High-pressure single-crystal neutron diffraction to 10 GPa by angle-dispersive techniques

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Abstract

Techniques have been developed that allow the measurement of accurate single-crystal neutron-diffraction data at pressures up to 10 GPa, using angle-dispersive methods. High-quality data have been collected up to 10 GPa, to a resolution of sinθ/λ ≈ 1.5 Å -1, from samples of size 3-4 mm 3. This article presents the methods developed to mount and centre the sample accurately on the instrument; to reduce the background and hence increase the precision of the measured reflection intensities; and to increase further the accessible region of reciprocal space with a single sample loading. Developments are also highlighted, with a view to increasing the range of both science and pressures that can be achieved at the Institut Laue-Langevin reactor source using single-crystal techniques. © 2011 International Union of Crystallography Printed in Singapore-all rights reserved.

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Bull, C. L., Guthrie, M., Archer, J., Fernandez-Diaz, M. T., Loveday, J. S., Komatsu, K., … Nelmes, R. J. (2011). High-pressure single-crystal neutron diffraction to 10 GPa by angle-dispersive techniques. Journal of Applied Crystallography, 44(4), 831–838. https://doi.org/10.1107/S0021889811021819

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