A kind of d-r-a based small molecule host material and its preparation method and application
A host material and small molecule technology, applied in the field of D-R-A-based small molecule host materials and their preparation, can solve the problems of device performance degradation and annihilation, and achieve the effects of low conjugation length, good reproducibility and novel structure
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Embodiment 1
[0058] Step 1: Preparation of 2-(3,6-dibromocarbazol-9-yl)ethanol (a1)
[0059]
[0060] Under nitrogen atmosphere, add potassium hydroxide (KOH) (10.52g, 187.5mmol), 60mlDMF, 3,6-dibromocarbazole (9.76g, 30.0mmol) to a 250ml three-necked flask, stir for 30min, and gradually 2-Bromoethanol (2.4ml, 31.5mmol) was added dropwise, the mixture was heated to 155°C and reacted overnight. After cooling to room temperature, add an appropriate amount of water to quench the reaction, dilute with dichloromethane (DCM), separate the liquids to obtain an organic phase, extract the water phase with DCM 3 times, combine the organic phases, and wash the organic layer 3 times with saturated brine . Dry over anhydrous magnesium sulfate, filter with suction, remove the solvent from the obtained filtrate under reduced pressure; column separation (9.15g, 24.8mmol) white solid. Yield 82.7%. 1 HNMR (300MHz, CDCl 3 ), 8.14(s,2H),7.57-7.54(d,2H),7.35-7.32(d,2H),4.42(t,2H),4.03(t,2H). 13 CNMR ...
Embodiment 2
[0068] Step 1: Preparation of 6-(3,6-dibromocarbazol-9-yl)-hexan-1-ol (b1)
[0069]
[0070] Under a nitrogen atmosphere, add KOH (10.5g, 187.5mmol), 60mlDMF, 3,6-dibromocarbazole (9.75g, 30.0mmol) into a 250ml three-necked flask, stir for 30min, and add 6- Chlorohex-1-ol (4.4ml, 31.5mmol), the mixture was heated to 155°C and reacted overnight. After cooling to room temperature, an appropriate amount of water was added to quench the reaction, diluted with DCM, and separated to obtain an organic phase. The aqueous phase was extracted three times with DCM, the organic phases were combined, and the organic layer was washed three times with saturated brine. Dry over anhydrous magnesium sulfate, filter with suction, remove the solvent from the filtrate under reduced pressure; column separation (6.36g, 15.0mmol) white solid. Yield 50.0%. 1 HNMR (300MHz, CDCl 3 ), 8.14(s,2H),7.55(d,2H),7.28-7.25(d,2H),4.25(t,2H),3.62(t,2H),1.90-1.80(m,2H),1.60-1.50( m,2H),1.40(m,4H). 13 CNM...
Embodiment 3
[0078] Step 1: Preparation of 3,6-dibromo-9-(6-bromohexyl)-9H-carbazole (C1)
[0079]
[0080] Under a nitrogen atmosphere, sodium hydride (NaH) (1.44 g, 60 mmol) was added to a three-necked flask equipped with 80 ml of anhydrous THF, and then 3,6-dibromocarbazole (9.75 g, 30.0 mmol) was slowly added, and again Add 1,6-dibromohexane (22.0 g, 90.0 mmol) gradually, heat the mixture to reflux, and react overnight. After cooling to room temperature, it was poured into water, diluted with DCM, and separated to obtain an organic phase. The aqueous phase was extracted 3 times with DCM, the organic phases were combined, and the organic layer was washed 3 times with saturated brine. Dry over anhydrous magnesium sulfate, filter with suction, remove the solvent from the filtrate under reduced pressure; column separation (4.63g, 9.49mmol) white solid. Yield 31.6%. 1 HNMR (300MHz, CDCl 3 ), 8.14(s,2H),7.55(d,2H),7.28-7.25(d,2H),4.26(t,2H),3.36(t,2H),1.91-1.76(m,4H),1.50-1.40( m,2H...
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