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用于苄胺外消旋化和动态动力学拆分的碱土载体钯催化剂。

Palladium catalysts on alkaline-earth supports for racemization and dynamic kinetic resolution of benzylic amines.

作者信息

Parvulescu Andrei N, Jacobs Pierre A, De Vos Dirk E

机构信息

Centre for Surface Chemistry and Catalysis, Katholieke Universiteit Leuven, Kasteelpark Arenberg 23, 3001 Leuven, Belgium.

出版信息

Chemistry. 2007;13(7):2034-43. doi: 10.1002/chem.200600899.

Abstract

Palladium catalysts on alkaline-earth supports were studied as new heterogeneous catalysts for racemization of chiral benzylic amines such as 1-phenylethylamine. Particularly 5 % Pd/BaSO(4) and 5 % Pd/CaCO(3) were able to selectively racemize amines, with minimal formation of secondary amines or hydrogenolysis to ethylbenzene. In contrast, these side reactions were pronounced on Pd/C. A reaction mechanism is proposed that is consistent with the reaction kinetics. The catalyst activity was found to depend on the number of available surface Pd atoms, determined by titration with CO. The selectivity crucially depends on the rate of condensation of the amine and the primary imine, which is highest on Pd/C. The racemization catalysts were combined in one pot with an immobilized lipase to perform dynamic kinetic resolution of chiral amines. High yields (up to 88 %) of essentially enantiopure amides were obtained in a single step. The chemo-enzymatic catalyst system proved to be stable and could be reused without losing the initial activity.

摘要

研究了碱土金属载体上的钯催化剂作为手性苄胺(如1-苯乙胺)外消旋化的新型多相催化剂。特别是5% Pd/BaSO₄和5% Pd/CaCO₃能够选择性地使胺外消旋化,仲胺的生成或氢解为乙苯的程度最小。相比之下,这些副反应在Pd/C上很明显。提出了一种与反应动力学一致的反应机理。发现催化剂活性取决于通过用CO滴定确定的可用表面Pd原子数。选择性关键取决于胺和伯亚胺的缩合速率,这在Pd/C上最高。将外消旋化催化剂与固定化脂肪酶一锅组合,以进行手性胺的动态动力学拆分。一步法可获得高产率(高达88%)的基本上对映体纯的酰胺。化学酶催化剂体系被证明是稳定的,可以重复使用而不丧失初始活性。

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