] Haixi Inst CAS, Fujian Prov Key Lab Nanomat, Fuzhou 350002, Peoples R China
[3] Chengdu Green Energy & Green Mfg Technol R&D Ctr, Chengdu 610207, Peoples R China
[4] Xiamen Univ, Coll Environm & Ecol, Xiamen 361102, Peoples R China
基金
中国国家自然科学基金;
关键词
PORE-SIZE DISTRIBUTION; SURFACE-AREA; SUPERCAPACITOR; NANOTUBE; HYBRID; ELECTRODES; OXIDE; ULTRACAPACITORS; DENSITY;
D O I
10.1039/c5ta02580j
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
This is the first report on the synthesis of nanoporous graphene/single wall carbon nanohorns (G/SWCNHs), a novel multicomponent of nanocarbons, using a facile hydrothermal method. Heterostructures were formed with interconnected graphene to support single wall carbon nanohorns (SWCNHs); meanwhile, SWCNHs prevented graphene nanosheets from stacking face-to-face. The samples were thoroughly characterized to illustrate their nanostructures and electrochemical properties. G/SWCNHs showed xerogel-like structures having ultra-micropores of ca. 0.6 nmand mesopores of 2-12 nm with the total nanopore volume of 0.20 cm(3) g(-1). The heterostructures of G/SWCNHs had an enhanced capacitance of 244 F g(-1) in 1 M KOH with ultra fast charge-discharge and excellent rate capability, superior to reduced graphene oxide, SWCNHs and SWCNH composites. The nanohybrid achieved a capacitance retention of 99% after 1000 cycles at a current density of 10 A g(-1), promising for practical high power density applications. This study also provides an environmentally friendly process for the preparation of better nanostructured carbons for electrochemical energy storage devices of high-performance.
引用
收藏
页码:11740 / 11744
页数:5
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