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Gas‐phase studies of copper(I)‐mediated CO2 extrusion followed by insertion of the heterocumulenes CS2 or phenylisocyanate.

Authors :
Yang, Yang
Canty, Allan J.
O'Hair, Richard A.J.
Source :
Journal of Mass Spectrometry; Apr2021, Vol. 56 Issue 4, p1-8, 8p
Publication Year :
2021

Abstract

The gas‐phase extrusion–insertion reactions of the copper complex [bathophenanthroline (Bphen)CuI(O2CC6H5)]2−, generated via electrospray ionization, was studied in a linear ion trap mass spectrometer with the combination of collision‐induced dissociation (CID) and ion‐molecule reaction (IMR) events. Multistage mass spectrometry (MSn) experiments and density functional theory (DFT) demonstrated that extrusion of carbon dioxide from [(Bphen)Cu(O2CC6H5)]2− (CID) gives the organometallic intermediate [(Bphen)Cu(C6H5)]2−, which subsequently reacts with carbon disulfide (IMR) via insertion to yield [(Bphen)Cu (SC(S)C6H5)]2−. The fragmentation of the product ion resulted in the formation of [Bphen]2−, [(Bphen)Cu]− and C6H5CS2− under CID conditions. The formation of the latter two charge separation products thus provides evidence of C–C bond formation in the IMR step. Although analogous studies with isocyanate, which is isoelectronic with CS2, showed a poor reactivity in the gas phase, the mechanistic understanding obtained from these model studies encourages future development of a solution phase protocol for the synthesis of amides from carboxylic acids and isocyanates mediated by copper(I) complexes. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10765174
Volume :
56
Issue :
4
Database :
Complementary Index
Journal :
Journal of Mass Spectrometry
Publication Type :
Academic Journal
Accession number :
149900627
Full Text :
https://doi.org/10.1002/jms.4579