Method for synthesizing silyl-terminated polyether
A technology of silane-terminated polyether and radical-based polyether is applied in the field of synthesizing silane-terminated polyether, which can solve the problems of unavoidable use of isocyanate compounds, strict requirements on synthesis process parameters, and inability to meet environmental protection requirements, so as to achieve smooth synthesis process. , easy to produce on industrial scale, simple steps
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Embodiment 1
[0017] Addition of propylene oxide to the ethylene glycol starting compound by double metal cyanide (DMC) catalysis, to obtain a two-terminal polyether with a molecular weight of 5000, the end group of the two-terminal polyether is the same as the DMC catalytic active group After removing the unreacted propylene oxide, add γ-glycidyl etheroxypropyl trimethoxysilane, under the action of DMC catalytic active group, γ-glycidyl etheroxypropyl trimethoxysilane The base trimethoxysilane is connected to the terminal oxygen atom of the polyether through the ring-opening addition reaction of the epoxy group, and the terminal trimethoxysilyl polyether is obtained after purification.
Embodiment 2
[0019] Addition and polymerization of propylene oxide to the diethylene glycol starting compound by double metal cyanide (DMC) catalysis, to obtain a two-terminal polyether with a molecular weight of 1000. After removing the unreacted propylene oxide, add γ-glycidyl etheroxypropylmethyl dimethoxysilane, and under the action of DMC catalytic active group, γ-glycidol Etheroxypropylmethyldimethoxysilane is connected to the terminal oxygen atom of the polyether through epoxy group ring-opening addition reaction, and the terminal methyldimethoxysilyl polyether is obtained after purification.
Embodiment 3
[0021] Addition and polymerization of propylene oxide to the triethylene glycol starting compound by double metal cyanide (DMC) catalysis, to obtain a three-terminal polyether with a molecular weight of 10,000. After removing the unreacted propylene oxide, add γ-glycidyl etheroxypropylmethyl diethoxysilane, and under the action of DMC catalytic active group, γ-glycidol Etheroxypropylmethyldiethoxysilane is connected to the terminal oxygen atom of the polyether through epoxy group ring-opening addition reaction, and the terminal methyldiethoxysilyl polyether is obtained after purification.
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