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Textured Ion-Beam Assisted Deposition: Magnesium Oxide Template on Non-Metallic Flexible Ceraflex for Epitaxial Growth of Perovskite Films

机译:纹理化的离子束辅助沉积:钙钛矿薄膜外延生长的非金属柔性Ceraflex上的氧化镁模板

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This paper reports on a systematic study of the development of bi-axiallytextured magnesium oxide (MgO) templates on flexible ceramic polycrystalline ceraflex substrates by ion-beam assisted deposition (IBAD) and the preliminary test of the growth of YBa_(2)Cu_(3)O_(7) on top. The rough surface of the original ceraflex, with a typical roughness of about 100 nm, presented a serious challenge in the development of textured IBAD-MgO. By a coating of multiple layers of spin-on-glass (SOG), the surface roughness has been reduced to about a few nanometers. After an amorphous Y_(2)O_(3) buffer had been deposited on multilayer SOG coated ceraflex, IBAD-MgO and homo-epitaxial MgO were grown with good in-plane texture of (DELTA)(phi) approx 9.3 deg An epitaxial SrTiO_(3) film was subsequently deposited on this textured template with in-plane (DELTA)(phi) approx 10.8 deg Finally, an epitaxial YBa_(2)Cu_(3)O_(7) superconducting film was grown on LaMnO_(3) buffered and IBAD-MgO textured ceraflex, and AC susceptibility examination indicated the transition temperature was 88 K. The results have demonstrated that an IBAD-MgO textured template on ceraflex can be used for the epitaxial growth of perovskite films.
机译:本文报道了通过离子束辅助沉积(IBAD)在柔性陶瓷多晶Ceraflex基板上开发双轴织构氧化镁(MgO)模板的系统研究以及YBa_(2)Cu_(3)生长的初步测试)O_(7)在顶部。原始Ceraflex的粗糙表面通常具有约100 nm的粗糙度,这对纹理化IBAD-MgO的开发提出了严峻的挑战。通过多层旋涂玻璃(SOG)涂层,表面粗糙度已降低到约几纳米。在多层SOG涂层的ceraflex上沉积了无定形Y_(2)O_(3)缓冲液后,生长出IBAD-MgO和同外延MgO,并具有约9.3度的Δφ的良好平面内织构。 (3)随后将膜以约10.8度的面内Δφ沉积在该纹理化模板上。最后,在缓冲的LaMnO_(3)上生长外延YBa_(2)Cu_(3)O_(7)超导膜。 IBAD-MgO织构的Ceraflex,AC磁化率测试表明转变温度为88K。结果表明,Ceraflex上的IBAD-MgO织构的模板可用于钙钛矿薄膜的外延生长。

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