TY - JOUR
T1 - Multilayer structured MFI-type titanosilicate
T2 - Synthesis and catalytic properties in selective epoxidation of bulky molecules
AU - Wang, Jianggan
AU - Xu, Le
AU - Zhang, Kun
AU - Peng, Honggen
AU - Wu, Haihong
AU - Jiang, Jin Gang
AU - Liu, Yueming
AU - Wu, Peng
PY - 2012/4
Y1 - 2012/4
N2 - A lamellar titanosilicate (LTS-1) was hydrothermally synthesized by employing a bifunctional surfactant as the structure-directing agent (SDA). Highly crystalline LTS-1 was obtained at an optimal SDA/Si molar ratio of 0.04. As-synthesized LTS-1 possessed a multilayer structure, which was constructed from a collection of 2-nm zeolite nanosheets and interlayer SDA molecules. Removing the intercalated organic species induced irregular layer stacking to a certain extent, leading to intracrystal mesopores of ca. 3.2 nm in diameter. The catalytic performance of LTS-1 was investigated in the epoxidation of various bulky alkenes with tert-butyl hydroperoxide, cumene hydroperoxide, or aqueous H 2O 2. LTS-1 was more active than conventional titanosilicates for reactions involving bulky alkenes and oxidants, and it was immune to Ti leaching and irreversible deactivation.
AB - A lamellar titanosilicate (LTS-1) was hydrothermally synthesized by employing a bifunctional surfactant as the structure-directing agent (SDA). Highly crystalline LTS-1 was obtained at an optimal SDA/Si molar ratio of 0.04. As-synthesized LTS-1 possessed a multilayer structure, which was constructed from a collection of 2-nm zeolite nanosheets and interlayer SDA molecules. Removing the intercalated organic species induced irregular layer stacking to a certain extent, leading to intracrystal mesopores of ca. 3.2 nm in diameter. The catalytic performance of LTS-1 was investigated in the epoxidation of various bulky alkenes with tert-butyl hydroperoxide, cumene hydroperoxide, or aqueous H 2O 2. LTS-1 was more active than conventional titanosilicates for reactions involving bulky alkenes and oxidants, and it was immune to Ti leaching and irreversible deactivation.
KW - Epoxidation of alkenes
KW - Layered titanosilicate
KW - Mesoporous material
KW - TS-1
KW - Ti-MCM-41
KW - tert-Butyl hydroperoxide
UR - https://www.scopus.com/pages/publications/84862807599
U2 - 10.1016/j.jcat.2011.12.023
DO - 10.1016/j.jcat.2011.12.023
M3 - 文章
AN - SCOPUS:84862807599
SN - 0021-9517
VL - 288
SP - 16
EP - 23
JO - Journal of Catalysis
JF - Journal of Catalysis
ER -