2009Xi'an Gongcheng Keji Xueyuan xuebaoRequires access

Study of chemical reaction kinetics of N-(diethylenediamino)perfluoroheptyl acidamide

Weisheng Guan

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Abstract

The reaction mechanism and chemical reaction kinetics of N-(diethylenediamino) perfluoroheptyl acidamide is studied.by synthesized dissolvent means,N-(diethylenediamino) perfluoroheptyl acidamide was synthesized with perfluorocaprylic acid and diethylenetriamine and the high efficiency catalyst(CATP),and the reaction mechanism and chemica-l reaction kinetics are studied.The result showes that the yield could reaches to 96%,as the reaction rate k=0.7007×10-3 s-1 after 3h in 130℃.This reaction accorded with the proton condensation reaction mechanism and the first order reaction.

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What this paper is about

The reaction mechanism and chemical reaction kinetics of N-(diethylenediamino) perfluoroheptyl acidamide is studied.by synthesized dissolvent means,N-(diethylenediamino) perfluoroheptyl acidamide was synthesized with perfluorocaprylic acid and diethylenetriamine and the high efficiency catalyst(CATP),and the reaction mechanism and chemica-l reaction kinetics are studied.The result showes that the yield could reaches to 96%,as the reaction rate k=0.7007×10-3 s-1 after 3h in 130℃.This reaction accorded with the proton condensation reaction mechanism and the first order reaction.

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Available abstract

The reaction mechanism and chemical reaction kinetics of N-(diethylenediamino) perfluoroheptyl acidamide is studied.by synthesized dissolvent means,N-(diethylenediamino) perfluoroheptyl acidamide was synthesized with perfluorocaprylic acid and diethylenetriamine and the high efficiency catalyst(CATP),and the reaction mechanism and chemica-l reaction kinetics are studied.The result showes that the yield could reaches to 96%,as the reaction rate k=0.7007×10-3 s-1 after 3h in 130℃.This reaction accorded with the proton condensation reaction mechanism and the first order reaction.

Key concepts: Kinetics, Diethylenetriamine, Catalysis, Reaction mechanism, Chemistry, Yield (engineering), Chemical kinetics, Condensation reaction

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