采用化学沉淀法(在RuCl_3溶液中滴加NaOH)制备非晶态水合氧化钌,用去离子水对非晶态水合氧化钉沉淀充分洗涤,获得了Na、Cl杂质含量不同、而非晶态结构、水含量和显微相貌都相同的两种氧化钉样品.X射线光电子能谱分析表明,样品中的Na和Cl杂质分别以水合Na~+、水合Cl~-的形式存在.去离子水充分洗涤5次的样品(W_5)与不充分洗涤1次的样品(W_1)相比,前者的Na~+、Cl~-杂质含量低.循环伏安测试表明,W_5的比电容和功率性能都优于W_1.Na~+、Cl~-杂质不仅降低了氧化钌的比电容,也降低了氧化钌的功率性能.在非晶态水合氧化钌的制备过程中杂质含量的控制对获得高超电容性能十分重要.文中还分析了Na~+、Cl~-杂质对电容性能不利影响的机理.
Amorphous hydrous ruthenium oxide was prepared by a chemical precipitation method.Two ruthenium oxide samples with different contents of Na and Cl impurities were obtained by changing the number of times for washing sediments with distilled water. The experiment results showed that the Na and Cl impurities exist as hydrated Na~+ and hydrated Cl~-, respectively. Sample W_5 (sufficiently washed 5 times with distilled water during its preparation) has lower content of Na~+ and Cl~+ impurities in comparison with sample W_1 (insufficiently washed once with distilled water during its preparation). Cyclic voltammetric measurements indicate that the specific capacitance and power performance of W_5 are all higher than that of W_1. Hydrated Na~+ and Cl~- impurities not only decrease the specific capacitance of ruthenium oxide, but degrade the power performance. The reason for the deleterious effect of hydrated Na~+ and Cl~- impurities on the super-capacitive properties is discussed.
参考文献
[1] | B.E.Conway,Electrochemical Supercapacitors (Norwell,Kluwer Academic Publication,1999)p.1 |
[2] | J.P.Zheng,P.J.Cygan,T.R.Jow,Hydrous ruthenium ox-ide as an electrode material for electrochemical capacitors,Journal of The Electrochemical Society,142,2669(1995) |
[3] | J.P.Zheng,T.R.Jow,A new charge storage mechanism for electrochemical capacitors,Journal of The Electrochemi-cal Society,142,L6(1995) |
[4] | A.Foelske,O.Barbieri,M.Hahn,R.Kotz,An X-ray photo-electron spectroscopy study of hydrous ruthenium oxide powders with various water contents for supercapacitors,Electrochemical and Solid-State Letters,9(6),A268(2006) |
[5] | O.Barbieri,M.Hahn,A.Foelske,R.Kotz,Effect of elec-tronic resistance and water content on the performance of RuO_2 for supercapacitors,Journal of The Electrochemical Society,153(11),A2049(2006) |
[6] | Y.Sato,K.Yomogida,T.Nanaumi,K.Kobayakawa,Y.Ohaswa,M.Kawai,Electrochemical behavior of activated-carbon capacitor materials loaded with ruthe-nium oxide,Electrochemical and Solid-State Letters,3(3),113(2000) |
[7] | S.Mitra,K.S.Lokesh,S.Sampath,Exfoliated graphite-ruthenium oxide composite electrodes for electrochem-ical supercapacitors,Journal of Power Sources,185,1544(2008) |
[8] | H.Kim,B.N.Popov,Characterization of hydrous ruthe-nium oxide-carbon nanocomposite supercapacitors pre-pared by a colloidal method,Journal of Power Sources,104,52(2002) |
[9] | C.C.Hu,W.C.Chen,K.H.Chang,How to achieve maxi-mum utilization of hydrous ruthenium oxide for super-capacitors,Journal of Electrochemical Society,151(2),A281(2004) |
[10] | WANG Xiaofeng,GAO Qi,LIANG Ji,Nano ruthenium oxide/carbon nanotubes composite electrode material for electrochemical capacitors,Rare Metal Materials and En-gineering,35(2),295(2006)(王晓峰,高崎,梁吉,纳米氧化钌的制备及其碳纳米管复合电极的超电容特性,稀有金属材料与工程,35(2),295(2006) |
[11] | C.C.Hu,Y.H.Huang,Cyclic voltammetric deposition of hydrous ruthenium oxide for electrochemical capaci-tors,Journal of The Electrochemical Society,146(7),2465(1999) |
[12] | C.C.Hu,M.J.Liu,K.H.Chang,Anodic deposition of hy-drous ruthenium oxide for supercapacitors,Journal of Power Sources,163,1126(2007) |
[13] | J.J.Jow,H.J.Lee,H.R.Chen,M.S.Wu,T.Y.Wei,Anodic,cathodic and cyclic voltammetric deposition of ruthe-nium oxides from aqueous RuCl_3 solutions,Electrochim-ica Acta,52,2625(2007) |
[14] | B.O.Park,C.D.Lokhande,H.S.Park,K.D.Jung,O.S.Joo,Performance of supercapacitor with electrodeposited ruthenium oxide film electrodes-effect of film thickness,Journal of Power Sources,134,148(2004) |
[15] | Y.R.Ahn,C.R.Park,S.M.Jo,D.Y.Kim,Enhanced charge-discharge characteristics of RuO_2 supercapacitors on heat-treated TiO_2 naorods,Applied Physics Letters,90,122106(2007) |
[16] | Y.R.Ahn,M.Y.Song,S.M.Jo,C.R.Park,D.Y.Kim,Elec-trochemical capacitors based on electrodeposited ruthe-nium oxide on nanofibre substrates,Nanotechnology,17,2865(2006) |
[17] | K.H.Chang,C.C.Hu,Hydrothermal synthesis of hydrous crystalline RuO_2 nanoparticles for supercapacitors,Elec-trochemical and Solid-State Letters,7(12),A466(2004) |
[18] | K.H.Chang,C.C.Hu,C.Y.Chou,Textural and capaci-tive characteristics of hydrothennally derived RuO2?H2O nanocrystallites:independent control of crystal size and water content,Chemistry Materials,19,2112(2007) |
[19] | I.H.Kim,K.B.Kim,Ruthenium oxide thin film electrodes for supercapacitors,Electrochemical and Solid-State Let-ters,4(5),A62(2001) |
[20] | I.H.Kim,K.B.Kim,Ruthenium oxide thin film electrodes prepared by electrostatic spray deposition and their charge storage mechanism,Journal of Electrochemical Society,151(1),E7(2004) |
[21] | I.H.Kim,K.B.Kim,Electrochemcial characterization of hydrous ruthenium oxide thin-film electrodes for electro-chemical capacitor applications,Journal of Electrochemi-cal Society,163(2),A383(2006) |
[22] | A.Shchukarev,J.F.Boily,A.R.Felmy,XPS of fast-frozen hematite colloids in NaCl aqueous solutions:I.Evidence for the formation of multiple layers of hydrated sodium and chloride ions incuced by the 001 basal plane,Journal of Physical Chemistry C,111,18307(2007) |
[23] | D.W.Wang,F.Li,M.Liu,G.Q.Lu,H.M.Cheng,3D ape-riodic hierarchical porous graphitic carbon material for high-rate electrochemical capacitive energy storage,Ange-wandte Chemie-International Edition,47,373(2008) |
- 下载量()
- 访问量()
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%