On the Fragmentation of Ni(II) β-Diketonate-Diamine Complexes as Molecular Precursors for NiO Films: A Theoretical and Experimental Investigation

Author:

Invernizzi Cristiano1ORCID,Tabacchi Gloria1ORCID,Seraglia Roberta2ORCID,Benedet Mattia23ORCID,Roverso Marco23ORCID,Maccato Chiara23ORCID,Bogialli Sara23ORCID,Barreca Davide2ORCID,Fois Ettore1ORCID

Affiliation:

1. Department of Science and High Technology, Insubria University and INSTM, 22100 Como, Italy

2. CNR-ICMATE and INSTM, Department of Chemical Sciences, Padova University, 35131 Padova, Italy

3. Department of Chemical Sciences, Padova University and INSTM, 35131 Padova, Italy

Abstract

NiO-based nanomaterials have attracted considerable interest for different applications, which have stimulated the implementation of various synthetic approaches aimed at modulating their chemico-physical properties. In this regard, their bottom-up preparation starting from suitable precursors plays an important role, although a molecular-level insight into their reactivity remains an open issue to be properly tackled. In the present study, we focused on the fragmentation of Ni(II) diketonate-diamine adducts, of interest as vapor-phase precursors for Ni(II) oxide systems, by combining electrospray ionization mass spectrometry (ESI-MS) with multiple collisional experiments (ESI-MSn) and theoretical calculations. The outcomes of this investigation revealed common features in the fragmentation pattern of the target compounds: (i) in the first fragmentation, the three complexes yield analogous base-peak cations by losing a negatively charged diketonate moiety; in these cations, Ni-O and Ni-N interactions are stronger and the Ni positive charge is lower than in the parent neutral complexes; (ii) the tendency of ligand electronic charge to migrate towards Ni further increases in the subsequent fragmentation, leading to the formation of a tetracoordinated Ni environment featuring an interesting cation-π intramolecular interaction.

Funder

CNR

Padova University

INSTM Consortium

Insubria University

Publisher

MDPI AG

Subject

Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science

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