53 research outputs found
Absence of Colossal Magnetoresistance in the Oxypnictide PrMnAsO0.95F0.05
ACKNOWLEDGMENTS This research is supported by the EPSRC (Research Grant EP/ L002493/1). We also acknowledge STFC-GB for provision of beamtime at ILL and ESRF.Peer reviewedPublisher PD
Persistence of the valence bond glass state in the double perovskites Ba2-xSrxYMoO6
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Synthesis and characterisation of biologically compatible TiO2 nanoparticles
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Changes in 2-fluoro-2-deoxy-D-glucose incorporation, hexokinase activity and lactate production by breast cancer cells responding to treatment with the anti-HER-2 antibody trastuzumab
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Enhanced Oxide Ion Conductivity by Ta Doping of Ba3Nb1-xTaxMoO8.5
Open Access via the ACS Agreement Acknowledgments ARTICLE SECTIONS Experiments at the ISIS Neutron and Muon Source were supported by a beamtime allocation XB2190003 from the Science and Technology Facilities Council. Data are available at https://doi.org/10.5286/ISIS.E.RB2190003-1. The authors also thank the University of Aberdeen for provision of a studentship for Brent Sherwood.Peer reviewedPublisher PD
A high temperature neutron diffraction study of the double perovskite Ba 2 154SmMoO 6
Acknowledgments We acknowledge STFC for beam time provision and the University of Aberdeen for provision of a studentship (TKW)Peer reviewedPublisher PD
Variable temperature study of the crystal and magnetic structures of the giant magnetoresistant materials LMnAsO (L=La, Nd)
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Variable Temperature Neutron Diffraction Study of the Oxide Ion Conductor Ba3VWO8.5
Acknowledgements We thank the UK Science and Technology Facilities Council (STFC) for provision of neutron beamtime at the ILL. This research was supported by the Leverhulme trust (RPG-2017-351 and DS-2017-073). DNT, a Leverhulme Trust Doctoral Scholar, is part of the 15 PhD scholarships of the “Leverhulme Centre for Doctoral Training in Sustainable Production of Chemicals and Materials” at the University of Aberdeen (Scotland, United Kingdom). AG is supported by the Commonwealth Scholarship CommissionPeer reviewedPostprin
Enhanced Oxygen Ion Conductivity and Mechanistic Understanding in Ba3Nb1-xVxMoO8.5
Funding Sources This research was supported by the Leverhulme trust and the University of Aberdeen. ACKNOWLEDGMENT We also acknowledge STFC-GB for provision of beamtime at ISIS.Peer reviewedPostprin
Magnetic Phase Separation in the Oxypnictide Sr2Cr1.85 Mn1.15As2O2
The authors thank the U.K. Science and Technology Facilities Council (STFC) for provision of neutron beamtime at the ILL under the experiment code 5-31-2665. Data are available from ILL at DOI:10.5291/ILL-DATA.5-31-2665.Peer reviewedPublisher PD
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