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Development and evaluation of a raman flow cell for monitoring continuous flow reactions

journal contribution
posted on 2013-01-01, 00:00 authored by G Chaplain, Stephen Haswell, P Fletcher, S Kelly, A Mansfield
We show how in-line Raman spectroscopy can be used to monitor both reactant and product concentrations for a heterogeneously catalysed Suzuki cross reaction operating in continuous flow. The flow system consisted of an HPLC pump to drive a homogeneous mixture of the reactants (4-bromobenzonitrile, phenylboronic acid, and potassium carbonate) through an oven heated (80°C) palladium catalyst immobilised on a silica monolith. A custom built PTFE in-line flow cell with a quartz window enabled the coupling of an Ocean Optics Raman spectrometer probe to monitor both the reactants and product (4-cyanobiphenyl). Calibration was based on obtaining multivariate spectral data in the range 1530 cm–1 and 1640 cm–1 and using partial least-squares regression (PLSR) to obtain a calibration model which was validated using gas chromatography–mass spectrometry (GCMS) analysis. In-line Raman monitoring of the reactant and product concentrations enable (i) determination of reaction kinetic information such as the empirical rate law and associated rate constant and (ii) optimisation of either the product conversion (61 % at 0.02 mL min–1 generating 17 g h–1) or product yield (14 % at 0.24 mL min–1 generating 53 g h–1).

History

Journal

Australian journal of chemistry

Volume

66

Issue

2

Pagination

208 - 212

Publisher

CSIRO Publishing

Location

Melbourne, Vic.

ISSN

0004-9425

eISSN

1445-0038

Language

eng

Publication classification

C1.1 Refereed article in a scholarly journal

Copyright notice

2013, CSIRO Publishing

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