Bending a Cumulene with Electrons: Stepwise Chemical Reduction and Structural Study of a Tetraaryl[4]Cumulene

Author:

Zhou Zheng1ORCID,Johnson Matthew A.2ORCID,Wei Zheng1ORCID,Bühringer Martina U.3,Garner Marc H.4ORCID,Tykwinski Rik2ORCID,Petrukhina Marina A.1ORCID

Affiliation:

1. Department of Chemistry University at Albany State University of New York Albany NY-12222 USA

2. Department of Chemistry University of Alberta Edmonton AB-T6G 2G2 Canada

3. Department of Chemistry and Pharmacy University of Erlangen-Nuremberg Nikolaus-Fiebiger Str. 10 91058 Erlangen Germany

4. Laboratory for Computational Molecular Design Institute of Chemical Sciences and Engineering École Polytechnique Fédérale de Lausanne (EPFL) 1015 Lausanne Switzerland

Abstract

AbstractChemical reduction of a [4]cumulene with cesium metal was explored, and the structural changes stemming from electron acquisition are detailed using X‐ray crystallography. It is found that the [4]cumulene undergoes dramatic geometric changes upon stepwise reduction, including bending of the cumulenic core and twisting of the endgroups from orthogonal to planar. The structural deformation is consistent with early theoretical reports that suggest that the twisting should occur upon reduction of both even and odd [n]cumulenes. The current results, on the other hand, are inconsistent with a previous experimental study of a [3]cumulene in which the predicted twisting is not observed upon reduction. DFT calculations reveal that the barrier to deformation is an order of magnitude lower in a [3]cumulene than a [4]cumulene, allowing the barrier to be overcome in the solid‐state.

Funder

National Science Foundation

University of Alberta

Natural Sciences and Engineering Research Council of Canada

Canada Foundation for Innovation

Alberta Innovates

Danmarks Frie Forskningsfond

Publisher

Wiley

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