Initiating system for preparing high-reaction activity polyisobutene and copolymer of polyisobutene
A high-reactivity, polyisobutylene technology is applied in the field of initiating systems for preparing high-reactivity polyisobutylene and its copolymers, and achieves the effects of reducing the formation of tertiary chlorine end groups, wide adjustment range and lowering production costs.
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Embodiment 1
[0029] Example 1: Under the protection of high-purity nitrogen, add H 2 O, ethanol and FeCl 3 The initiator system initiates the polymerization of isobutylene, where [H 2 O]=1.1mmol / L, [ethanol]=6mmol / L, [FeCl 3 ] = 5 mmol / L. React at 0°C for 10 min, add 1 mL of 0.1 g / L NaOH / C 2 h 5 OH solution to terminate the reaction. The polymer product was precipitated with ethanol, washed repeatedly with deionized water and ethanol, and finally dried in a vacuum oven at 40°C for 24 hours to remove volatile impurities. The yield of polyisobutylene product is 42%, number average molecular weight (M n ) is 800, the molecular weight distribution index (M w / M n ) was 1.9, and the terminal α-double bond content was 85%.
Embodiment 2
[0030] Example 2: Under the protection of high-purity nitrogen, add H 2 O, isopropanol and FeCl 3 Initiate the polymerization of isobutylene, where [H 2 O]=1.1mmol / L, [isopropanol]=5mmol / L, [FeCl 3 ] = 5 mmol / L. React at 0°C for 10 minutes. Termination and post-processing methods are the same as in Example 1. The yield of polyisobutylene product was 39%. The number average molecular weight of isobutylene product is 1300, molecular weight distribution index (M w / M n ) was 2.1, and the terminal α-double bond content was 87%.
Embodiment 3
[0031] Example 3: Under the protection of high-purity nitrogen, add H 2 O, butanone and FeCl 3 Initiate the polymerization of isobutylene, where [H 2 O]=1.1mmol / L, [butanone]=4.8mmol / L, [FeCl 3 ] = 5 mmol / L. React at 0°C for 10 minutes. Termination and post-processing methods are the same as in Example 1. The yield of polyisobutylene product is 62%, M n for 850, M w / M n is 2.1. The isobutene product has a terminal α-double bond content of 89%.
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