Carbazole derivative and application thereof
An electroluminescent device and anode technology, which is applied in the direction of organic chemistry, luminescent materials, chemical instruments and methods, etc., can solve the problems of expensive precious metal raw materials, lack of main materials of deep blue light materials, etc., to reduce power consumption and improve fluorescence luminous efficiency Effect
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Synthetic example 1
[0056]
[0057] Under argon flow, 4-bromo-9-phenylcarbazole (32.2g, 0.1mol), aniline (9.3g, 0.1mol), tris(dibenzylideneacetone) dipalladium ( 0) [Pd2(dba)3] 0.92g, tri-tert-butylphosphine 50% toluene solution 0.92ml, sodium tert-butoxide (19.2g, 0.2mol), dehydrated toluene 250mL, reflux reaction for 3 hours. After cooling, water and EA were added for extraction, the organic phase was filtered through celite and concentrated, and the obtained crude product was washed with ethanol to obtain a light yellow solid M1=21.9 g, yield 84.5%.
[0058] Under argon flow, put 1,6-dibromopyrene (3.6g, 0.01mol), N-[4-(N-phenylcarbazole)]-aniline (6.7g, 0.02mol) into a 250mL eggplant-shaped flask , Tris (dibenzylidene acetone) dipalladium (0) [Pd2 (dba) 3] 0.08g, tri-tert-butylphosphine 50% toluene solution 0.5ml, sodium tert-butoxide (2.9g, 0.03mol), dehydrated toluene 100mL, reflux reaction for 3 hours. After cooling, the reaction solution was filtered with diatomaceous earth, and the ...
Synthetic example 2
[0061] Compound A2 was prepared in the same manner as in Example 1, except that N-[4-(N-phenylcarbazole)]-aniline was replaced by equivalent N-[4-(N-phenylcarbazole)] -2-Methylaniline, after the reaction was completed, 6.7 g of white solid was isolated, with a yield of 75%.
Synthetic example 3
[0063] Compound A3 was prepared in the same manner as in Example 1, except that N-[4-(N-phenylcarbazole)]-aniline was replaced by equivalent N-[4-(N-phenylcarbazole)]- After the reaction was completed, 3-methylaniline was isolated to obtain 6.7 g of white solid, with a yield of 75%.
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