Visible‐Light Activation of Diorganyl Bis(pyridylimino) Isoindolide Aluminum(III) Complexes and Their Organometallic Radical Reactivity

Author:

Wenzel Jonas O.1ORCID,Werner Johannes2,Allgaier Alexander3,van Slageren Joris3ORCID,Fernández Israel4ORCID,Unterreiner Andreas‐Neil2ORCID,Breher Frank1ORCID

Affiliation:

1. Karlsruhe Institute of Technology (KIT) Institute of Inorganic Chemistry (AOC) Engesserstraße 15 76131 Karlsruhe Germany

2. Karlsruhe Institute of Technology (KIT) Institute of Physical Chemistry (IPC) Fritz-Haber-Weg 2 76131 Karlsruhe Germany

3. University of Stuttgart Institute of Physical Chemistry Pfaffenwaldring 55 70569 Stuttgart Germany

4. Universidad Complutense de Madrid Facultad de Ciencias Químicas 28040 Madrid Spain

Abstract

AbstractWe report on the synthesis and characterization of a series of (mostly) air‐stable diorganyl bis(pyridylimino) isoindolide (BPI) aluminum complexes and their chemistry upon visible‐light excitation. The redox non‐innocent BPI pincer ligand allows for efficient charge transfer homolytic processes of the title compounds. This makes them a universal platform for the generation of carbon‐centered radicals. The photo‐induced homolytic cleavage of the Al−C bonds was investigated by means of stationary and transient UV/Vis spectroscopy, spin trapping experiments, as well as EPR and NMR spectroscopy. The experimental findings were supported by quantum chemical calculations. Reactivity studies enabled the utilization of the aluminum complexes as reactants in tin‐free Giese‐type reactions and carbonyl alkylations under ambient conditions, which both indicated radical‐polar crossover behavior. A deeper understanding of the physical fundamentals and photochemical process was provided, furnishing in turn a new strategy to control the reactivity of bench‐stable aluminum organometallics.

Funder

Deutsche Forschungsgemeinschaft

Ministerio de Ciencia, Innovación y Universidades

Ministerio de Ciencia e Innovación

Fonds der Chemischen Industrie

Publisher

Wiley

Reference178 articles.

1. International Aluminium “Primary Aluminium Production Annually total for 2022” can be found under https://international-aluminium.org/statistics/primary-aluminium-production/; visited 3rd Oct. 2023.

2. Abundances of chemical elements in the Earth’s crust

3.  

4. P. T. Anastas J. C. Warner Green Chemistry: Theory and Practice Oxford University Press New York 1998;

5. Green Chemistry: Principles and Practice

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