Abstract
High energy x-ray diffraction (HEXRD) has emerged as a pivotal technique for examining the structural properties of molten salts, which play vital roles in various high-temperature applications, such as energy storage, nuclear reactors, and metallurgy. This review provides a comprehensive analysis of recent progress in HEXRD studies of various molten salt systems, including molten halide salts, their mixtures, and salts with molecular anions, focusing on the insights into their atomic-scale arrangements. Additionally, we discuss methodological advancements that have improved the resolution and accuracy of HEXRD measurements, as well as recent developments in computational simulations, such as machine learning interatomic potentials, for interpreting results. This review aims to serve as a valuable resource for researchers in this field, offering a detailed overview of the progress of HEXRD studies of molten salts and suggesting pathways for further exploration.
| Original language | English |
|---|---|
| Article number | 493001 |
| Journal | Journal of Physics Condensed Matter |
| Volume | 37 |
| Issue number | 49 |
| DOIs | |
| State | Published - Dec 8 2025 |
Keywords
- HEXRD
- liquid structure
- molten salt
- pair distribution function
- synchrotron
- x-ray diffraction
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