Research data supporting "Structural Phase Transitions and Magnetic Characterization of Ba₂GdNbO₆ for Low-Temperature Magnetocaloric Refrigeration"
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Description
This data repository contains the data associated with the paper "Structural phase transitions and magnetic characterization of Ba₂GdNbO₆ for low-temperature magnetocaloric refrigeration", published in the Chemistry of Materials Journal of the American Chemical Society in 2025. There are ReadMe files included in the dataset.
Authors: Berardi, F.; Nagle-Cocco, L. A. V.; Steele, J. M. A.; Zhang, X.; Liu, C.; Fischer, H. E.; Dutton, S. E.
For any queries, contact Fiamma Berardi (fb560@cam.ac.uk) or Sian E. Dutton (sed33@cam.ac.uk).
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Diffraction data analysis was performed using Topas Academic (v. 5 and v. 7)
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Except where otherwised noted, this item's license is described as Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0)
Sponsorship
Engineering and Physical Sciences Research Council (EP/M000524/1)
EPSRC (EP/R513180/1)
Engineering and Physical Sciences Research Council (EP/L015978/1)
EPSRC (EP/T028580/1)
EPSRC (EP/R513180/1)
Engineering and Physical Sciences Research Council (EP/L015978/1)
EPSRC (EP/T028580/1)
The authors acknowledge funding from the UK Engineering and Physical Sciences Research Council (EPSRC) for the use of the Advanced Materials Characterization Suite (EP/M0005/24/1). F.B. acknowledges scholarships to pursue doctoral research from the Cambridge Trust and the Winton Programme for the Physics of Sustainability. L.A.V.N-C. acknowledges support from EPSRC (UK) (EP/R513180/1), and additional funding from the Cambridge Philosophical Society. J.M.A.S. acknowledges funding from the EPSRC Cambridge NanoCDT (EP/L015978/1), and support from the Faraday Institution NEXGENNA consortium. S.E.D. acknowledges funding from EPSRC (UK) (EP/T028580/1). We thank I11 beamline at Diamond Light Source, UK, for synchrotron PXRD measurements done under the Cambridge Block Allocation Group (BAG) for new materials characterization and structure-property relationships for a zero-carbon future (CY28349 and CY34243). The authors wish to thank Dr Farheen N. Sayed for organizing the BAG beamtime at Diamond Light Source. We acknowledge the Institut Laue-Langevin (ILL) for beamtime allocation under proposal 5-23-807.

