Ward Daniel J, Marseglia Margot, Saccomando Daniel J, Walker Gary, Mansell Stephen M
Institute of Chemical Sciences, School of Engineering and Physical Sciences, Heriot-Watt University, Edinburgh, EH14 4AS, UK.
Lubrizol Limited, The Knowle, Nether Lane Hazelwood, Derby, Derbyshire, DE56 4AN, UK.
Dalton Trans. 2024 Oct 15;53(40):16598-16609. doi: 10.1039/d4dt02142h.
Two Mn-phosphinophosphinine complexes were synthesised from reaction of the proligand with [MnBr(CO)] at 80 °C for 2 h; 2-diphenylphosphino-3-methyl-6-trimethylsilylphosphinine manganese tricarbonyl bromide (2TMS) and 2-diphenylphosphino-3-methyl-phosphinine manganese tricarbonyl bromide (2H). P{H} NMR spectroscopy revealed characteristic chemical shifts for the phosphinine and phosphine donors bound to Mn (255.4 and 23.7 ppm for 2TMS; 234.2 and 24.8 ppm for 2H), and single crystal X-ray diffraction established the structure of the chelating complex 2TMS. Rapid reaction of both complexes with water was observed with 2TMS reacting to eventually yield a single product, -3TMS, from the -1,2-addition of water across the PC multiple bond on the bromide face, confirmed by X-ray diffraction for both an unsolvated and solvated structure, where MeOH was found to be H-bonding to the P-OH functionality. The reaction of 2R with dry methanol gave multiple products that were not in equilibrium with each other, and the molecular structure of one isomer was definitively established by X-ray diffraction as an unusual 1,4-addition product (1,4-4TMS). However, reaction of 2R with methanol in the presence of trace water showed that hydrolysis products 3R were formed preferentially. Both phosphinine complexes acted as pre-catalysts for the Guerbet upgrading of methanol/ethanol to isobutanol at 180 °C over 90 h, giving yields of isobutanol (based on moles of ethanol) of 22% for 2TMS and 27% for 2H. This is superior to known Mn dppm complexes [dppm = bis(diphenylphosphino)methane], including the 21% yield recorded for the best derivative [MnBr(κ-PPhC(H)PhPPh)(CO)] shown to date.
通过前体配体与[MnBr(CO)]在80°C下反应2小时合成了两种锰-膦基膦腈配合物;2-二苯基膦基-3-甲基-6-三甲基硅基膦腈三羰基溴化锰(2TMS)和2-二苯基膦基-3-甲基膦腈三羰基溴化锰(2H)。磷谱核磁共振光谱揭示了与锰结合的膦腈和膦供体的特征化学位移(2TMS为255.4和23.7 ppm;2H为234.2和24.8 ppm),并且单晶X射线衍射确定了螯合配合物2TMS的结构。观察到两种配合物与水都能快速反应,2TMS反应最终通过水在溴化物面上的PC多重键上进行-1,2-加成生成单一产物-3TMS,通过X射线衍射对未溶剂化和溶剂化结构进行了确认,其中发现甲醇与P-OH官能团形成氢键。2R与干燥甲醇反应生成多种彼此不平衡的产物,并且通过X射线衍射确定一种异构体的分子结构为不寻常的1,4-加成产物(1,4-4TMS)。然而,2R在痕量水存在下与甲醇反应表明优先形成水解产物3R。两种膦腈配合物在180°C下90小时内都作为甲醇/乙醇Guerbet升级为异丁醇的预催化剂,2TMS的异丁醇产率(基于乙醇摩尔数)为22%,2H为27%。这优于已知的锰双(二苯基膦基)甲烷配合物[dppm = 双(二苯基膦基)甲烷],包括迄今为止报道的最佳衍生物[MnBr(κ-PPhC(H)PhPPh)(CO)]的21%产率。