Blue organic electroluminescent phosphorescent material-iridium metal complex, preparation method thereof and organic electroluminescence device
A technology of iridium metal complex and phosphorescent material, applied in the field of organic electroluminescence, can solve the problems of insufficient luminous color purity, luminous efficiency device efficiency attenuation, poor stability, short life, etc., and achieves low processing cost and preparation technology. Easy to control and stable effect
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[0063] see figure 2 , the preparation method of the above-mentioned blue light organic electrophosphorescent material iridium metal complex, comprising the following steps:
[0064] S01: respectively provide compound A and compound B represented by the following structural formula:
[0065]
[0066] Wherein, R is a hydrogen atom, an alkyl group or an alkoxy group;
[0067] S02: Under the conditions of catalyst, alkali and organic solvent, compound A and compound B are heated to perform Suzuki coupling reaction to obtain a ring metal ligand;
[0068] S03: Polymerize the ring metal ligand obtained in step S02 with 2-ethoxyethanol and water mixture to obtain a chlorine-bridged dimer;
[0069] S04: Polymerize the chlorine bridge dimer obtained in step S03 with an auxiliary ligand source to obtain a blue-light organic electrophosphorescent material iridium metal complex with the structural formula shown in formula (1):
[0070]
[0071] Among them, R is a hydrogen atom, a...
Embodiment 1
[0098] Example 1: A blue-light organic electrophosphorescent material iridium metal complex bis(3-(4',6'-difluoro-5'-trifluoromethylphenyl)pyridazine-N,C 2 ') (tetra(1-pyrazole) boron) iridium, as shown in the following structural formula:
[0099]
[0100] The preparation method of the above-mentioned blue light organic electrophosphorescent material iridium metal complex comprises the following steps:
[0101] (1) Provide compound A1 and compound B represented by the following structural formula respectively:
[0102]
[0103] (2) Synthesis of cyclometal ligand 3-(2’,4’-difluoro-3’-trifluoromethylphenyl)pyridazine
[0104]
[0105] Under nitrogen protection, 3.18g (20mmol) of compound A1 (3-bromopyridazine), 5.42g (24mmol) of compound B (2,4-difluoro-3-trifluoromethylphenylboronic acid), 80mL toluene, 20mL water, 3.22g (10mmol) tetrabutylammonium bromide (TBTA), 5.53g (40mmol) anhydrous potassium carbonate, 0.23g (0.2mmol) tetrakis (triphenylphosphine) palladium, ...
Embodiment 2
[0126] Example 2: A blue-light organic electrophosphorescent material iridium metal complex bis(3-(4',6'-difluoro-5'-trifluoromethylphenyl)pyridazine-N,C 2 ')(3-trifluoromethyl-5-(pyridine-2'-yl)-1,2,4-triazole) iridium, as shown in the following structural formula:
[0127]
[0128] The preparation method of the above-mentioned blue light organic electrophosphorescent material iridium metal complex comprises the following steps:
[0129] (1) Provide compound A1 and compound B represented by the following structural formula respectively:
[0130]
[0131] (2) Synthesis of cyclometal ligand 3-(2’,4’-difluoro-3’-trifluoromethylphenyl)pyridazine
[0132]
[0133] Under nitrogen protection, 3.18g (20mmol) of compound A1 (3-bromopyridazine), 4.52g (20mmol) of compound B (2,4-difluoro-3-trifluoromethylphenylboronic acid), 80mL toluene, 20mL water, 3.22g (10mmol) tetrabutylammonium bromide (TBTA), 1.38g (10mmol) anhydrous potassium carbonate, 0.023g (0.02mmol) tetrakis (tr...
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