| Literature DB >> 22863085 |
Huang-Wei Chang1, Fu-Te Yuan, Chih-Wei Shih, Ching-Shun Ku, Ping-Han Chen, Chang-Ren Wang, Wen-Cheng Chang, Shien-Uang Jen, Hsing-Yi Lee.
Abstract
Highly textured BiFeO3(001) films were formed on L10-FePt(001) bottom electrodes on glass substrates by sputtering at reduced temperature of 400°C. Good electric polarization 2Pr = 80 and 95 μC/cm2, comparable to that of the reported epitaxial films, and coercivity Ec = 415 and 435 kV/cm are achieved in the samples with 20-nm- and 30-nm-thick electrodes. The BiFeO3(001) films show different degrees of compressive strain. The relation between the variations of strain and 2Pr suggests that the enhancement of 2Pr resulted from the strain-induced rotation of spontaneous polarization. The presented results open possibilities for the applications based on electric-magnetic interactions.Entities:
Year: 2012 PMID: 22863085 PMCID: PMC3477037 DOI: 10.1186/1556-276X-7-435
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1XRD patterns of the optimized 20- and 30-nm-thick L1-FePt bottom electrodes.
Figure 2HRXRD patterns and SEM images. (a) HRXRD patterns of 200-nm-thick BFO films grown on 20- and 30-nm-thick L10-FePt bottom electrodes at a Td of 400 °C. SEM images of BFO films with (b) 20- and (c) 30-nm-thick L10-FePt bottom electrodes.
Figure 3Electrical P-E curves of 200-nm-thick BFO films grown on 20- and 30-nm-thick L1-FePt bottom electrodes. The films were grown at a Td of 400°C.
Figure 4Dependence of residual strain on sinfor 200-nm-thick BFO films. The films were grown on (a) 20- and (b) 30-nm-thick L10-FePt bottom electrodes at a Td of 400 °C.
Figure 5Dependence of current density on applied electric field of 200-nm-thick BFO films. The films were grown on 20- and 30-nm-thick L10-FePt bottom electrodes at a Td of 400°C.