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Unveiling Hidden Shake-Up Features in the Uranyl M<sub>4</sub>-Edge Spectrum

Jordan N. Ehrman, Kirill Shumilov, Andrew J. Jenkins, Joseph M. Kasper, Tonya Vitova, Enrique R. Batista, Ping Yang, Xiaosong Li

2024JACS Au15 citationsDOIOpen Access PDF

Abstract

High Resolution Image Download MS PowerPoint Slide The M 4,5 -edge high energy resolution X-ray absorption near-edge structure (HR-XANES) spectra of actinyls offer valuable insights into the electronic structure and bonding properties of heavy-element complexes. To conduct a comprehensive spectral analysis, it is essential to employ computational methods that accurately account for relativistic effects and electron correlation. In this work, we utilize variational relativistic multireference configurational interaction methods to compute and analyze the X-ray M 4 -edge absorption spectrum of uranyl. By employing these advanced computational techniques, we achieve excellent agreement between the calculated spectral features and experimental observations. Moreover, the calculations unveil significant shake-up features, which arise from the intricate interplay between strongly correlated 3d core-electron and ligand excitations. This research provides important theoretical insights into the spectral characteristics of heavy-element complexes. Furthermore, it establishes the foundation for utilizing M 4,5 -edge spectroscopy as a means to investigate the chemical activities of such complexes. By leveraging this technique, we can gain a deeper understanding of the bonding behavior and reactivity of heavy-element compounds.

Topics & Concepts

UranylXANESShakeEnhanced Data Rates for GSM EvolutionElectronic structureAbsorption spectroscopySpectroscopySpectral lineElement (criminal law)ChemistryRelativistic quantum chemistryX-ray spectroscopyAbsorption (acoustics)Atomic physicsUraniumPhysicsComputational chemistryComputer scienceOpticsQuantum mechanicsNuclear physicsLawTelecommunicationsPolitical scienceRadioactive element chemistry and processingX-ray Spectroscopy and Fluorescence AnalysisLanthanide and Transition Metal Complexes
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