A kind of chiral tertiary phosphine compound and its full configuration, its preparation method and application
A technology of compound and chiral phosphine, which is applied in the field of chiral tertiary phosphine compound and its full configuration, its preparation and application, can solve the problems of expensive raw materials, low overall yield, long reaction time, etc., and achieve easy transformation, high Effect of selectivity and low cost of raw materials
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Embodiment 1
[0040] (S)-N-((R S )-2-(diphenylphosphino)-1-phenylethyl)-2-methylpropane-2-sulfinamide[1a(S,R S )]Synthesis
[0041]
[0042] Wherein, THF is tetrahydrofuran; N 2 is nitrogen; Ti( i PrO) 4 For tetraisopropyl titanate.
[0043] Step 1: In a 500mL three-necked flask, add benzaldehyde (50mmol) and (R)-(+)-tert-butylsulfinamide (50mmol), add 150mL tetrahydrofuran under nitrogen atmosphere, add tetratitanate Isopropyl ester (100mmol), stirred at 50°C for 10h, the yield was 85%.
[0044]
[0045] The second step: add the imine (1.04 g, 5 mmol) prepared in the first step into a 50 mL eggplant-shaped reaction flask, protect with nitrogen, and add 30 mL of tetrahydrofuran. Lithium diphenylmethylenephosphine (10 mmol) was slowly added at room temperature, stirred overnight, and the yield was 71%. Proton NMR (400MHz, CDCl 3 )δ7.45-7.41(m,2H),7.36-7.28(m,7H),7.27-7.25(m,6H),4.48-4.41(m,1H),3.63(d,J=4.4Hz,1H) ,2.89(dd,J=13.8,6.8Hz,1H),2.50(dd,J=13.8,8.0Hz,1H),1.19(s,9H).Car...
Embodiment 2
[0047] (S)-N-((R S )-2-(diphenylphosphino)-1-(naphthalen-2-yl)ethyl)-2-methylpropane-2-sulfinamide[1b(S,R S )]Synthesis.
[0048]
[0049] Refer to Example 1 for the specific operation, the raw material used is (R)-(+)-tert-butylsulfinamide, the nucleophile is lithium diphenylmethylenephosphine, and the total yield is 70%. Proton NMR (400MHz, CDCl 3 )δ7.79-7.75(m,3H),7.70(s,1H),7.46-7.39(m,5H),7.36-7.27(m,5H),7.21-7.18(m,3H),4.66-4.59( m,1H),3.71(d,J=4.3Hz,1H),2.98(dd,J=13.8,6.8Hz,1H),2.62(dd,J=13.8,8.0Hz,1H),1.20(s,9H ). Carbon NMR (100MHz, CDCl 3 )δ139.25(d,J C,P =4.4Hz), 138.02(d, J C,P =12.7Hz), 137.52(d, J C,P =12.9Hz), 133.13(d, J C,P =5.8Hz), 132.83(d, J C,P =3.1Hz), 132.64(d, J C,P =3.5Hz), 128.81, 128.62, 128.55, 128.32 (d, J C,P =6.7Hz), 128.02, 126.40(d, J C,P =1.1Hz), 126.11(d, J C,P =9.9Hz), 124.77, 57.73(d, J C,P =19.6Hz), 56.08, 37.16(d, J C,P =14.4Hz), 22.56; Phosphine NMR (162MHz, CDCl 3 )δ=-23.88ppm. High-resolution mass spectrometry theore...
Embodiment 3
[0051] (S)-N-((R S )-1-(diphenylphosphino)-3-methylbutan-2-yl)-2-methylpropane-2-sulfinamide[1c(S,R S )]Synthesis
[0052]
[0053] The specific operation refers to Example 1, the raw material used is (R)-(+)-tert-butylsulfinamide, the nucleophile is lithium diphenylmethylenephosphine, and the total yield is 78%. Proton NMR (400MHz, C 6 D. 6 )δ7.47-7.43(m,4H),7.16-7.03(m,6H),3.34-3.24(m,2H),2.25-2.16(m,3H),1.09(s,9H),0.87(d, J=6.8Hz, 3H), 0.72(d, J=6.9Hz, 3H). Carbon NMR (100MHz, C 6 D. 6 )δ139.79(d,J C,P =13.9Hz), 139.10(d, J C,P =15.3Hz), 133.62(d, J C,P =19.8Hz), 132.66(d, J C,P =18.3Hz), 129.08, 128.81(d, J C,P =6.9Hz), 128.74(d, J C,P =6.2Hz), 128.55, 60.41, 56.02, 33.44 (d, J C,P =6.9Hz), 32.24(d, J C,P =13.85Hz), 22.69, 18.27, 17.32; Phosphine NMR (162MHz, C 6 D. 6 )δ=-9.05ppm. High-resolution simple theoretical data C 21 h 31 NOPS:m / z(%):376.1858(M+H + ), experimental data: 376.1859.
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