Institut für Anorganische Chemie, Universität Göttingen, Tammannstraße 4, 37077, Göttingen, Germany.
Institut für Anorganische und Analytische Chemie, Goethe-Universität, Max-von-Laue-Straße 7, 60438, Frankfurt am Main, Germany.
Angew Chem Int Ed Engl. 2022 Feb 21;61(9):e202115626. doi: 10.1002/anie.202115626. Epub 2022 Jan 14.
C-H amination and amidation by catalytic nitrene transfer are well-established and typically proceed via electrophilic attack of nitrenoid intermediates. In contrast, the insertion of (formal) terminal nitride ligands into C-H bonds is much less developed and catalytic nitrogen atom transfer remains unknown. We here report the synthesis of a formal terminal nitride complex of palladium. Photocrystallographic, magnetic, and computational characterization support the assignment as an authentic metallonitrene (Pd-N) with a diradical nitrogen ligand that is singly bonded to Pd . Despite the subvalent nitrene character, selective C-H insertion with aldehydes follows nucleophilic selectivity. Transamidation of the benzamide product is enabled by reaction with N SiMe . Based on these results, a photocatalytic protocol for aldehyde C-H trimethylsilylamidation was developed that exhibits inverted, nucleophilic selectivity as compared to typical nitrene transfer catalysis. This first example of catalytic C-H nitrogen atom transfer offers facile access to primary amides after deprotection.
通过催化氮烯转移的 C-H 氨化和酰胺化是成熟的反应,通常通过氮烯中间体的亲电攻击进行。相比之下,(形式上)末端氮化物配体插入 C-H 键的反应则发展较少,催化氮原子转移仍然未知。我们在此报告了钯的形式上的末端氮化物配合物的合成。光结晶学、磁性和计算表征支持将其分配为具有单键合到 Pd 的自由基氮配体的真实金属氮烯 (Pd-N)。尽管具有亚价氮烯特性,但与醛的选择性 C-H 插入遵循亲核选择性。与 N SiMe 的反应使苯甲酰胺产物的转酰胺化成为可能。基于这些结果,开发了一种用于醛 C-H 三甲基硅烷酰胺化的光催化方案,与典型的氮烯转移催化相比,该方案表现出反转的亲核选择性。这种首例催化 C-H 氮原子转移的例子为脱保护后获得伯酰胺提供了简便的途径。