欢迎登录材料期刊网

材料期刊网

高级检索

本文综述了RE(RE=Y,Nd)BCO高温超导体厚膜在MgO基片上液相外延生长(Liquid Phase Epitaxy,LPE)的初始阶段研究.外延生长初始阶段直接发生在种膜或者基片上,是整个生长过程最为特殊的阶段,对整个生长过程和晶体质量都有很大的影响.在不同生长条件下,探讨此阶段中熔体/厚膜/种膜/基板间的相互依赖关系及对生长机制的影响,包括:籽晶的部分溶化,基片的回溶,晶粒的优先溶化/生长, 熔体包裹物的形成以及异质种膜外延生长的机制等.

参考文献

[1] 杨树人;丁墨元.外延生长技术[M].北京:国防工业出版社,1992:4-5.
[2] 饶海波,成建波,高涛,黄宗琳.Cr,Ca∶YAG的液相外延生长[J].光学学报,2002(01):107-109.
[3] 杨进华,高欣,李忠辉,吴根柱,张兴德.液相外延生长高质量大功率InGaAsP/GaAs半导体激光器研究[J].兵工学报,2001(02):214-217.
[4] 黄仕华,何景福,陈建才,雷春红.碲镉汞的液相外延生长[J].半导体学报,2001(05):613-617.
[5] Yoshida M;Nakamoo T;Kitamura T et al.Critical Currents of YBa2Cu3Oy Thick Films Prepared by Liquid Phase Epitaxial Growth[J].Applied Physics Letters,1994,65:1714.
[6] Scheel H J;Klemenz C;Reinhar F K et al.Monosteps on Extremely Flat YBa2Cu3O7-x Surfaces Grown by Liquid-phase Epitaxy[J].Applied Physics Letters,1994,65:901.
[7] Klemenz C;Scheel H J .Liquid Phase Epitaxy of High-Tc Superconductors[J].Journal of Crystal Growth,1993,129:421.
[8] Kakimoto K.;Izumi T.;Shiohara Y.;Sugawara Y. .Initial growth mechanism of YBCO films in liquid phase epitaxy process[J].Physica, C. Superconductivity and its applications,2000(3/4):249-258.
[9] Nomura K;Hoshi S;Yao X 等.High Quality YBa2Cu3O7?δ Film Prepared by Liquid Phase Epitaxy[J].The Japan Institute of Metals,2000,64:323.
[10] Yamada Y .Liquid-phase Epitaxy Processing of RBa2Cu3O7-x[J].Superconductor Science and Technology,2000,13:82.
[11] Takagi A.;Hirabayashi I.;Mizutani U.;Wen JG. .Growth mode dependence of microstructures and superconducting properties of Nd1+xBa2-xCu3Oy thick films prepared by liquid-phase epitaxy[J].Journal of Crystal Growth,1998(1/2):71-79.
[12] Miura S;Hashimoto K;Wang F 等.Structural and Electrical Properties of Liquid Phase Epitaxially Grown Y1Ba2Cu3Ox Films[J].PHYSICA C,1997,278:201.
[13] Gornert P .Crystal Growth and Crystalline Layer of High Temperature Superconductors: Characterization and Application[J].Crystal Research and Technology,1997,32:7.
[14] Belt R F;Ings J;Diercks G .Superconductor Film growth on LaGaO3 Substrates by Liquid Phase epitaxy[J].Applied Physics Letters,1990,56:1805.
[15] Dubs C;Fischer K;Gurnert P .Liquid Phase Epitaxy of YBa2Cu3O7-x on NdGaO3 and LaGaO3 Substrates[J].Journal of Crystal Growth,1992,123:611.
[16] Yamada Y.;Hirabayashi I. .Liquid phase epitaxy of YBa2Cu3O7-x film: exploration of new seed layer materials and additives in the solvent[J].Journal of Crystal Growth,2001(1):343-347.
[17] Krauns Ch;Tagami M;Yamada Y.Wetting between Prospective Crucible Materials and the Ba-Cu-O melt[J].Journal of Materials Research,1994(09):1513.
[18] Y. Kanamori;Y. Shiohara .Effect of temperature gradient in the solution on spiral growth of Yba_2Cu_3O_(7-x) bulk single crystals[J].Journal of Materials Research,1996(11):2693-2697.
[19] Nomura K;Hoshi S;Nakamura Y 等.Growth of Large REBa2Cu3Oy(RE=Y, Yb) Film of 2 Inch Diameter by Liquid Phase Epitaxy[J].Japanese Journal of Applied Physics,2001,40:L1362.
[20] Ishida Y;Kimura T;Kakimoto K 等.Liquid Phase Epitaxy of YBa2Cu3Ox on MgO Substrates with Seed Films[J].PHYSICA C,1997,292:264.
[21] KAKIMOTO K;Ishida Y;Kimura T.Process of 10th International Symposium On Superconductivity(ISS '97)[M].Springer Tokyo,1998:1037.
[22] Ishida Y;Kimura T;Kakimoto K 等.Liquid phase epitaxy of Y on MgO Substrate with Seed Films[J].PHYSICA C,1997,292:264.
[23] Turnbull D.[M].Liquids:Structure Properties Solid Interaction,1965:14.
