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Reactions of La and Ce with Propylamine: Formation and Threshold Ionization of Lanthanide Imido Radicals

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5 Scopus citations

Abstract

Metal-mediated activation of aliphatic amines offers a versatile route to structurally diverse molecules in organic synthesis. In this study, reactions of lanthanide atoms (Ln = La and Ce) with propylamine were conducted in a pulsed laser vaporization supersonic molecular beam source. A series of dehydrogenated Ln-containing species were identified via time-of-flight mass spectrometry. Dehydrogenated complexes with the formula Ln(NC3H7) were characterized through single-photon mass-analyzed threshold ionization (MATI) spectroscopy, supported by quantum chemical calculations. Theoretical investigations employed density functional theory for both La and Ce species and relativistic multiconfiguration self-consistent field and second-order quasi-degenerate perturbation theory for the Ce species. The MATI spectrum of La(NC3H7) reveals a single vibronic progression, attributed to ionization from the doublet ground state of the chain-like radical La(NCH2CH2CH3). In contrast, the MATI spectrum of Ce(NC3H7) exhibits two distinct vibronic systems, corresponding to ionization from the two lowest-energy spin-orbit coupled states of the Ce(NCH2CH2CH3) radical. Both Ln-containing radicals are formed via a thermodynamically and kinetically favorable concerted dehydrogenation of the amino group.

Original languageEnglish
Pages (from-to)5570-5578
Number of pages9
JournalJournal of Physical Chemistry A
Volume129
Issue number25
DOIs
StatePublished - Jun 26 2025

Bibliographical note

Publisher Copyright:
© 2025 American Chemical Society.

Funding

This work was supported by the National Science Foundation Division of Chemistry (Chemical Structure, Dynamics, and Mechanisms, Grant No. 1800316).

FundersFunder number
Department of Chemistry and Division of Medicinal Chemistry and Pharmaceutics1800316

    ASJC Scopus subject areas

    • Physical and Theoretical Chemistry

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