欢迎登录材料期刊网

材料期刊网

高级检索

主要论述了低维材料的制造方法、特异性能及在光电子和微电子器件领域的应用,包括介质超晶格、金属超晶格和一维量子线;介绍了我们分别采用激光分子束外延制备的BaTiO3/SrTiO3介质超晶格及其介电性能、直流磁控溅射法制备的强紫外光反射的Cu/Ti超晶格和宽禁带的一维ZnO量子线;描述了低维材料的发展前景.

参考文献

[1] Nordblad P;Broddefalk A;Mathieu R et al.Fe/V and Fe/Co(001) superlattices: growth, anisotropy, magnetization and magnetoresistance[J].Journal of Physics B:Atomic Molecular and Optical Physics,2003,327:344.
[2] Haghiri-Gosn;Renard J-P .CMR manganites:physics, thin films and devices[J].Journal of Physics D:Applied Physics,2003,36:R127.
[3] Kingetsu T;Kamada Y;Yamamoto M .Epitaxial growth of binary and ternary metallic strained superlattices and their magnetic properties[J].Science and Technology of Advanced Materials,2001,2:331.
[4] Sundar Manoharan S;Hegde M S;Satyalakshmi K M et al.Metal-insulator transition and giant magnetoresistance in La1-x MnO3-δ thin films and superlattices[J].THIN SOLID FILMS,1996,275:244.
[5] 罗佳慧,李燕,杨成韬.Cu/Ti超晶格薄膜的强紫外反射性能研究[J].光学学报,2001(06):673-675.
[6] Stearns D G;Rosen R S;Vernon S P .Multilayer mirror technology for soft X-ray projection lithography[J].Applied Optics,1993(32):6952.
[7] Skulina KM.;Bionta RM.;Makowiecki DM.;Gullikson EM.;Soufli R.;Kortright JB.;Underwood JH.;Alford CS. .MOLYBDENUM BERYLLIUM MULTILAYER MIRRORS FOR NORMAL INCIDENCE IN THE EXTREME ULTRAVIOLET[J].Applied optics,1995(19):3727-3730.
[8] Takenaka H;Kawamura T;Haga T et al.Evalution of large area Mo/Si multilayer soft x-ray mirrors fabricated by RF magnetron sputtering[J].Japanese Journal of Applied Physics,1995(34):5027.
[9] Erbil A;Kim Y;Gerhardt R A .Giant permittivity in epitaxial ferroelectric heterostructrues[J].Physical Review Letters,1996,77:1628.
[10] 陈小龙.氮化镓低维材料[J].人工晶体学报,2002(03):277-282.
[11] 刘宏,王继扬,郝晓涛.Ⅲ-Ⅴ族化合物低维半导体材料制备技术及进展[J].半导体光电,2000(01):6-10.
[12] Iijima K;Teeshima K T;Bando Y et al.Atomic layer growth of oxide thin films with perovskite-type structure by reactive evaporation[J].Journal of Applied Physics,1992,72:2840.
[13] Kanno I;Hayashi S;Takayama R et al.Superlattices of PbZrO3 and PbTiO3 prepared by multi-ion-beam sputtering[J].Applied Physics Letters,1996,68:328.
[14] Rios S.;Ruediger A.;Jiang AQ.;Scott JF.;Lu H.;Chen Z. .Orthorhombic strontium titanate in BaTiO3-SrTiO3 superlattices[J].Journal of Physics. Condensed Matter,2003(21):L305-L309.
[15] GREGGJM .The many surprises of ferroelectric superlsttices[J].Journal of Physics:Condensed Matter,2003,11
[16] Theory of polarization enhancement in epitaxial BaTiO_(3)/SrTiO_(3) superlattices[J].Applied physics letters,2003(10):1586-1588.
[17] A. Q. Jiang;J. F. Scott;Huibin Lu;Zhenghao Chen .Phase transitions and polarizations in epitaxial BaTiO_(3)/SrTiO_(3) superlattices studied by second-harmonic generation[J].Journal of Applied Physics,2003(2):1180-1185.
[18] Tong F Q;Yu W X;Liu F et al.Microstructural study of BaTiO3/SrTiO3 superlattices[J].Materials Science and Engineering,2003,B98:6.
[19] Juho Kim;Youngnam Kim;Young Sung Kim;Jaichan Lee;Leejun Kim;Donggeun Jung .Large nonlinear dielectric properties of artificial BaTiO_(3)/SrTiO_(3) superlattices[J].Applied physics letters,2002(19):3581-3583.
[20] Toru Shimuta;Osamu Nakagawara;Takahiro Makino;Seiichi Arai;Hitoshi Tabata;Tomoji Kawai .Enhancement of remanent polarization in epitaxial BaTiO_(3)/SrTiO_(3) superlattices with "asymmetric" structure[J].Journal of Applied Physics,2002(4):2290-2294.
[21] Dubourdieu C;Pantou P;Weiss F et al.Structural and dielectric properties of epitaxial (BaTiO3/SrTiO3)15 superlattices growth by MOCVD[J].Ferroelectrics,2002,268:137.
[22] Nakagawara O.;Shimuta T.;Makino T.;Arai S.;Tabata H.;Kawai T. .Dependence of dielectric and ferroelectric behaviors on growth orientation in epitaxial BaTiO3/SrTiO3 superlattices[J].Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology,2002(3/4):397-401.
[23] HUA;Tien C;Li X J et al.X-ray differaction pattern of quasiperiodic(Fibonacci) Nb-Cu superlattices[J].Physics Letters,1986,A199:313.
[24] LEE J S;Kang M I;Kim S et al.Growth of zinc oxide nanowires by thermal evaporation on vicinal Si(100) substrate[J].Journal of Crystal Growth,2003,249:201.
[25] Li Y S;Lee C Y;Tseng Y T .Copper-catalyzed ZnO nanowires on silicon (100) grown by vapor-liquid-solid pro cess[J].Journal of Crystal Growth,2003,247:357.
[26] OGATA K;Maejima K;Fujita S et al.Growth mode control of ZnO toward nanorod structures or high-quility layered structures by metal-organic vapor phase epitaxy[J].Journal of Crystal Growth,2003,248:25.
[27] Liu Y K;Liu Z;Wang G H .Synthesis and characterization of ZnO nanorods[J].Journal of Crystal Growth,2003,252:213.
[28] Sun XM.;Deng ZX.;Li YD. .Self-organized growth of ZnO single crystal columns array[J].Materials Chemistry and Physics,2003(1):366-370.
[29] Wu HZ.;Qiu DJ.;Cai YJ.;Xu XL.;Chen NB. .Optical studies of ZnO quantum dots grown on Si(001)[J].Journal of Crystal Growth,2002(1/2):50-55.
[30] Wang Z;Li H L .Highly ordered zinc oxide nanotubular synthesized within the anodic aluminum oxide template[J].Journal of Applied Physiology,2002,A74:201.
[31] Deng H;Zhou X Y;Jiang B.Self-organized ZnO thin film design and morphology control[J].Journal of Luminescence
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:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%