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April 18, 2026Philosophical Transactions of the Royal Society A Mathematical Physical and Engineering Sciences0 citationsOpen Access

Inelastic neutron scattering of catalysts and computational studies: a synergistic pairing

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SPStewart F. Parker

Key Points

  • This review explores the integration of inelastic neutron scattering and computational methods in catalyst analysis.
  • Descriptive review of inelastic neutron scattering (INS) and computational studies.
  • Discussion of the evolution of experimental techniques and theoretical approaches in catalysis.
  • Critical evaluation of density functional theory (DFT) and its application in INS spectroscopy.
  • Identifies the reliance on computational methods in INS for catalyst studies.
  • Highlights the strengths and limitations of DFT in analyzing INS spectra.
  • Speculates on future developments in the synergy between experimental and computational approaches.

Abstract

Inelastic neutron scattering (INS) (neutron vibrational spectroscopy) has long been used to study catalysts and catalytic systems. From the inception of the technique, it has relied on computational methods for the analysis of the spectra. Of course, both experimental capabilities and theory have evolved in sophistication over time, both of which have been driven by the enormous increase in computing power over the last 50 years. In this short review, I describe how we came to the current position where analysis via density functional theory (DFT) is almost a prerequisite for publication, its strengths and limitations for INS spectroscopy and end with some speculation as to what the future might hold. Throughout, the interaction between theory and experiment will be emphasized. This article is part of the theme issue 'Surfaces, interfaces and heterogeneous catalysis'.

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Cite This Study

Stewart F. Parker (2026) studied this question.

synapsesocial.com/papers/69e3205140886becb653f740https://doi.org/10.1098/rsta.2024.0554
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