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钯碳作为(聚)氟苯直接芳基化的多相催化剂。

Pd/C as Heterogeneous Catalyst for the Direct Arylation of (Poly)fluorobenzenes.

作者信息

Mao Shuxin, Shi Xinzhe, Soulé Jean-François, Doucet Henri

机构信息

Univ Rennes, CNRS, ISCR-UMR 6226, 35000, Rennes, France.

出版信息

Chemistry. 2019 Jul 17;25(40):9504-9513. doi: 10.1002/chem.201900921. Epub 2019 May 20.

Abstract

The potential of the heterogeneous catalyst 10 % Pd/C in the direct arylation of (poly)fluorobenzene derivatives with aryl bromides has been investigated. In general, high yields of biaryl derivatives were obtained by using tri-, tetra-, and pentafluorobenzenes, whereas mono- and difluorobenzenes exhibited poor reactivity. The regioselectivities of the arylation reactions were similar to those observed with homogeneous palladium catalysts. Both electron-withdrawing and -donating substituents, such as nitrile, nitro, acetyl, ester, trifluoromethyl, tert-butyl, methoxy, or methyl, on the aryl bromide were tolerated. Unexpectedly, tetrafluoro-substituted [1,1'-biphenyl]-4-ols were obtained from pentafluorobenzene at 150 °C due to a formal regioselective hydroxylation, whereas at lower temperatures the expected pentafluorobiphenyls were obtained. However, no C-F bond cleavage was observed with the other polyfluorobenzene derivatives. These arylation reactions were carried out with only 1 mol % Pd/C as the catalyst and KOAc as an inexpensive base. Therefore, this protocol represents a very attractive access to (poly)fluoro-substituted biphenyls in terms of cost, simplicity, and sustainable chemistry because the Pd/C catalyst can be easily removed at the end of the reaction, there is no contamination with phosphine ligand residues, and the major side-product of the reaction is KOAc⋅HBr.

摘要

研究了多相催化剂10% Pd/C在(多)氟苯衍生物与芳基溴直接芳基化反应中的潜力。一般来说,使用三氟苯、四氟苯和五氟苯可获得高产率的联芳基衍生物,而一氟苯和二氟苯的反应活性较差。芳基化反应的区域选择性与均相钯催化剂的情况相似。芳基溴上的吸电子和供电子取代基,如腈基、硝基、乙酰基、酯基、三氟甲基、叔丁基、甲氧基或甲基,均能耐受。出乎意料的是,由于形式上的区域选择性羟基化反应,在150°C下从五氟苯得到了四氟取代的[1,1'-联苯]-4-醇,而在较低温度下得到了预期的五氟联苯。然而,其他多氟苯衍生物未观察到C-F键断裂。这些芳基化反应仅使用1 mol%的Pd/C作为催化剂和KOAc作为廉价碱进行。因此,就成本、简便性和可持续化学而言,该方法是一种非常有吸引力的制备(多)氟取代联苯的方法,因为在反应结束时Pd/C催化剂可以很容易地除去,不存在膦配体残留的污染,并且反应的主要副产物是KOAc·HBr。

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