Synthesis of Linalyl Acetate Catalyzed by Solid Acid HMCM-41
Wei Rongba
Abstract
Wei Rongba
Abstract
Linalyl acetate is a kind of important perfume in the formation of advanced perfumery compounds. Chemical routes for the synthesis of linalyl acetate mainly involve acidic catalysis from linalool or the Williamson method starting with halohydrocarbon. Besides the unfriendliness of the reaction systems, low synthetic yields were obtained, which can be due to many secondary reactions and their by-products. In this paper, mesoporous molecular sieve HMCM-41 is found to be a remarkably effective and regenerable heterogeneous solid-acid catalyst for the catalyzed synthesis of linalyl acetate from linalool and acetic anhydride. Experimental parameters were discussed. The transforming ratio of linalool is about 99%, the yield of linalyl acetate is above 50%.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Linalyl acetate is a kind of important perfume in the formation of advanced perfumery compounds. Chemical routes for the synthesis of linalyl acetate mainly involve acidic catalysis from linalool or the Williamson method starting with halohydrocarbon. Besides the unfriendliness of the reaction systems, low synthetic yields were obtained, which can be due to many secondary reactions and their by-products. In this paper, mesoporous molecular sieve HMCM-41 is found to be a remarkably effective and regenerable heterogeneous solid-acid catalyst for the catalyzed synthesis of linalyl acetate from linalool and acetic anhydride. Experimental parameters were discussed. The transforming ratio of linalool is about 99%, the yield of linalyl acetate is above 50%.
Key concepts: Linalyl acetate, Linalool, Chemistry, Acetic anhydride, Catalysis, Acetic acid, Organic chemistry, Yield (engineering)