A kind of fluorenone pyridine green fluorescent material
A technology of green fluorescent and fluorescent materials, which is applied in the field of fluorenone pyridine green fluorescent materials, can solve the problems affecting the chromaticity and color stability of emitted light, and the long-wave emission of excimer associations easily formed.
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Embodiment 1
[0018] Take 3.0mmol of 2,7-diiodo-9-fluorenone, 6mmol of 4-pyridineboronic acid, 30mmol of sodium carbonate, and 0.15mmol of palladium acetate in a 150mL reaction device, and add 50mL of DMF and 5mL of water; place the reaction device in React at 150°C for 12 hours; after the reaction is completed, separate the liquid after cooling the reaction solution, extract the aqueous phase with dichloromethane, and combine the organic phase, then wash the organic phase with saturated brine for 3 times, and then dry it with anhydrous sodium sulfate , filter; use a rotary evaporator to remove the organic solvent in the filtrate to obtain a solid powder, then use ethyl acetate as the eluent to separate and purify by column chromatography, and finally spin dry the ethyl acetate to obtain the fluorenone pyridine green fluorescent material.
Embodiment 2
[0020] Take 3.0mmol of 2,7-diiodo-9-fluorenone, 9mmol of 4-pyridineboronic acid, 30mmol of sodium carbonate, and 0.15mmol of palladium acetate in a 150mL reaction device, and add 50mL of DMF and 5mL of water; place the reaction device in React at 90°C for 24 hours; after the reaction is completed, separate the liquid after the reaction liquid is cooled, extract the aqueous phase with dichloromethane, and combine the organic phase, then wash the organic phase with saturated brine for 3 times, and then dry it with anhydrous sodium sulfate , filter; use a rotary evaporator to remove the organic solvent in the filtrate to obtain a solid powder, then use ethyl acetate as the eluent to separate and purify by column chromatography, and finally spin dry the ethyl acetate to obtain the fluorenone pyridine green fluorescent material.
Embodiment 3
[0022] Take 3.0mmol of 2,7-diiodo-9-fluorenone, 7mmol of 4-pyridineboronic acid, 30mmol of sodium carbonate, and 0.15mmol of palladium acetate in a 150mL reaction device, and add 50mL of DMF and 5mL of water; place the reaction device in React at 120°C for 18 hours; after the reaction is completed, separate the liquid after cooling the reaction solution, extract the aqueous phase with dichloromethane, and combine the organic phase, then wash the organic phase with saturated brine for 3 times, and then dry it with anhydrous sodium sulfate , filter; use a rotary evaporator to remove the organic solvent in the filtrate to obtain a solid powder, then use ethyl acetate as the eluent to separate and purify by column chromatography, and finally spin dry the ethyl acetate to obtain the fluorenone pyridine green fluorescent material.
[0023] The fluorenone pyridine green fluorescent material prepared in the above examples is a powdery solid, and its molecular formula is C 23 h 14 N ...
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