Chiral zeolites with intrinsically chiral frameworks are highly desired due to their potential applications in asymmetric catalysis and enantioseparation.Zeolite beta is an intergrowth of chiral polymorph A and achira...Chiral zeolites with intrinsically chiral frameworks are highly desired due to their potential applications in asymmetric catalysis and enantioseparation.Zeolite beta is an intergrowth of chiral polymorph A and achiral polymorph B in a ratio of ca.44:56.The synthesis of chiral polymorph A of zeolite beta or chiral polymorph A-enriched zeolite beta is one of the biggest challenges.By performing a series of control experiments,we identified the key factor promoting the enrichment of chiral polymorph A in pure-silica zeolite beta,i.e.the acidity of the initial mixture.With this discovery,we developed a generalized non-hydrofluoric acid-assisted synthesis route to synthesize polymorph A-enriched pure-silica zeolite beta.Zeolite beta crystals containing more than 70%chiral polymorph A were obtained.This acid assisted method could not only significantly enrich polymorph A in the crystals of pure-silica zeolite beta but also provide a way for avoiding the utilization of highly toxic concentrated hydrofluoric acid.展开更多
基金financial support from the National Natural Science Foundation of China(21571075,21320102001,and 21621001)the National Key Research and Development Program of China(Grant no.2016YFB0701100)+1 种基金the 111 Project(B17020 and B12015)the Program for JLU Science and Technology Innovative Research Team.
文摘Chiral zeolites with intrinsically chiral frameworks are highly desired due to their potential applications in asymmetric catalysis and enantioseparation.Zeolite beta is an intergrowth of chiral polymorph A and achiral polymorph B in a ratio of ca.44:56.The synthesis of chiral polymorph A of zeolite beta or chiral polymorph A-enriched zeolite beta is one of the biggest challenges.By performing a series of control experiments,we identified the key factor promoting the enrichment of chiral polymorph A in pure-silica zeolite beta,i.e.the acidity of the initial mixture.With this discovery,we developed a generalized non-hydrofluoric acid-assisted synthesis route to synthesize polymorph A-enriched pure-silica zeolite beta.Zeolite beta crystals containing more than 70%chiral polymorph A were obtained.This acid assisted method could not only significantly enrich polymorph A in the crystals of pure-silica zeolite beta but also provide a way for avoiding the utilization of highly toxic concentrated hydrofluoric acid.