A kind of silicon-containing benzanthracene organic electroluminescent material and its preparation method and application
A benzanthracene and luminescent technology, which is applied in the direction of luminescent materials, organic chemistry, chemical instruments and methods, etc., can solve the problems that anthracene-based luminescent materials cannot meet the requirements for the use of OLEDs, and meet the needs of industrialization development, improve lifespan, Effect of improving film-forming performance
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Embodiment 1
[0031] Embodiment 1: the synthesis of compound 001
[0032] The specific synthetic route is shown in the following formula:
[0033]
[0034] Weigh 16.97g of silicon-containing benzanthracene bromine substituents, 32.89g of 2-naphthylphenylamine, 12.32g of potassium tert-butoxide, 0.56g of palladium (II) acetate, 0.51g of tri-tert-butylphosphorus, and use 250ml Toluene was dissolved, and reacted at 80° C. for 5 hours under the protection of nitrogen. The reaction solution was filtered, the obtained crude product was purified by silica gel chromatography, and the obtained solid was recrystallized with toluene and dried to obtain 31.96 g of yellow-white solid compound 001 with a yield of more than 92% and an HPLC purity of more than 98%. Mass spectrum: calculated value 694.94; found value 694.92. Elemental analysis: calculated value C: 86.42%; H: 5.51%; N: 4.03%; Si: 4.04%; tested value C: 86.40%; H: 5.52%; N: 4.02%; Si: 4.05%.
Embodiment 2
[0035] Embodiment 2: the synthesis of compound 002
[0036] The specific synthetic route is shown in the following formula:
[0037]
[0038] Weigh 16.97g of silicon-containing benzanthracene bromine substitute, 53.50g of N-phenyl-2-carbazolylphenylamine, 12.32g of potassium tert-butoxide, 0.56g of palladium (II) acetate, tri-tert-butyl Phosphorus 0.51g was dissolved in 250ml of toluene and reacted at 85°C for 7 hours. The reaction solution was filtered, the obtained crude product was purified by silica gel chromatography, the obtained solid was recrystallized with toluene, and dried to obtain 42.56 g of yellow-white solid compound 002 with a yield of more than 92% and an HPLC purity of more than 98%. Mass Spectrum: Calculated 925.20; Asserted 925.23. Elemental analysis: calculated value C: 85.68%; H: 5.23%; N: 6.06%; Si: 3.04%; tested value C: 85.69%; H: 5.24%; N: 6.05%; Si: 3.04%.
Embodiment 3
[0039] Embodiment 3: the synthesis of compound 003
[0040] The specific synthetic route is shown in the following formula:
[0041]
[0042] Weigh 16.97g of silicon-containing benzanthracene bromine substituent, 65.70g of 2-naphthyltriphenylamine, 12.32g of potassium tert-butoxide, 0.56g of palladium (II) acetate, and 0.51g of tri-tert-butylphosphine, and use 250ml of toluene was dissolved and reacted at 85°C for 7 hours. The reaction solution was filtered, the obtained crude product was purified by silica gel chromatography, the obtained solid was recrystallized with toluene, and dried to obtain 46.84 g of yellow-white solid compound 003 with a yield of more than 91% and an HPLC purity of more than 98%. Mass spectrum: Calculated value is 1029.35; found value is 1029.37. Elemental analysis: calculated value C: 86.35%; H: 5.48%; N: 5.44%; Si: 2.73%; tested value C: 86.36%; H: 5.47%; N: 5.45%; Si: 2.72%.
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