3.8 Article

High-Throughput Experimentation Platform: Parallel Microwave Chemistry in HPLC/GC Vials

Journal

JOURNAL OF COMBINATORIAL CHEMISTRY
Volume 11, Issue 3, Pages 460-468

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/cc900007w

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Funding

  1. Christian Doppler Research Society (CDG)

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A high-throughput reaction platform for performing parallel microwave chemistry in sealed HPLC/GC vials is described. The system consists of a strongly microwave-absorbing silicon carbide plate with 20 cylindrical wells of appropriate dimensions to be fitted with standard HPLC/GC autosampler vials serving as reaction vessels. In combination with an aluminum sealing plate the setup can be used for microwave processing reaction volumes from 0.5-1.5 mL at a maximum temperature/pressure limit of 250 degrees C/20 bar. The parallel reaction platform displays excellent temperature and reaction homogeneity and has been used for high-throughput reaction optimization studies involving the parallel screening of catalyst, solvent and substrate reactivity for esterification reactions and metal-catalyzed dehydrative C-C couplings.

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