探讨了应用电化学电沉积法制备具有超晶格结构的纳米组分调制多层膜的原理,对比了恒电流和恒电位两种电化学手段对膜层微观结构的影响,并简述了阳极氧化法制备多层膜陶瓷材料的研究现状;同时介绍了XRD、STM等几种常用于表征纳米多层膜微观结构的现代测试方法,阐述了纳米多层膜的优异性能及应用前景.
参考文献
[1] | Jay A Switzer,Michael J Shane,Richard J Phillips.Elctrodeposited ceramic superlattice[J].Science,1990,24:444. |
[2] | CHEN Zhi-Gang,TANG Yi-Wen,ZHANG Li-Sha,et al.Electrochemical deposition and characterization of zinc oxide thin films[J].Acta Phys.-Chim.Sin.,2005,21 (6):612. |
[3] | D S Lashmore,M P Dariel.Electrodeposition of Cu/Ni textured superlattices[J].Electrochem.Soc.,1988,135 (5):1218. |
[4] | Tench D,White J.Enhanced tensile strength for electrodeposited nickel-copper multiplayer composites[J].Mattal Trans A,1984,15:2039. |
[5] | YAO Su-Wei,ZHAO Jin,WANG Hong-Zhi,et al.Electrochemical deposition,Characterization and the study of giant magnetoresistance of Cu/Co superlattice multiplayer[J].Acta Phys.-Chim.Sin.,2003,19(10):892. |
[6] | Haseeb ASMA.Dual-bath electrodeposition of Cu/Ni compositionally multilayers[J].Electrochem.Soc.,1994,141 (1):230. |
[7] | 喻敬贤,陈永言,黄清安,等.电化学法制备Ni-Cu/Cu超晶格多层膜[J].武汉大学学报(自然科学版),1998,44(6):700. |
[8] | J Yahalom,O Zadok.Formation of composition-modulated alloys by electrodeposition[J].J Mater.Sci.,1987,22:499. |
[9] | A Metrot,P Bonhomme,M Troyon,et al.TEM study of electrodeposited Ni/Cu multilayers in the form of nanowires[J].Thin Solid Films,1996,288(1):86. |
[10] | J Tóth,L F Kiss,E Tóth-Kádár,et al.Giant magnetoresistance and magnetic properties of electrodeposited Ni81Cul9/Cu multilayers[J].Magn.Magn.Mater.,1999,198:243. |
[11] | H El Fanity,K Rahmouni,M Bouanani,et al.Structural properties of electrodeposited Co/Cu multilayers[J].Thin Solid Films,1999,318(1):227. |
[12] | Chassaing E,Morrone A,Schmidt.Nanometric Cu-Co multilayers electrodeposited on indium-tin oxide glass[J].J.Electrochem.Soc.,1999,146 (5):1794. |
[13] | Jay A Switzer,Pyne P Raffaelle,Richard J Phillips,et al.Scanning tunneling microscopy of electrodeposited ceramic superlattices[J].Science,1992,258:1918. |
[14] | Yoshimura,Suchanek,Watanabe.In situ fabrication of SrTiO3 BaTiO3 layered thin films by hydrothermal electrochemical technique[J].Eur Ceram Soc.,1999,19:1353. |
[15] | Yoshimura,Suchanek.In situ fabrication of morphology-controlled advanced ceramic materials by soft solution processing[J].Solid State Ionics,1997,98:197. |
[16] | Kajiyoshi,Sakabe,Yoshimura.Electrical properties of BaTiO3 thin film grown by the hydrothermal electrochemical method[J].Jan.J.Appl.Phys.,1997,36:1209. |
[17] | Yoshimura,Suchanek,Watanabe,et al.Functionally graded SrTiO3-BaTiO3 thin films prepared by the hydrothermal electrochemical method under flowing solution[J].Mater.Res.,1998,13:875. |
[18] | Suchanek,Yoshimura,Watanabe.Preparation of BaTiO3 thin films by the hydrothermal electrochemical method in the flowing system[J].Solid State Ionics,1998,109:65. |
[19] | Suchanek,Yoshimura.Preparation of strontium titanate thin films by the hydrothermal electrochemical method in a solition flow system[J].Am.Ceram.Soc.,1998,81:2864. |
[20] | Suchanek,Yoshimura,Watanabe.Solution flow system for hydrothermal electrochemical synthesis:new opportunities for multilayered oxide films[J].Mater.Res.Soc.Symp.Proc.,1998,517:639. |
[21] | YoshimuraM.Growth mechanism of ATiO3 (A = Ba,Sr) thin film by the hydrothermal electrochemical method[J].Eur.J.Solid State Inorg.Chem.,1996,33:623. |
[22] | Jun Tamaki,Gregory K L Goh,Fred FLange.Novel epitaxial growth of barium titanate thin films by electrodeposition[J].Mater.Res.,2000,15(2):875. |
[23] | ZHAO Jian-Ling,WANG Xiao-Hui,CHEN Ren-Zheng,et al.Synthesis of thin films of barium titanate and barium strontium titanate nanotubes on titanium substrates[J].Mater.Lett.,2005,59:2329. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%