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A Rietveld refinement method for angular- and wavelength-dispersive neutron time-of-flight powder diffraction data. | LitMetric

A Rietveld refinement method for angular- and wavelength-dispersive neutron time-of-flight powder diffraction data.

J Appl Crystallogr

Chair of Solid-State and Quantum Chemistry, Institute of Inorganic Chemistry, RWTH Aachen University, Aachen, D-52056, Germany.

Published: December 2015

AI Article Synopsis

  • The paper presents a new two-dimensional extension of the Rietveld refinement method that improves neutron time-of-flight powder diffraction data analysis by considering both diffraction angle (2θ) and wavelength (λ).
  • This method eliminates common data-reduction steps, retaining high-resolution information that is usually lost during integration.
  • A case study demonstrates its effectiveness using simulated and real diffraction data, showing that the approach offers excellent results and could be integrated into existing Rietveld software.

Article Abstract

This paper introduces a two-dimensional extension of the well established Rietveld refinement method for modeling neutron time-of-flight powder diffraction data. The novel approach takes into account the variation of two parameters, diffraction angle 2θ and wavelength λ, to optimally adapt to the varying resolution function in diffraction experiments. By doing so, the refinement against angular- and wavelength-dispersive data gets rid of common data-reduction steps and also avoids the loss of high-resolution information typically introduced by integration. In a case study using a numerically simulated diffraction pattern of RhFeN taking into account the layout of the future POWTEX instrument, the profile function as parameterized in 2θ and λ is extracted. As a proof-of-concept, the resulting instrument parameterization is then utilized to perform a typical refinement of the angular- and wavelength-dispersive diffraction pattern of CuNCN, yielding excellent residuals within feasible computational efforts. Another proof-of-concept is carried out by applying the same approach to a real neutron diffraction data set of CuNCN obtained from the POWGEN instrument at the Spallation Neutron Source in Oak Ridge. The paper highlights the general importance of the novel approach for data analysis at neutron time-of-flight diffractometers and its possible inclusion within existing Rietveld software packages.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4665658PMC
http://dx.doi.org/10.1107/S1600576715016520DOI Listing

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