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Direct Determination of Absolute Absorption Cross Sections at the L-Edge of Dilute Mn Complexes in Solution Using a Transmission Flatjet. | LitMetric

AI Article Synopsis

  • - The study investigates the role of 3d transition metals in charge transfer processes relevant to catalysis and biology, focusing on their electronic structure using X-ray absorption spectroscopy at the L-edge.
  • - Researchers analyzed L-edge absorption spectra of manganese complexes in solution, achieving significant absorption cross-sections and aligning experimental results with ab initio calculations to understand electronic transitions.
  • - The findings highlight the potential for using liquid flatjet X-ray absorption spectroscopy to explore dilute biological samples and suggest future applications with portable X-ray sources.

Article Abstract

The 3d transition metals play a pivotal role in many charge transfer processes in catalysis and biology. X-ray absorption spectroscopy at the L-edge of metal sites probes metal 2p-3d excitations, providing key access to their valence electronic structure, which is crucial for understanding these processes. We report L-edge absorption spectra of Mn(acac) and Mn(acac) complexes in solution, utilizing a liquid flatjet for X-ray absorption spectroscopy in transmission mode. With this, we derive absolute absorption cross-sections for the L-edge transitions with peak magnitudes as large as 12 and 9 Mb for Mn(acac) and Mn(acac), respectively. We provide insight into the electronic structure with ab initio restricted active space calculations of these L-edge transitions, reproducing the experimental spectra with excellent agreement in terms of shapes, relative energies, and relative intensities for the two complexes. Crystal field multiplet theory is used to assign spectral features in terms of the electronic structure. Comparison to charge transfer multiplet calculations reveals the importance of charge transfer in the core-excited final states. On the basis of our experimental observations, we extrapolate the feasibility of 3d transition metal L-edge absorption spectroscopy using the liquid flatjet approach in probing highly dilute biological solution samples and possible extensions to table-top soft X-ray sources.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5972834PMC
http://dx.doi.org/10.1021/acs.inorgchem.8b00419DOI Listing

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