2018
DOI: 10.1002/ente.201800175
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Probing the Martensitic Microstructure of Magnetocaloric Heusler Films by Synchrotron Diffraction

Abstract: First‐order, magnetocaloric materials are promising for energy efficient solid‐state cooling because of their high entropy changes, but they have the drawback of a hysteresis due to the nucleation and growth of the involved phases. Here, synchrotron based X‐ray diffraction is used to investigate epitaxial Ni−Mn−Ga−Co thin films grown on Pb(Mg1/3Nb2/3)0.72Ti0.28O3 (PMN‐PT). This integral method is used to test several hypotheses regarding structure and orientation of the martensite, whose nucleation was propose… Show more

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Cited by 2 publications
(1 citation statement)
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“…Diffraction experiments are decisive when twinning at the nanoscale occurs, creating a modulated structure. [ 24a,44 ] Over the years, many studies were performed with an increasing number of fit parameters used to describe the diffraction pattern. [ 17c,24a,45 ] With our scale‐bridging approach, one key parameter is sufficient: the tetragonal distortion ( c T / a T ) of the smallest building blocks, which is the well‐known parameter describing the transformation along the Bain distortion.…”
Section: The Quest: Identifying Twin Boundaries and Building Blocks Omentioning
confidence: 99%
“…Diffraction experiments are decisive when twinning at the nanoscale occurs, creating a modulated structure. [ 24a,44 ] Over the years, many studies were performed with an increasing number of fit parameters used to describe the diffraction pattern. [ 17c,24a,45 ] With our scale‐bridging approach, one key parameter is sufficient: the tetragonal distortion ( c T / a T ) of the smallest building blocks, which is the well‐known parameter describing the transformation along the Bain distortion.…”
Section: The Quest: Identifying Twin Boundaries and Building Blocks Omentioning
confidence: 99%