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CATALYST FOR THE SYNTHESIS OF CF3I AND CF3CF2I 发明申请

2023-12-16 4510 278K 0

专利信息

申请日期 2025-06-28 申请号 KR1020080013380
公开(公告)号 KR1020080076793A 公开(公告)日 2008-08-20
公开国别 KR 申请人省市代码 全国
申请人 HONEYWELL INTERNATIONAL INC
简介 PURPOSE : A process for producing trifluoroiodomethane(CF3I) and pentafluoroiodoethane(C2F5I) by using elements with a d^1 s^1 configuration or lanthanide elements as catalysts is provided, and a process for producing trifluoroiodomethane(CF3I) and pentafluoroiodoethane(C2F5I) by using transition metals, noble metals, or rare earth metals as promoters for the activity of the catalysts is provided. CONSTITUTION : A process for producing a fluoroiodoalkane compound represented by the formula, CF3(CF2)n-Y, wherein n is 0 or 1, comprises the step of contacting A, B and C, wherein A is represented by the formula, CF3(CF2)n-Y, wherein n is 0 or 1, Y is selected from the group consisting of H, Cl, Br, and COOH, B is an iodine source, and C is a catalyst comprising elements with a d^1 s^1 configuration and lanthanide elements, and wherein the process is performed at a temperature for a contact time sufficient to produce the fluoroiodoalkane compound. The contacting step is conducted in the presence of a catalyst modifier for the catalyst, wherein the catalyst modifier comprises at least one element selected from the group consisting of a transition metal element, a main group element, salts thereof, and combinations thereof. The process further comprises the step of passing the fluoroiodoalkane through a scrubber containing an aqueous alkali solution. The process further comprises the step of passing the fluoroiodoalkane through a scrubber containing a drying agent. The process further comprises the step of cooling the fluoroiodoalkane at a temperature below the boiling temperature of the fluoroiodoalkane to condense the fluoroiodoalkane. The process comprises the step of separating the fluoroiodoalkane in the essentially pure form from the reaction mixture. Further, the step of contacting A, B and C is performed under existence of dilution solution and oxygen source. © KIPO 2008


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