Enhanced Pseudocapacitance of Ionic Liquid/Cobalt Hydroxide Nanohybrids

被引:101
作者
Choi, Bong Gill [1 ]
Yang, MinHo [1 ,2 ]
Jung, Sung Chul [1 ]
Lee, Kyoung G. [3 ]
Kim, Jin-Gyu [4 ]
Park, HoSeok [5 ]
Park, Tae Jung [6 ]
Lee, Sang Bok [2 ,7 ]
Han, Young-Kyu [1 ,8 ]
Huh, Yun Suk [1 ,9 ]
机构
[1] Korea Basic Sci Inst, Div Mat Sci, Taejon 305333, South Korea
[2] Korea Adv Inst Sci & Technol, Grad Sch Nanosci & Technol WCU, Taejon 305701, South Korea
[3] Natl Nanofab Ctr, Ctr Nanobio Integrat & Convergence Engn, Taejon 305806, South Korea
[4] Korea Basic Sci Inst, Div Electron Microscop Res, Taejon 305806, South Korea
[5] Kyung Hee Univ, Coll Engn, Dept Chem Engn, Yongin 446701, Gyeonggi Do, South Korea
[6] Chung Ang Univ, Dept Chem, Seoul 156756, South Korea
[7] Univ Maryland, Dept Chem & Biochem, College Pk, MD 20742 USA
[8] Dongguk Univ Seoul, Dept Energy & Mat Engn, Seoul 100715, South Korea
[9] Inha Univ, Coll Engn, Dept Biol Engn, Inchon 402751, South Korea
基金
新加坡国家研究基金会;
关键词
supercapacitor; redox reaction; ionic liquid; Co(OH)(2); nanohybrid; ONE-STEP SYNTHESIS; ELECTROCHEMICAL CAPACITORS; LIQUID; COBALT; SUPERCAPACITORS; FILM; NANOPARTICLES; ZEOLITE; SYSTEMS; STORAGE;
D O I
10.1021/nn305750s
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Development of nanostructured materials with enhanced redox reaction capabilities is Important for achieving high energy and power densities in energy storage systems. Here, we demonstrate that the nanohybridization of ionic liquids (ILs, 1-butyl-3-methylimidazolium tetrafluoroborate) and cobalt hydroxide (Co(OH)(2)) through ionothermal synthesis leads to a rapid and reversible redox reaction. The as-synthesized IL-Co(OH)(2) has a favorable, tailored morphology with a large surface area of 400.4 m(2)/g and a mesopore size of 4.8 nm. In particular, the IL-Co(OH)(2)-based electrode exhibits improvement in electrochemical characteristics compared with bare Co(OH)(2), showing a high specific capacitance of 859 F/g at 1 A/g, high-rate capability (similar to 95% retention at 30 A/g), and excellent cycling performance (similar to 96% retention over 1000 cycles). AC impedance analysis demonstrates that the introduction of Its on Co(OH)(2) facilitates ion transport and charge transfer: IL-Co(OH)(2) shows a higher ion diffusion coefficient (1.06 x 10(-11) x cm(2)/s) and lower charge transfer resistance (1.53 Omega) than those of bare Co(OH)(2) (2.55 x 10(-12) cm(2)/s and 2.59 Omega). Our density functional theory (OFT) calculations reveal that the IL molecules, consisting of anion and cation groups, enable easier hydrogen desorption/adsorption process, that is, a more favorable redox reaction on the Co(OH)(2) surface.
引用
收藏
页码:2453 / 2460
页数:8
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