[24] Izumi T;Kakimoto K;Nomura K et al.Preferential growth mechanism of YBCO film on MgO substrate in initial stage of LPE growth[J].Journal of Crystal Growth,2000,219:228.
[25] Nomura K;Hoshi S;Nakamura Y 等.Initial Growth Mechanism of YBa2Cu3Oy Crystal on MgO Substrate by Liquid-phase Epitaxy[J].Journal of Materials Research,2001,16:2947.
[26] Nomura K.;Yao X.;Nakamura Y.;Izumi T.;Shiohara Y.;Hoshi S. .Growth mechanism of RE-Ba-Cu-O film on MgO substrate by liquid phase epitaxy[J].Physica, C. Superconductivity and its applications,2001(Pt.2):1377-1381.
[27] Bennema P;Gilmer G H;Crystal Growth.An Introduction[A].Amsterdam The Netherlands,1973:263.
[28] Nomura K;Hoshi S;Yao X 等.Preferential growth mechanism of REBa2Cu3Oy(RE=Y,Nd) crystal on MgO Substrate by Liquid Phase Epitaxy[J].Journal of Materials Research,2001,16:979.
[29] Kakimoto K.;Nakamura Y.;Izumi T.;Fujino K.;Ohmatsu K. Shiohara Y.;Hobara N. .Y-system coated conductor on metal substrate by LPE method[J].Physica, C. Superconductivity and its applications,2000(Pt.4):2489-2490.
[30] KAKIMOTO K;Hobara N;Krauns C.in advances in superconductivity Ⅺ[A].Springer-Verlag,Tokyo Japan,2000:592.
[31] Nomura K.;Yao X.;Kakimoto K.;Izumi T.;Nakamura Y.;Shiohara Y.;Hoshi S. .Preferential growth of RE-Ba-Cu-O crystal by liquid phase epitaxy process[J].Journal of Crystal Growth,2001(1):384-390.
[32] Hwang D M;Ravi T S;Ramesh R et al.Application of a Near Coincidence Site Lattice Theory to the Orientations of YBa2Cu3O7-x Grains on(001) MgO Substrates[J].Applied Physics Letters,1990,57:1690.
[33] Bollmann W.Crystal Defects and Crystalline Interfaces[M].Berlin:Springer-Verlag,1970
[34] Bollmann W.Crystal Lattices, Interface, Matrices[M].Published by the author Geneva,1982
[35] Jorgensen J D;Beno M A;Hinks D G 等.Oxygen Ordering and the Orthorhombic-to-tetragonal Phase Transition in YBa2Cu3O7-x[J].Physical Review B,1987,36:3608.
[36] Yao X.;Nomura K.;Nakamura Y.;Izumi T.;Shiohara Y. .Growth mechanism of high peritectic temperature Nd1+xBa2-xCu3O7-delta thick film on low peritectic temperature YBa2Cu3O7-delta seed film by liquid phase epitaxy[J].Journal of Crystal Growth,2002(4):611-615.
[37] Yao X;Nomura K;Huang D X 等.YBCO thin-film-seeded NdBCO Thick-film Grown by Liquid Phase Epitaxy[J].PHYSICA C,2002,378-381:1209-1212.
[38] Huang D X;Yao X;Nomura K 等.Mechanism of NdBCO Film Growth on YBCO-seeded MgO Substrate Using Liquid Phase Epitaxy[J].PHYSICA C,2002,378-381:980-983.
[39] Huang D X;Yao X;Nomura K 等.Mechanism of Liquid-phase Epitaxy Growth of NdBCO Film from Low-peritectic-temperature YBCO Seed film[J].Journal of Materials Research,2002,17:4.
[40] Cahn R W .Melting and the Surface[J].NATURE,1986,323:668-9.
[41] Cahn R W .A Final Limit to Superheating[J].Nature,1988,334:17.
[42] Cahn R W .Phase Transitions: New ideas for the Melting pot[J].Nature,1989,342:630.
[43] Daeges J;Gleiter H;Perepezko J H .Superheating of Metal Crystals[J].Physics Letters A,1986,119:79-82.
[44] Zhang DL;Cantor B .Melting Behavior of In and Pb Particles Embedded in an Al Matrix[J].Acta Materialia,1991,39:1591-1602.
[45] Grabak L;Bohr J .Superheating and Supercooling of lead Precipitates in Aluminum[J].Physical Review Letters,1990,64:934-937.
[46] Chattopadhyay K;Goswami R .Melting and Superheating of Metals and Alloys[J].Progress in Materials Science,1997,42:287-300.
[47] Hu J.;Yao X.;Rao QL. .Real-time observation of the melting process of YBCO thin film on MgO substrate[J].Journal of Physics. Condensed Matter,2003(43):7149-7154.
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%