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Nanocatalyst-Assisted Facile One-Pot Synthesis of Glycidol from Glycerol and Dimethyl Carbonate

[Image: see text] This paper reports the facile one-pot synthesis of glycidol via the transesterification of glycerol with dimethyl carbonate using KNO(3)/Al(2)O(3) nanoparticles as supporting catalysts. KNO(3)/Al(2)O(3) nanoparticles were prepared by the impregnation method. XRD and FT-IR analyses...

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Detalles Bibliográficos
Autores principales: Elhaj, Elrasheed, Wang, Huajun, Imran, Mohd, Hegazi, Salah Eldeen F, Hassan, Mohamed, Eldoma, Mubarak A, Hakami, Jabir, Wani, Waseem A., Chaudhary, Anis Ahmad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9476187/
https://www.ncbi.nlm.nih.gov/pubmed/36120042
http://dx.doi.org/10.1021/acsomega.2c02381
Descripción
Sumario:[Image: see text] This paper reports the facile one-pot synthesis of glycidol via the transesterification of glycerol with dimethyl carbonate using KNO(3)/Al(2)O(3) nanoparticles as supporting catalysts. KNO(3)/Al(2)O(3) nanoparticles were prepared by the impregnation method. XRD and FT-IR analyses indicated an interaction between KNO(3) and Al(2)O(3) that enabled the decomposition of KNO(3) during the process and resulted in the formation of KAl(5)O(8), the Al–O–K group, and K(2)O. K(2)O was recognized as one of the active sites of the catalyst. SEM results indicated the high performance of the supporting catalyst, as the catalytic activity depended on both the number of catalytic active sites and their distribution. The yield of glycidol was 64% at the expense of 95% glycerol under moderate reaction conditions (120 min, 1 atm, and 70 °C). The nanocatalyst prepared at 800 °C with a loading amount of 30% KNO(3) was the most efficient for the synthesis of glycidol. Furthermore, the catalyst was recovered and reused without a loss of efficiency even after the fourth recycling. A plausible mechanism for the one-pot synthesis of glycidol has also been proposed.