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January 1, 2010Green Chemistry163 citationsOpen Access

Development of safe and scalable continuous-flow methods for palladium-catalyzed aerobic oxidation reactions

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XYXuan YeMJMartin D. JohnsonTDTianning Diao

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Abstract

The synthetic scope and utility of Pd-catalyzed aerobic oxidation reactions has advanced significantly over the past decade, and these reactions have potential to address important green-chemistry challenges in the pharmaceutical industry. This potential has been unrealized, however, because safety concerns and process constraints hinder large-scale applications of this chemistry. These limitations are addressed by the development of a continuous-flow tube reactor, which has been demonstrated on several scales in the aerobic oxidation of alcohols. Use of a dilute oxygen gas source (8% O(2) in N(2)) ensures that the oxygen/organic mixture never enters the explosive regime, and efficient gas-liquid mixing in the reactor minimizes decomposition of the homogeneous catalyst into inactive Pd metal. These results provide the basis for large-scale implementation of palladium-catalyzed (and other) aerobic oxidation reactions for pharmaceutical synthesis.

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Ye et al. (2010) studied this question.

synapsesocial.com/papers/6a202071c1b320180d0df8f3https://doi.org/10.1039/c0gc00106f
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