1-methyl-4[4-(n,n-p-methylphenyl amido)styryl]naphthyl and method of manufacturing the same and application thereof
A technology of p-methylphenyl and styryl, which is used in the preparation of amino compounds from amines, semiconductor/solid-state device manufacturing, electrical components, etc. It can solve problems such as high polarity, achieve high hole transfer ability, and mild reaction conditions. , the effect of easy preparation
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Embodiment 1
[0022] Add 9g of 1-methylnaphthalene and 8.5mL of glacial acetic acid into a 250mL four-neck flask, while stirring, add 3.5g of paraformaldehyde, 5mL of phosphoric acid, and 12mL of concentrated hydrochloric acid with a mass fraction of 37%, stir at 80°C for 4h, and then cool to 20°C, add diethyl ether to extract, use K 2 CO 3 The saturated solution adjusts the pH to 6-7. Separate the liquid, keep the upper organic liquid, filter out the purple solid, and distill the filtrate under reduced pressure at 40°C, put it in the refrigerator overnight to precipitate a milky white solid, and recrystallize from ethanol to obtain 5.4g of white solid (44% yield) 1-methyl -4-Chloromethylnaphthalene, melting point 28°C
[0023] Add 5.4g of 1-methyl-4-chloromethylnaphthalene to a 200mL four-neck flask, reflux 6mL of triethyl phosphite at 180°C for 3h, cool to 20°C, ice-bath to below 10°C, add 40mL of N, N-dimethylformamide (DMF), add 2.5g sodium methylate while stirring, then dropwise add...
Embodiment 2
[0027] Add 9g of 1-methylnaphthalene and 8.5mL of glacial acetic acid into a 250mL four-neck flask, add 3.5g of paraformaldehyde, 5mL of phosphoric acid, and 24mL (37%) of concentrated hydrochloric acid while stirring, stir at 80°C for 3h, and then cool to 20°C, add diethyl ether to extract, use K 2 CO 3 The saturated solution adjusts the pH to 6-7. Separate the liquid, keep the upper organic liquid, filter out the purple solid, and distill the filtrate under reduced pressure at 40°C, put it in the refrigerator overnight to precipitate a milky white solid, and recrystallize from ethanol to obtain 4.2g of a white solid (yield 34.5%) with a melting point of 28°C
[0028] Add 4.2g of 1-methyl-4-chloromethylnaphthalene to a 200mL four-neck flask, reflux 6mL of trihexyl phosphite at 180°C for 2h, cool to 20°C, and ice-bath to below 10°C, add 30mL of N, N-dimethylformamide (DMF), add 3g potassium tert-butoxide while stirring, then dropwise add 30mL (mass concentration 0.095%) of 4...
Embodiment 3
[0032] Add 9g of 1-methylnaphthalene, 17mL of glacial acetic acid into a 250mL four-neck flask, add 7g of paraformaldehyde, 10mL of phosphoric acid, and 12mL (37%) of concentrated hydrochloric acid while stirring, stir at 100°C for 4h, then cool to 20°C , add ether to extract, use K 2 CO 3 The saturated solution adjusts the pH to 6-7. Separate the liquid, keep the upper organic liquid, filter out the purple solid, distill the filtrate under reduced pressure at 40°C, put it in the refrigerator overnight to precipitate a milky white solid, and recrystallize from ethanol to obtain 7.0 g of a white solid (yield 57.1%), melting point 28°C
[0033] Add 7.0g 1-methyl-4-chloromethylnaphthalene to a 200mL four-neck flask, reflux 6mL trihexyl phosphite for 3h, cool to 20°C, ice-bath to below 10°C, add 40mL tetrahydrofuran (THF) , Add 2.5g potassium tert-butoxide while stirring, then dropwise add 40mL THF (mass concentration 0.095%) solution, stir for 4h under ice bath, let stand overn...
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