Ethylene oligomerization catalyst composition containing 1, 10-phenanthroline amino-iron (II) complex substituted by propionyl
A technology for the oligomerization of phenanthroline amines and ethylene, which is applied in organic compound/hydride/coordination complex catalysts, physical/chemical process catalysts, hydrocarbons, etc., and can solve high cost, large consumption, and production costs Expensive and other issues
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Embodiment 1
[0036] 1. Synthesis of Catalyst Chloride 2-n-propionyl-1,10-phenanthroline 2,6-diethylanilinate iron (II) complex
[0037] a. Synthesis of 2-n-propionyl-1,10-phenanthroline
[0038] Put 5.1 g (28.3 mmol) of 1,10-phenanthroline into a 250 ml three-necked flask, and dissolve it with 100 ml of toluene under nitrogen protection and magnetic stirring. Slowly add 13.5ml of tri-n-propylaluminum (d=0.82g / ml, 70.9mmol) dropwise to the three-necked flask under stirring at -60°C, the dropwise addition is completed in about 15 minutes, and continue stirring at this temperature for 18h. Afterwards, the temperature was raised to about 30° C., and stirring was continued for 10 h. Then the reaction mixture was cooled to about -30°C, 50ml of distilled water was slowly added thereto, and then heated to 30°C and stirred for 10h. Then separate the liquids, take out the organic phase, and extract the inorganic phase three times with dichloromethane, each time the consumption of dichloromethane i...
Embodiment 2
[0052] Using the main catalyst prepared in Example 1, the cocatalyst is triethylaluminum to carry out ethylene oligomerization, the difference from Example 1 is: the consumption of triethylaluminum toluene solution is 2.15ml (concentration is 0.74mol / l ), so that Al / Fe=796. At 30°C, the ethylene pressure was maintained at 1 MPa, and the reaction was stirred for 30 minutes. A small amount of reaction mixture was taken out with a syringe and neutralized with 5% dilute hydrochloric acid for GC analysis: the oligomerization activity was 2.45×10 6 g·mol -1 (Fe)·h -1 , the oligomer contents are C 4 16.3%, C 6 ~C 10 51.1%, C 6 ~C 18 77.5% (including 88.2% linear α-olefins), C 20 ~C 28 6.2%. The remaining reaction mixture was neutralized with 5% hydrochloric acid in ethanol, and no polymer was obtained. The analysis results are shown in Table 1.
Embodiment 3
[0054] Using the main catalyst prepared in Example 1, the cocatalyst is triethylaluminum to carry out ethylene oligomerization, the difference from Example 1 is: the consumption of triethylaluminum toluene solution is 1.88ml (concentration is 0.74mol / l ), so that Al / Fe=696. At 30°C, the ethylene pressure was maintained at 1 MPa, and the reaction was stirred for 30 minutes. A small amount of reaction mixture was taken out with a syringe and neutralized with 5% dilute hydrochloric acid for GC analysis: the oligomerization activity was 3.23×10 6 g·mol -1 (Fe)·h -1 , the oligomer contents are C 4 18.9%, C 6 ~C 10 55.8%, C 6 ~C 18 76.4% (including 88.4% linear α-olefins), C 20 ~C 28 4.7%. The remaining reaction mixture was neutralized with 5% hydrochloric acid in ethanol, and no polymer was obtained. The analysis results are shown in Table 1.
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