Method for synthesizing 5,6,7,8-tetrahydroquinoline
A technology of tetrahydroquinoline and synthesis method, applied in chemical instruments and methods, metal/metal oxide/metal hydroxide catalysts, organic chemistry, etc., can solve the problems of large pollution, low yield and high equipment requirements, Achieve high yield, lower reaction temperature, and high atom economy
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Embodiment 1
[0028] Embodiment 1: with CuCl 2 Preparation of PD catalyst
[0029] Add 20g of palladium carbon (5wt% palladium loading) purchased from Zhejiang Metallurgical Research Institute Co., Ltd. to 100mL CuCl 2 (2mol / L) aqueous solution, stir and heat to about 50°C, then add 400mL NaHCO 3 Solution (1mol / L), continued to stir for 2 hours, filtered, and the filter cake was washed with 2×20mL water, and vacuum-dried at 130°C to obtain 32.4g of catalyst, which was designated as PD-1.
Embodiment 2
[0030] Embodiment 2: with ZnCl 2 Preparation of PD catalyst
[0031] Add 10g of palladium carbon (5%) purchased from Zhejiang Metallurgical Research Institute Co., Ltd. to 50mLZnCl 2 (1mol / L) aqueous solution, under stirring, add 200mL NaHCO at about 10°C 3 Solution (0.5mol / L), continued to stir for 3 hours, filtered, and the filter cake was washed with 2×20mL water, and vacuum-dried at 120°C to obtain 13.2g of catalyst, which was designated as PD-2.
Embodiment 3
[0032] Embodiment 3: with FeCl 2 Preparation of PD catalyst
[0033] Add 10g of palladium carbon (5%) purchased from Zhejiang Metallurgical Research Institute Co., Ltd. to 40mLFeCl 2 (5mol / L) aqueous solution, stir and heat to about 30°C, add 210mL NaHCO 3 Solution (1.9mol / L), continued to stir for 2 hours, filtered, and the filter cake was washed with 2×20mL water, and vacuum-dried at 100°C to obtain 22.5g of catalyst, which was designated as PD-3.
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