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When Electrons Step in: Polarizing Effects Explored with Triisobutylaluminum

journal contribution
posted on 2024-11-02, 18:16 authored by Andreas Seymen, Annika Munch, Samantha Orr, Regine Herbst-Irmer, Robert Mulvey, Carsten Strohmann, Dietmar Stalke
High-resolution X-ray diffraction data of triisobutylaluminum were collected, and unexpected structural features were observed, hinting toward yet unnoticed polarization effects. To approach these, a multipole refinement using the Hansen and Coppens method, followed by a topological analysis using Bader's quantum theory of atoms in molecules, was employed. The electron localization function based on density functional theory calculations supported the experimental findings. Thereby, unobserved electron shifts within the isobutyl group become detectable. It is shown that the impact of this electron shift is dependent mainly on whether the iBu substituent of the homoleptic triisobutylaluminum dimer [AliBu3]2 (1) is connected by a directional (σ) or a multicenter (μ) bond to the metal. The effect found is assumed not only to be of paramount importance for organoaluminum compounds, widely used in synthesis and in the industrial value chain, but also to be present in organometallic chemistry in general.

History

Journal

Inorganic Chemistry

Volume

60

Issue

5

Start page

2872

End page

2877

Total pages

6

Publisher

American Chemical Society

Place published

United States

Language

English

Copyright

© 2021 American Chemical Society

Former Identifier

2006111968

Esploro creation date

2022-01-21

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