Study of the pore size effect on the charge storage of hydrous RuO2 nanoparticles supported within the pores of activated carbon

被引:0
|
作者
Itoi, Hiroyuki [1 ]
Ito, Miho [1 ]
Kasai, Yuto [1 ]
Tanabe, Yuichiro [1 ]
Suzuki, Ryutaro [1 ]
Hasegawa, Hideyuki [1 ]
Miyaji, Masahiro [1 ]
Iwata, Hiroyuki [2 ]
Ohzawa, Yoshimi [1 ]
Beniya, Atsushi [3 ]
Higashi, Shougo [3 ]
机构
[1] Aichi Inst Technol, Dept Appl Chem, Yachigusa 1247,Yakusa Cho, Toyota 4700392, Japan
[2] Aichi Inst Technol, Dept Elect & Elect Engn, Yachigusa 1247,Yakusa Cho, Toyota 4700392, Japan
[3] Toyota Cent Res & Dev Labs Inc, Frontier Res Domain, Yokomichi 41-1, Nagakute, Aichi 4801192, Japan
关键词
Activated carbon; Hydrous ruthenium oxides; Electrochemical capacitors; Nanoparticles; Organoruthenium complexes; METAL-OXIDE NANOPARTICLES; RUTHENIUM OXIDE; PERFORMANCE; ELECTRODES; ENERGY; NANOTUBES; GRAPHENE;
D O I
10.1016/j.solidstatesciences.2020.106472
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Hydrous ruthenium oxide (RuO2) nanoparticles are hybridized inside the pores of activated carbon (AC) for preparing electrochemical capacitor electrodes. The hybridization consists of the adsorption of an organo-ruthenium complex and subsequent heat treatment to reduce the complex into Ru nanoparticles within the AC pores, followed by the electrochemical oxidation of the resulting Ru nanoparticles into hydrous RuO(2 )nanoparticles. Two kinds of AC with only micropores and both micropores and mesopores of similar to 4 nm are examined to study the effects of pore sizes on the charge/discharge characteristics of the AC/RuO2 hybrids. Since the introduction of hydrous RuO2 nanoparticles is not accompanied by the volumetric expansion of the AC particles, the volumetric capacity is enhanced in comparison with the pristine AC. However, the capacitance retention at high charge/discharge rates is decreased by micropores or an excessive amount of the hydrous RuO2 nanoparticles. This method is free from the use of any organic solvent, concomitant solvent removal and drying process, or reducing and oxidizing reagents, and therefore, can be used to synthesize porous carbon/metal oxide nanoparticle hybrids for versatile applications.
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页数:8
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