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单晶高温合金和低维氧化物功能材料显微结构表征及与性能的关系。

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Tang Y.L, Zhu Y.L*., Meng H, Zhang Y.Q., and Ma X.L. (2012): Misfit dislocations of anisotropic magnetoresistant Nd0.45Sr0.55MnO3 thin films grown on SrTiO3 (110) substrates. Acta mater. 60,5975-5983. Wang X, Zhu Y.L.*, Wang X.W., Zhang Y.Q., and Ma X.L.(2012): Microstructure of the potentially multiferroic Fe/BaTiO3 epitaxial interface. Phil. Mag., 92, 1733-1747. Wang X, Zhu Y.L.*, He M, Lu H.B., and Ma X.L. (2011): Structural and microstructural analyses of crystalline Er2O3 high-k films grown on Si (001) by laser molecular beam epitaxy. Acta Materialia, 59, 1644-1650. Liang J.J, Wei H, Zhu Y.L., Sun X.F., T Jin, Hu Z.Q., Dargusch M.S., Yao X. (2011): Influence of Co addition on constituent phases and performance of a NiCrAlYRe alloy system. Surface and coating technology, 205(21-22), 4968-4979. Liang J.J, Wei H, Zhu Y.L., Sun X.F., Hu Z.Q., Dargusch M.S., Yao X. (2011): Phase constitutes and thermal expansion behavior of a NiCrAlY Re coating alloy. J. Mater. Sci., 46, 500-508. Liang J.J, Wei H, Zhu Y.L., Sun X.F., Hu Z.Q., Dargusch M.S., Yao X. (2011): Influence of Re on the properties of a NiCoCrAlY coating alloy. J. Mater. Sci. Technol, 27(5), 408-414. Xu G, Zhu Y.L., and Ma X.L., (2011): Cu2S nanowires and Mns/Cu2S nano-junctions derived from γ-MnS nanowires via selective cation exchange reaction. Phys. Stat. Sol. A, 208(1), 123-128. Zhu Y.L.*, Zheng S.J., Chen D., and Ma X.L., (2010): Microstructure Tuning of epitaxial BaTiO3-x thin films grown using laser molecular-beam epitaxy by varying the oxygen pressure. Thin Solid Films, 518, 3669-3673. Zhu Y.L.*, Wang X., Zhuo M.J., Zhang Y.Q., and Ma X.L., (2010): Dislocations in charge-ordered Pr0.5Ca0.5MnO3 epitaxial thin films prepared by two-step growth technique. Phil. Mag. Lett. 90(5), 323-336. Zhu Y.L.*, Zheng S.J., Ma X.L., Feigl L, Alexe M., Hesse D., and Vrejoiu I., (2010): Microstructural evolution of [PbZrxTi1-xO3/PbZryTi1-yO3]n epitaxial multilayers (x/y = 0.2/0.4, 0.4/0.6) in dependence on layer thickness. Phil. Mag. 90(10), 1359-1372. Wang X., Zhu Y.L.*, Mi S.B., Wang C., Lu H.B., and Ma X.L., (2010): Morphology and orientation of iron oxide precipitates in epitaxial BiFeO3 thin films grown under two non-optimized oxygen pressures. Phil. Mag. 90(34), 4551-4567. Zhu Y.L.*, Wang X., He M, Lu H.B., and Ma X.L., (2010): TEM investigation of Er2O3 thin films grown on Si (100) by laser MBE. Microsc. Microanal, 16(suppl 2), 1496-1497. Zheng S.J., Wang Y.J., Zhang B, Zhu Y.L., Liu C., Hu P., and Ma X.L., (2010): identification of MnCr2O4 nano-octahedron in catalyzing pitting corrosion of austenitic stainless steels. Acta mater. 58, 5070-5085. Wang X.W., Wang X., Zhang Y.Q., Zhu Y.L., Wang Z.J., and Zhang Z.D., (2010): Magnetic anisotropy and metal-insulator transition in SrRuO3 thin films at different growth temperature. Journal of Applied Physics, 107(11), 113925 - 113925-5. Wang X., Zhu Y. L.*, Ma X. L., Wang C., and Lu H. B., (2010): Misfit Strain Relaxation by Secondary Phase Formation in Multiferroic BiFeO3 Epitaxial Thin Films. Mater. Res. Soc. Symp. Proc. Vol. 1199C © 2010 Materials Research Society, 1199-F03-48. Feigl L., Zheng S.J., Birajdar B.I., Rodriguez B.J., Zhu Y. L., Alexe M., and Hesse D., (2009): Impact of high interface density on ferroelectric and structural properties of PbZr0.2Ti0.8O3/PbZr0.4Ti0.8O3 epitaxial multilaters. J. Phys. D: Appl. Phys, 42,085305. Zhu Y.L.*, (2007): Microstructural and magnetic properties of bulk La1-xPrxMnO3+d (x = 0.2, 0.3, 0.5). Phil. Mag. Lett. 87(2), 75-83. Zhu Y.L.*, Zhuo M.J., and Ma X.L., (2007): Microstructural characteristics in the BaTiO2.52 thin films showing metallic behavior. Materials letters, 61(10), 1971-1973. Vrejoiu I., Zhu Y.L., Le Rhun G., Schubert A., Hesse D., and Alexe M., (2007): Structure and properties of epitaxial ferroelectric PbZr0.4Ti0.6O3 /PbZr0.6Ti0.4O3 superlattices grown on SrTiO3 (001) by pulsed laser deposition, Applied Physics Letters, 90, 072909. Zhuo M.J., Zhu Y. L., Ma X. L., and Lu H.B., (2006): Misfit dislocation arrays at the interface between La0.9Sr0.1MnO3 films and vicinal SrTiO3 (001) substrates. Phil. Mag. Lett. 86 (8), 469-478.

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