Department of Organic Chemistry and Technology, Faculty of Chemical Technology and Biotechnology, Budapest University of Technology and Economics, Műegyetem rkp. 3, H-1111 Budapest, Hungary.
Department Chemie, Ludwig-Maximilians-Universitat München, Butenandtstr. 5-13, D-81377 München, Germany.
Org Biomol Chem. 2023 Feb 22;21(8):1709-1718. doi: 10.1039/d3ob00010a.
Diethyl α-benzylamino- and α-amino-benzylphosphonates obtained by the Kabachnik-Fields reaction were useful intermediates in the synthesis of other derivatives. Acylation of α-aminophosphonates with acyl chlorides led to the corresponding -acyl species existing under a dynamic equilibrium of two conformers. Judging from the broad NMR signals, the sterically most crowded -benzoyl--benzyl derivative suffered a hindered rotation around the N-C axis to the acyl carbon atom at 26 °C. Low temperature NMR measurements at -10 °C showed the presence of two distinct rotamers that were characterized. The other acylated α-amino-benzylphosphonates prepared revealed a less hindered rotation. Single crystal X-ray diffraction of the NH-propionyl species showed a dimer, in which the two molecules were held together by rare intermolecular PO⋯HN bonds. On the other hand, substituted α-benzylamino-benzylphosphonates prepared by phospha-Mannich reactions were employed, as a new approach, in a second Kabachnik-Fields condensation by reaction with formaldehyde and dialkyl phosphites or secondary phosphine oxides to afford novel -phosphonoylmethyl- and -phosphinoylmethyl-α-amino-benzylphosphonates. The structure of the new products was confirmed by two-dimensional NMR spectroscopy. A symmetrical bis derivative was prepared in a diastereoselective manner. A related tris(phosphonoylmethyl)amine species was also synthesized.
通过 Kabachnik-Fields 反应获得的二乙基 α-苄基氨基-和 α-氨基苄基膦酸酯是合成其他衍生物的有用中间体。α-氨基膦酸酯与酰氯的酰化反应导致相应的 -酰基物质存在于两种构象的动态平衡中。从宽的 NMR 信号判断,空间位阻最大的 -苯甲酰--苄基衍生物在 26°C 时,在围绕 N-C 轴到酰基碳原子的旋转受到阻碍。在-10°C 的低温 NMR 测量显示存在两种不同的互变异构体,对其进行了表征。其他合成的酰化 α-氨基苄基膦酸酯显示出较小的旋转阻碍。NH-丙酰化产物的单晶 X 射线衍射显示出二聚体,其中两个分子通过罕见的分子间 PO⋯HN 键结合在一起。另一方面,通过膦-Mannich 反应制备的取代的 α-苄基氨基苄基膦酸酯被用作一种新方法,通过与甲醛和二烷基膦酸酯或仲膦氧化物的第二次 Kabachnik-Fields 缩合反应,得到新型 -膦酰甲基-和 -膦酰甲基-α-氨基苄基膦酸酯。新产物的结构通过二维 NMR 光谱得到确认。以非对映选择性的方式制备了对称的双衍生物。还合成了相关的三(膦酰甲基)胺化合物。