4.5 Article

A flow reactor setup for photochemistry of biphasic gas/liquid reactions

Journal

BEILSTEIN JOURNAL OF ORGANIC CHEMISTRY
Volume 12, Issue -, Pages 1798-1811

Publisher

BEILSTEIN-INSTITUT
DOI: 10.3762/bjoc.12.170

Keywords

biphasic reactions; flow chemistry; gas phase; microreactor; oxygen; photochemistry

Funding

  1. Graduate School on Chemical Photocatalysis of the German Science Foundation (DFG) [GRK 1626]

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A home-built microreactor system for light-mediated biphasic gas/liquid reactions was assembled from simple commercial components. This paper describes in full detail the nature and function of the required building elements, the assembly of parts, and the tuning and interdependencies of the most important reactor and reaction parameters. Unlike many commercial thin-film and microchannel reactors, the described set-up operates residence times of up to 30 min which cover the typical rates of many organic reactions. The tubular microreactor was successfully applied to the photooxygenation of hydrocarbons (Schenck ene reaction). Major emphasis was laid on the realization of a constant and highly reproducible gas/liquid slug flow and the effective illumination by an appropriate light source. The optimized set of conditions enabled the shortening of reaction times by more than 99% with equal chemoselectivities. The modular home-made flow reactor can serve as a prototype model for the continuous operation of various other reactions at light/liquid/ gas interfaces in student, research, and industrial laboratories.

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