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76-05-1 / 三氟乙?;═fa)的引入

由于鹵原子具有較高的電負(fù)性,隨著乙?;Y(jié)構(gòu)中鹵原子的增多,?;嫉碾娮釉泼芏葴p小,親電性增加,更容易脫除。三氟乙?;瞧渲行阅茏詈玫谋Wo(hù)基,它是Weygand最先引入到多肽合成中的[1]。三氟乙?;═fa)可用三氟乙酸酐導(dǎo)入,在稀堿液中很容易脫去。不僅用于肽的合成,也可以用于甾體上的氨基和糖上氨基的保護(hù)。如分子中同時(shí)存在伯胺和仲胺,則三氟乙酸乙酯可以?xún)?yōu)先與伯胺反應(yīng)。與乙酸酐一樣,三氟乙酸酐在18-冠-6存在下,可以選擇性的?;侔?。與此相反,三氟乙酸-丁二酰亞胺可選擇性的?;?,而仲胺不受影響。三氟乙?;趬A性,如0.2M NaOH,1M Piperidine, K2CO3/MeOH/H2O 或NaBH4/EtOH條件下脫除時(shí),Boc,Cbz,Trt,Alloc,F(xiàn)moc等氨基保護(hù)基不受影響。Tfa保護(hù)的氨基酸或多肽在高真空下更易于氣化,因而能用于氣相層析以檢測(cè)消旋程度[2]和測(cè)定天然肽的排列順序[3],而且由于含有F,也可用19F NMR來(lái)檢測(cè)合成肽的純度、消旋程度以及類(lèi)似物的鑒定等[4]。

1. F. Weygand, E. Csendes.,Angew.Chem.,1952,64,136

2. F. Weygand, D.Hoffmann, A. Prox.,Z.Naturforsch.,1968,23b, 279

3. N. Ikekawa.,J. Biochem.,1963,54, 279

4.E. Bayer et al.,J. Am.Chem. Soc.,1972,94, 265

氨基化合物TFAA引入Tfa保護(hù)基

三氟乙酰基(Tfa)的引入

To a stirred suspension of the hydrobromide salt of compound1(1.3 g, 3.6 mmol) and 4-N,N- (dimethylamino) pyridine(0.04 g, 0.3 mmol) in CH2Cl2(40 mL) was added Et3N(16.0 mL, 12.0 mmol), and the mixture was cooled to 0°C. Trifluoroacetic anhydride (2.5 mL, 17 mmol) was then added to the reaction dropwise. The mixture was allowed to warm to room temperature and stirred for 8 h. The mixture was then diluted with CH2Cl2(50 mL) and washed with 2 N HCl (50 mL), saturated NaHCO3(50 mL), and brine (50 mL).The organic phase was then dried (MgSO4), filtered, and evaporated to leave compound2as a white solid, which was recrystallized from Et2O (1.2 g, 92% yield): mp 197~198°C.

來(lái)源:LabNetwork