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      Optimisation of functional properties in lead-free BiFeO3–BaTiO3 ceramics through La3+ substitution strategy

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          Abstract

          The structure and key functional properties of a promising lead-free solid solution, BiFeO 3–BaTiO 3, have been optimised by controlling chemical homogeneity via La-substitution strategies and thermal treatment.

          Abstract

          The paper is concerned with the structure and functional properties of bismuth ferrite–barium titanate, 0.75BiFeO 3–0.25BaTiO 3, solid solutions. Such materials are attracting attention due to their potential applications in high temperature piezoelectric transducers for use in demanding environments in process monitoring, for example. The article focuses on the mechanism of incorporation of the minor dopant lanthanum oxide, either in the form of isovalent or donor-type substitution. It is shown that the development of chemical heterogeneity in the form of core–shell grain microstructures, linked to donor-type substitution, plays a key role in controlling the functional behaviour. The use of an air-quenching procedure results in dramatic improvements in the ferroelectric properties, accompanied by a transformation of the shell regions from a pseudo-cubic, Pmm, to rhombohedral, R3 c, structure. These observations are interpreted in terms of a novel mechanism involving nanoscale phase separation in the ‘shell’ regions during slow cooling, which impedes the development of ferroelectric ordering and leads to the formation of a nano-polar relaxor ferroelectric state. The work highlights the importance of immiscibility in bismuth-based ferroelectric perovskite solid solutions and illustrates how their ferroelectric, piezoelectric, dielectric energy storage, ferromagnetic and magneto-electric properties can be tuned by consideration of the substitution mechanism and control of thermal processing parameters.

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          Multiferroic magnetoelectric composites: Historical perspective, status, and future directions

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            Physics and Applications of Bismuth Ferrite

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              Perspective on the Development of Lead-free Piezoceramics

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                Author and article information

                Journal
                JMCAET
                Journal of Materials Chemistry A
                J. Mater. Chem. A
                Royal Society of Chemistry (RSC)
                2050-7488
                2050-7496
                2018
                2018
                : 6
                : 13
                : 5378-5397
                Affiliations
                [1 ]School of Materials
                [2 ]University of Manchester
                [3 ]Manchester
                [4 ]UK
                [5 ]Center for Functionalized Magnetic Materials (FunMagMa)
                [6 ]Institute of Physics Mathematics and Informational Technologies
                [7 ]Immanuel Kant Baltic Federal University
                [8 ]Kaliningrad
                [9 ]Russia
                [10 ]Diamond Light Source Ltd.
                [11 ]Harwell Science and Innovation Campus
                Article
                10.1039/C7TA09497C
                20d76f40-daa8-475c-aa01-1ed6d647ec5f
                © 2018

                http://rsc.li/journals-terms-of-use

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