Capacitive performance enhancements of RuO2 nanocrystals through manipulation of preferential orientation growth originated from the synergy of Pluronic F127 trapping and annealing

被引:26
作者
Chen, I-Li [1 ]
Chen, Tsan-Yao [2 ]
Wei, Yu-Chen [3 ]
Hu, Chi-Chang [1 ]
Lin, Tsang-Lang [2 ]
机构
[1] Natl Tsing Hua Univ, Dept Chem Engn, Hsinchu 30013, Taiwan
[2] Natl Tsing Hua Univ, Dept Engn & Syst Sci, Hsinchu 30013, Taiwan
[3] Taiwan Semicond Mfg Co Ltd, CMP PVD Div Res Dev Proc Ctr, Hsinchu 30013, Taiwan
关键词
HYDROUS RUTHENIUM OXIDE; X-RAY-SCATTERING; ELECTROCHEMICAL CAPACITORS; ANODIC DEPOSITION; CHARGE STORAGE; SUPERCAPACITORS; COMPOSITES; ELECTRODES; BEHAVIOR; RUOX-CENTER-DOT-NH(2)O;
D O I
10.1039/c3nr04479c
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The capacitive performances of RuO2 prepared by oxidation precipitation of Ru precursors (RuCl3 center dot xH(2)O) surrounded with tri-block co-polymer, Pluronic F127, in aqueous media can be enhanced through manipulating its preferential orientation growth of nanocrystals. From the heterogeneous surface chemistry viewpoints with the support of structure characterizations, such enhancement originates from the preferential orientation growth of the {101} facet due to the adsorption of the highly polarisable, non-ionic ligands of Pluronic F127 on the high surface energy facets on RuO2 nanocrystallites. In this case, the F127-trapped sample with annealing at 300 degrees C enhances the specific capacitance 1.6-fold in comparison to its counterpart without F127. With the mechanistic insight into the heterogeneous surface crystal growth pathways, our results materialize the development of RuO2 with tuneable capacitive performances. Furthermore, due to the different propagation models of RuO2 with and without F127 trapping, a schematic diagram is proposed to interpret such a unique crystal growth evolution phenomenon.
引用
收藏
页码:2861 / 2871
页数:11
相关论文
共 45 条
  • [1] Oxidative synthesis of RuOx•nH2O with ideal capacitive characteristics for supercapacitors
    Chang, KH
    Hu, CC
    [J]. JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2004, 151 (07) : A958 - A964
  • [2] Hydrothermal synthesis of binary Ru-Ti oxides with excellent performances for supercapacitors
    Chang, Kuo-Hsin
    Hu, Chi-Chang
    [J]. ELECTROCHIMICA ACTA, 2006, 52 (04) : 1749 - 1757
  • [3] Textural and capacitive characteristics of hydrothermally derived RuO2•xH2O nanocrystallites:: Independent control of crystal size and water content
    Chang, Kuo-Hsin
    Hu, Chi-Chang
    Chou, Chih-Yin
    [J]. CHEMISTRY OF MATERIALS, 2007, 19 (08) : 2112 - 2119
  • [4] Coalescence inhibition of hydrous RuO2 crystallites prepared by a hydrothermal method
    Chang, Kuo-Hsin
    Hu, Chi-Chang
    [J]. APPLIED PHYSICS LETTERS, 2006, 88 (19)
  • [5] Microwave-assisted hydrothermal synthesis of crystalline WO3-WO3 0 5H2O mixtures for pseudocapacitors of the asymmetric type
    Chang, Kuo-Hsiri
    Hu, Chi-Chang
    Huang, Chao-Ming
    Liu, Ya-Ling
    Chang, Chih-I
    [J]. JOURNAL OF POWER SOURCES, 2011, 196 (04) : 2387 - 2392
  • [6] Thermal-induced growth of RuO2 nanorods from a binary Ru-Ti oxide composite and alteration in supercapacitive characteristics
    Chen, I-Li
    Chen, Tsan-Yao
    Hu, Chi-Chang
    Lee, Chih-Hao
    [J]. JOURNAL OF MATERIALS CHEMISTRY A, 2013, 1 (06) : 2039 - 2049
  • [7] Chmiola J, 2006, SCIENCE, V313, P1760, DOI 10.1126/science/1132195
  • [8] Temperature-Dependent Structure and Electrochemical Behavior of RuO2/Carbon Nanocomposites
    Cormier, Zachary R.
    Andrea, Heather A.
    Zhang, Peng
    [J]. JOURNAL OF PHYSICAL CHEMISTRY C, 2011, 115 (39) : 19117 - 19128
  • [9] Local atomic structure and conduction mechanism of nanocrystalline hydrous RuO2 from X-ray scattering
    Dmowski, W
    Egami, T
    Swider-Lyons, KE
    Love, CT
    Rolison, DR
    [J]. JOURNAL OF PHYSICAL CHEMISTRY B, 2002, 106 (49) : 12677 - 12683
  • [10] Synthesis and characterization of mesoporous Ni-Co oxy-hydroxides for pseudocapacitor application
    Hsu, Hsiang-Yu
    Chang, Kuo-Hsin
    Salunkhe, Rahul R.
    Hsu, Chun-Tsung
    Hu, Chi-Chang
    [J]. ELECTROCHIMICA ACTA, 2013, 94 : 104 - 112