| Literature DB >> 28585548 |
Peng Gao1,2,3,4, Zhangyuan Zhang1,5, Mingqiang Li1,4, Ryo Ishikawa6, Bin Feng6, Heng-Jui Liu7, Yen-Lin Huang8, Naoya Shibata6, Xiumei Ma1, Shulin Chen1, Jingmin Zhang1, Kaihui Liu2,3,4, En-Ge Wang2,9, Dapeng Yu1,2,10, Lei Liao5, Ying-Hao Chu8,11, Yuichi Ikuhara6,12,13.
Abstract
Although the size effect in ferroelectric thin films has been known for long time, the underlying mechanism is not yet fully understood and whether or not there is a critical thickness below which the ferroelectricity vanishes is still under debate. Here, we directly measure the thickness-dependent polarization in ultrathin PbZr0.2Ti0.8O3 films via quantitative annular bright field imaging. We find that the polarization is significantly suppressed for films <10-unit cells thick (∼4 nm). However, approximately the polarization never vanishes. The residual polarization is ∼16 μCcm-2 (∼17%) at 1.5-unit cells (∼0.6 nm) thick film on bare SrTiO3 and ∼22 μCcm-2 at 2-unit cells thick film on SrTiO3 with SrRuO3 electrode. The residual polarization in these ultrathin films is mainly attributed to the robust covalent Pb-O bond. Our atomic study provides new insights into mechanistic understanding of nanoscale ferroelectricity and the size effects.Entities:
Year: 2017 PMID: 28585548 PMCID: PMC5467161 DOI: 10.1038/ncomms15549
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919
Figure 1Quantitative measurements of polarization in PZT thin film on SrTiO3 substrate.
This region is 24-unit cells thick. (a) A high angle annular field image of a substrate–film interface. The arrow shows the position of interface, TiO2 plane, between the first SrO and PbO planes. Inset: the interface is determined by the intensity profile. Scale bar, 1 nm. (b) The simultaneous recorded ABF image of the interface. Inset: enlarged view of PZT. The contrast is inverted for clarity. The polarization is upward, that is, pointing to the surface as denoted by the big arrow. Scale bar, 1 nm. (c) Schematic shows the projection of tetragonal PZT seen along [010] direction. d1 and d2 denote the long and short distances between Pb atoms (cyan) and O atoms (yellow) along the c direction; d3 and d4 denote the short and long distances between Zr/Ti atoms (green) and O atoms (yellow) along the c direction. Both SrTiO3 (STO) and PZT are expressed as ABO3 structure, where A represents for Sr and Pb, and B represents for Ti or Zr/Ti. The lattice constants c is calculated from the (d) A sublattice, and (e) B sublattice. (f) The calculated bond lengths d1 and d2 in the AO plane. (g) The calculated bond lengths d3 and d4 in the BO2 plane. (h) Mean of lattice c. The error bar is the s.d. (i) Mean of bond lengths of d1, d2, d3 and d4. The error bar is the s.d. (j) Averaged displacements of |d1–d2|/2 and |d3–d4|/2. The error bar is the s.d. (k) Mean of polarization calculated from the displacements in PbO plane, TiO2 plane and the total. The error bar is the s.d.
Figure 2Thickness-dependent atomic displacements in PZT/SrTiO3.
(a) An ABF image from a region with thickness of 6.5-unit cells. Scale bar, 0.5 nm. (b) Mean of displacements are calculated from of |d1–d2|/2 and |d3–d4|/2. The error bar is the s.d. (c) Mean of polarization calculated from the displacements. The error bar is the s.d. (d) An ABF image from a region with thickness of 4-unit cells. Scale bar, 0.5 nm. (e) Mean of displacements are calculated from of |d1-d2|/2 and |d3-d4|/2. The error bar is the s.d. (f) Mean of polarization calculated from the displacements. The error bar is the s.d. (g) An ABF image from a region with thickness of 1.5-unit cells. Scale bar, 0.5 nm. (h) Mean of displacements are calculated from of |d1-d2|/2 and |d3-d4|/2. The error bar is the s.d. (i) Mean of polarization calculated from the displacements. The error bar is the s.d.
Figure 3Thickness-dependent atomic displacements in PZT/SrRuO3/SrTiO3.
(a) An ABF image from a region with thickness of 8-unit cells. Scale bar, 0.5 nm. (b) Mean of displacements are calculated from of |d1–d2|/2 and |d3–d4|/2. The error bar is the s.d. (c) Mean of polarization calculated from the displacements. The error bar is the s.d. (d) An ABF image from a region with thickness of 4-unit cells. Scale bar, 0.5 nm. (e) Mean of displacements are calculated from of |d1–d2|/2 and |d3–d4|/2. The error bar is the s.d. (f) Mean of polarization calculated from the displacements. The error bar is the s.d. (g) An ABF image from a region with thickness of 2-unit cells. Scale bar, 0.5 nm. (h) Mean of displacements are calculated from of |d1–d2|/2 and |d3–d4|/2. The error bar is the s.d. (i) Mean of polarization calculated from the displacements. The error bar is the s.d.
Figure 4Thickness-dependent polarization.
(a) Calculated polarization is plotted as a function of the thickness. The error bar is the s.d. The dashed lines are plotted for eye guidance. (b) Comparison of the normalized polarization as a function of thickness with previous results. Solid red plot shows the predictions from mean-field Landau-type model for PZT from ref. 26. The solid green plot is first principle calculations for SrRuO3/BaTiO3/SrRuO3 (SRO/BTO/SRO) from ref. 12. The blue squares are experimentally measured values for SRO/PZT/SRO from ref. 16. The cyan circles are experimentally measured values for SRO/BTO/SRO from ref. 22. The magenta diamonds are experimentally measured values for SRO/BTO/SRO from ref. 15. The orange triangles are theoretical predictions for Pt/KNbO3/Pt (Pt/KNO/Pt) from ref. 32. The dark green stars are theoretical predictions for SRO/KNO/SRO from ref. 32. The purple triangles are experimentally measured values for BiFeO3/La0.67Sr0.33MnO3/SrTiO3 (BFO/LSMO/STO) from ref. 10. The dark yellow triangles are experimentally measured values for BFO/LSMO/STO from ref. 21. The orange and blue solid discs are from this work. (c) Calculated depolarizing field is plotted as a function of the thickness for PZT on SRO/STO. The density function theory results from ref. 13 showing the depolarizing fields for free standing 2-unit cells thick PbTiO3 (PTO), 2-unit cells thick PTO sandwiched between SRO electrodes, and 2-unit cells thick PTO sandwiched between Pt electrodes. (d) Displacements of Pb respective to O and Zr/Ti respective to O are plotted as a function of the thickness for PZT on STO. The error bars are the s.d. (e) An ABF image of 1.5-unit cells thick PZT on STO. The contrast has been inverted for clarity. The octahedron shifting to left in the PZT film is visible by the naked eye. The arrows showing the O are closer to the left Pb, causing the atomic displacements and polarization. Scale bar, 0.2 nm.