標題: Preparation of a BiFeO(3)/LaNiO(3) multiferroic oxide superlattice structure by RF magnetron sputtering
作者: Liu, Yen-Ting
Chiu, Shang-Jui
Lee, Hsin-Yi
Chen, San-Yuan
材料科學與工程學系
加速器光源科技與應用學位學程
Department of Materials Science and Engineering
Master and Ph.D. Program for Science and Technology of Accelrrator Light Source
公開日期: 25-十二月-2011
摘要: Artificial superlattices consisting of multiferroic BiFeO(3) (BFO) and conductive LaNiO(3) (LNO) were grown epitaxially on a Nb-doped SrTiO(3) (STO) (001) single-crystal substrate at temperatures in a range 560-810 degrees C with a RF magnetron sputtering system. The superlattice contained 30 periods of symmetric BFO/LNO bilayers with a thickness of 2 nm of each individual layer. Ferroelectric and conductive superlattice materials of this type can serve for an investigation of the strain dependence of ferroelectric properties of BFO layers in superlattice structures. Measurements of X-ray reflectivity and X-ray diffraction at high resolution were employed to characterize the microstructure of these films. The formation of a superlattice structure was confirmed by the appearance of Bragg peaks separated by Kiessig fringes in the X-ray reflectivity curve and a diffraction pattern. The clearly discernible main feature and satellite features on both sides of the substrate feature about the (002) STO Bragg peak indicate the high quality of the BFO/LNO artificial superlattice structure formed on a STO substrate at all deposition temperatures. X-ray measurements show that these superlattice films become subject to greater compressive strain in the in-plane direction, and possess increased crystalline quality when increasing the deposition temperature to 660 degrees C. The measurement of hysteresis loops shows that the largest remanent polarization (P(r)) occurs at 660 degrees C. (C) 2011 Elsevier B.V. All rights reserved.
URI: http://dx.doi.org/10.1016/j.surfcoat.2011.08.030
http://hdl.handle.net/11536/15353
ISSN: 0257-8972
DOI: 10.1016/j.surfcoat.2011.08.030
期刊: SURFACE & COATINGS TECHNOLOGY
Volume: 206
Issue: 7
起始頁: 1666
結束頁: 1672
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