Page 118 - Read Online
P. 118

Viehland. Microstructures 2023;3:2023016  https://dx.doi.org/10.20517/microstructures.2023.10  Page 5 of 5

               7.       Randall CA, Barber DJ, Whatmore RW. In situ TEM experiments on perovskite-structured ferroelectric relaxor materials. J Microsc
                   1987;145:275-91.
               8.       Viehland D, Kim M, Xu Z, Li J. Long-time present tweedlike precursors and paraelectric clusters in ferroelectrics containing strong
                   quenched randomness. Appl Phys Lett 1995;67:2471-3.  DOI
               9.       Khachaturyan AG, Shapiro SM, Semenovskaya S. Adaptive phase formation in martensitic transformation. Phys Rev B Condens
                   Matter 1991;43:10832-43.  DOI  PubMed
               10.      Bratkovsky AM, Salje EKH, Heine V. Overview of the origin of tweed texture. Phase Transit 1994;52:77-83.  DOI
               11.      Kartha S, Castán T, Krumhansl JA, Sethna JP. Spin-glass nature of tweed precursors in martensitic transformations. Phys Rev Lett
                   1991;67:3630-3.  DOI  PubMed
               12.      Bai F, Li JF, Viehland D. Domain hierarchy in annealed (001)-oriented Pb(Mg Nb )O -x%PbTiO  single crystals. Appl Phys Lett
                                                                             3
                                                                                     3
                                                                       1⁄3
                                                                          2⁄3
                   2004;85:23135.  DOI
               13.      Bai F, Li J, Viehland D. Domain engineered states over various length scales in (001)-oriented Pb(Mg Nb )O -x%PbTiO  crystals:
                                                                                            3
                                                                                         2⁄3
                                                                                      1⁄3
                                                                                                   3
                   electrical history dependence of hierarchal domains. J Appl Phys 2005;97:054103.  DOI
               14.      Cao H, Li J, Viehland D, Xu G. Fragile phase stability in (1-x)Pb(Mg Nb O )-xPbTiO  crystals: a comparison of [001] and [110]
                                                                 1⁄3  2⁄3  3  3
                   field-cooled phase diagrams. Phys Rev B 2006;73:184110.  DOI
               15.      Jin YM, Wang YU, Khachaturyan AG, Li JF, Viehland D. Conformal miniaturization of domains with low domain-wall energy:
                   monoclinic ferroelectric states near the morphotropic phase boundaries. Phys Rev Lett 2003;91:197601.  DOI  PubMed
               16.      Jin YM, Wang YU, Khachaturyan AG, Li JF, Viehland D. Adaptive ferroelectric states in systems with low domain wall energy:
                   tetragonal microdomains. J Appl Phys 2003;94:3629-40.  DOI
               17.      Viehland D, Salje EKH. Domain boundary-dominated systems: adaptive structures and functional twin boundaries. Adv Phys
                   2014;63:267-326.  DOI
               18.      Li F, Zhang S, Yang T, et al. The origin of ultrahigh piezoelectricity in relaxor-ferroelectric solid solution crystals. Nat Commun
                   2016;7:13807.  DOI  PubMed  PMC
               19.      Li F, Lin D, Chen Z, et al. Ultrahigh piezoelectricity in ferroelectric ceramics by design. Nat Mater 2018;17:349-54.  DOI  PubMed
               20.      Li F, Cabral M, Xu B, et al. Giant piezoelectricity of Sm-doped Pb(Mg Nb )O -PbTiO  single crystals Science 2019;364:264-8.
                                                                  1/3  2/3  3  3
                   DOI
   113   114   115   116   117   118   119   120   121   122   123