Issue 14, 2018

From small molecules to polymeric catalysts in the oscillatory carbonylation reaction: multiple effects of adding HI

Abstract

The oscillatory palladium-catalysed carbonylation reaction opens new horizons for applications in smart materials due to the versatility of its conditions and substrates, as well as the adjustability of amplitude and period of pH oscillations. A variety of viable substrates have been demonstrated, including polymeric alkyne-terminated substrates. However, so far, there have not been any reports of polymer-based palladium catalysts in oscillatory mode. In this paper, we demonstrate pH oscillations in various systems, using commercially available palladium acetate, a triphenylphosphine palladium acetate complex and a polymer-bound palladium catalyst. While palladium acetate was able to generate oscillations under the conditions already established in our previous research on PdI2-catalysed oscillators, the other two catalysts needed the addition of HI to induce oscillations. HI forced an initial pH drop, bringing pH into the range where oscillations generally occur. Addition of HI had a significant effect on all catalysts, modifying the amplitude and period of oscillations, oscillation mode, as well as starting material conversion and product distribution.

Graphical abstract: From small molecules to polymeric catalysts in the oscillatory carbonylation reaction: multiple effects of adding HI

Supplementary files

Article information

Article type
Paper
Submitted
16 Nov 2017
Accepted
05 Feb 2018
First published
21 Mar 2018
This article is Open Access
Creative Commons BY license

Phys. Chem. Chem. Phys., 2018,20, 9281-9288

From small molecules to polymeric catalysts in the oscillatory carbonylation reaction: multiple effects of adding HI

A. Isakova, B. J. Murdoch and K. Novakovic, Phys. Chem. Chem. Phys., 2018, 20, 9281 DOI: 10.1039/C7CP07747E

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