Interaction of Slow Electrons with Thermally Evaporated Manganese(II) Acetylacetonate Complexes.

J Phys Chem A

Université de Lyon, Université Lyon 1, Institut de Physique des 2 Infinis, CNRS/IN2P3, UMR5822, F-69003 Villeurbanne, Lyon, France.

Published: March 2020

Complexes of metal acetylacetonate are used as general precursors for the synthesis of metal oxide nanomaterials. In the present work, we study the interaction of low-energy (<10 eV) electrons, produced abundantly as secondary electrons during the bombardment of the substrate by the primary particles, with thermally evaporated manganese(II) acetylacetonate complexes. We found that the acetylacetonate anion ([acac]) is the major anionic species produced, while the second most abundant is the parent anion [Mn(II)(acac)]. This observation differs from those reported from electron attachment to Cu(acac), for which [Cu(II)(acac)] is the predominant anion [Kopyra et al. 2018, 20, 7746]. The experimental data are supported by theory to provide information on the physical-chemistry processes initiated by slow electrons to the organometallic precursor and to interpret the different behavior of Mn(acac) compared to Cu(acac).

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http://dx.doi.org/10.1021/acs.jpca.9b10119DOI Listing

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