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Amino acid-assisted synthesis of TS-1 zeolites containing highly catalytically active TiO6 species
Tailoring the Ti coordination states in titanosilicate zeolites to simultaneously improve feedstock conversion and maximize the target product selectivity remains a challenge in the pursuit of high-performance catalysts for selective oxidation reactions. Herein, we provide a facile strategy to synthesize hierarchical anatase-free TS-1 ( MFI -type) zeolites with tetrahedrally coordinated (TiO 4 ) and octahedrally coordinated Ti species (TiO 6 ). The TiO 4 species provide high epoxide selectivity, while the TiO 6 species afford improved alkene conversion. This strategy is achieved by synergistically using an L-lysine-assisted approach and a two-step crystallization; the two-step crystallization approach prevents the formation of anatase TiO 2 , while L-lysine stabilizes the TiO 6 species and ensures efficient incorporation of TiO 6 into the anatase-free TS-1 zeolites. Compared with their conventional counterparts, which only contain TiO 4 species, the as-prepared TS-1 zeolites (Si/Ti = 36.9) result in a higher 1-hexene conversion (33%), higher TON value (153), and comparable epoxide selectivity (95%). This synthetic strategy provides avenues to tailor the amount and distribution of Ti species in titanosilicate zeolites to achieve high catalytic performances in various processes.