Shi Xinzhe, Sosa Carrizo E Daiann, Cordier Marie, Roger Julien, Pirio Nadine, Hierso Jean-Cyrille, Fleurat-Lessard Paul, Soulé Jean-François, Doucet Henri
Univ Rennes, CNRS ISCR-UMR 6226, 35000, Rennes, France.
Université de Bourgogne, Institut de Chimie Moléculaire de, l'Université de Bourgogne, UMR CNRS 6302, Université, Bourgogne Franche-Comté (UBFC), 9 avenue Alain Savary, 21078, Dijon, France.
Chemistry. 2021 Mar 22;27(17):5546-5554. doi: 10.1002/chem.202100031. Epub 2021 Feb 24.
Direct arylation of most five-membered ring heterocycles are generally easily accessible and strongly favored at the α-position using classical palladium-catalysis. Conversely, regioselective functionalization of such heterocycles at the concurrent β-position remains currently very challenging. Herein, we report general conditions for regioselective direct arylation at the β-position of pyrazoles, while C-H α-position is free. By using aryl bromides as the aryl source and a judicious choice of solvent, the arylation reaction of variously N-substituted pyrazoles simply proceeds via β-C-H bond functionalization. The β-regioselectivity is promoted by a ligand-free palladium catalyst and a simple base without oxidant or further additive, and tolerates a variety of substituents on the bromoarene. DFT calculations revealed that a protic solvent such as 2-ethoxyethan-1-ol significantly enhances the acidity of the proton at β-position of the pyrazoles and thus favors this direct β-C-H bond arylation. This selective pyrazoles β-C-H bond arylation was successfully applied for the straightforward building of π-extended poly(hetero)aromatic structures via further Pd-catalyzed combined α-C-H intermolecular and intramolecular C-H bond arylation in an overall highly atom-economical process.
使用经典钯催化,大多数五元环杂环的直接芳基化通常很容易实现,并且在α位强烈倾向于发生反应。相反,目前在这些杂环的β位进行区域选择性官能化仍然非常具有挑战性。在此,我们报道了在吡唑的β位进行区域选择性直接芳基化的通用条件,而C-Hα位未被反应。通过使用芳基溴化物作为芳基源并明智地选择溶剂,各种N-取代吡唑的芳基化反应简单地通过β-C-H键官能化进行。β-区域选择性由无配体钯催化剂和简单碱促进,无需氧化剂或其他添加剂,并且容忍溴代芳烃上的各种取代基。密度泛函理论计算表明,质子性溶剂如2-乙氧基乙醇会显著增强吡唑β位质子的酸度,从而有利于这种直接的β-C-H键芳基化。这种选择性的吡唑β-C-H键芳基化通过进一步的钯催化的α-C-H分子间和分子内C-H键芳基化,在一个整体高度原子经济的过程中成功地应用于直接构建π-扩展的聚(杂)芳族结构。