Arylamine compound having benzoazole ring structure, and organic electroluminescent element
An electroluminescent element, arylamine compound technology, applied in electroluminescent light sources, electrical components, organic semiconductor devices, etc., can solve the problem of low refractive index, low color purity, low light extraction efficiency in green and red light-emitting regions, etc. question
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Embodiment 1
[0216] (2-34)
[0217] Add 4-(naphthalen-2-yl)phenyl-amine: 7.5 g, 2-(4-bromophenyl)benzoxazole: 20.6 g, sodium tert-butoxide: 9.9 g, toluene: 150ml, while irradiating ultrasonic waves for 30 minutes, blow nitrogen gas. Tris(dibenzylideneacetone)dipalladium(0): 0.9 g and a 50% (w / v) toluene solution of tris-(tert-butyl)phosphine: 0.4 ml were added, and the mixture was stirred under heating and reflux for 3 hours. After natural cooling to 80°C, silica gel was added to filter, and the filtrate was concentrated to obtain a crude product. Recrystallization of the crude product from toluene afforded the yellow color of bis-{4-(benzoxazol-2-yl)phenyl}-{4-(naphthalen-2-yl)phenyl}amine (2-34) Powder: 6.3g (30% yield).
[0218] [chemical 11]
[0219]
[0220] The structure of the obtained yellow powder was identified using NMR.
[0221] Using 1H-NMR (CDCl 3 ) detected the following 27 hydrogen signals.
[0222] δ(ppm)=8.19-8.24(4H), 8.09(1H), 7.87-7.97(3H), 7.73-7.83(5H), 7.51-...
Embodiment 2
[0224] (2-39)
[0225] Add 4-(phenanthrene-9-yl)phenyl-amine: 8.0 g, 2-(4-bromophenyl)benzoxazole: 17.9 g, sodium tert-butoxide: 8.6 g, toluene: 160ml, while irradiating ultrasonic waves for 30 minutes, blow nitrogen gas. Tris(dibenzylideneacetone)dipalladium(0): 0.8 g and a 50% (w / v) toluene solution of tris-(tert-butyl)phosphine: 0.4 ml were added, and the mixture was stirred under reflux for 3 hours. After natural cooling to 80°C, silica gel was added to filter, and the filtrate was concentrated to obtain a crude product. The crude product was recrystallized from toluene to give bis-{4-(benzoxazol-2-yl)phenyl}-{4-(phenanthrene-9-yl)phenyl}amine (2-39) as a yellow Powder: 15.0 g (77.0% yield).
[0226] [chemical 12]
[0227]
[0228] The structure of the obtained yellow powder was identified using NMR.
[0229] use 1 H-NMR (CDCl 3 ) detected the following 29 hydrogen signals.
[0230] δ(ppm)=8.73-8.84(2H), 8.24-8.27(4H), 8.07-8.11(1H), 7.92-7.97(1H), 7.57-7.84(11H...
Embodiment 3
[0232] (2-44 )
[0233] Add ([1,1',2',1"]terphenyl-4'-yl)-amine: 5.6g, 2-(4-bromophenyl)benzoxazole: 14.4g, tert Sodium butoxide: 4.4g, toluene: 60ml, while irradiating ultrasonic waves for 30 minutes, feed nitrogen.Add palladium acetate: 0.1g, 50% (w / v) toluene solution of tri-(tert-butyl)phosphine: 0.4ml , stirred overnight under heating and reflux. After natural cooling, methanol was added to obtain the precipitated solid to obtain the crude product. The crude product was refined by crystallization using a toluene / acetone mixed solvent to obtain the precipitated solid to obtain bis- Yellow powder of {4-(benzoxazol-2-yl)phenyl}-([1,1',2',1"]terphenyl-4'-yl)-amine (2-44): 11.0 g (76.4% yield).
[0234] [chemical 13]
[0235]
[0236] The structure of the obtained yellow powder was identified using NMR.
[0237] use 1 H-NMR (DMSO-d 6 ) detected the following 29 hydrogen signals.
[0238] δ(ppm)=8.19(4H), 7.78(4H), 7.50(1H), 7.45-7.34(8H), 7.30(1H), 7.28-7.18(7H), 7....
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