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Recovering local structure information from high-pressure total scattering experiments. | LitMetric

Recovering local structure information from high-pressure total scattering experiments.

J Appl Crystallogr

ISIS Neutron and Muon Facility, Rutherford Appleton Laboratory, Didcot OX11 0QX, United Kingdom.

Published: December 2021

AI Article Synopsis

  • High pressure is utilized in crystallography to study the structure and phase behavior of materials, but traditional methods face challenges due to interference from the pressure-transmitting medium (PTM) used in experiments.
  • Researchers have developed a technique to remove the contamination caused by the PTM, specifically for neutron diffraction data, using advanced correction methods.
  • The new method has successfully produced accurate high-pressure data for simple crystalline materials and achieved the first detailed local structure analysis of α-quartz under hydro-static pressure.

Article Abstract

High pressure is a powerful thermodynamic tool for exploring the structure and the phase behaviour of the crystalline state, and is now widely used in conventional crystallographic measurements. High-pressure local structure measurements using neutron diffraction have, thus far, been limited by the presence of a strongly scattering, perdeuterated, pressure-transmitting medium (PTM), the signal from which contaminates the resulting pair distribution functions (PDFs). Here, a method is reported for subtracting the pairwise correlations of the commonly used 4:1 methanol:ethanol PTM from neutron PDFs obtained under hydro-static compression. The method applies a molecular-dynamics-informed empirical correction and a non-negative matrix factorization algorithm to recover the PDF of the pure sample. Proof of principle is demonstrated, producing corrected high-pressure PDFs of simple crystalline materials, Ni and MgO, and benchmarking these against simulated data from the average structure. Finally, the first local structure determination of α-quartz under hydro-static pressure is presented, extracting compression behaviour of the real-space structure.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8662973PMC
http://dx.doi.org/10.1107/S1600576721009420DOI Listing

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