Recovering local structure information from high-pressure total scattering experiments

Author:

Herlihy AnnaORCID,Geddes Harry S.ORCID,Sosso Gabriele C.ORCID,Bull Craig L.ORCID,Ridley Christopher J.,Goodwin Andrew L.,Senn Mark S.ORCID,Funnell Nicholas P.ORCID

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 hydrostatic 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 hydrostatic pressure is presented, extracting compression behaviour of the real-space structure.

Funder

Science and Technology Facilities Council

University of Warwick

European Research Council

Faraday Institute for Science and Religion

Royal Society

Publisher

International Union of Crystallography (IUCr)

Subject

General Biochemistry, Genetics and Molecular Biology

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