TY - JOUR
T1 - One-Pot Synthesis of Zeolitic Strong Solid Bases
T2 - A Family of Alkaline-Earth Metal-Containing Silicalite-1
AU - Zhou, Yu
AU - Jin, Yanhua
AU - Wang, Meng
AU - Zhang, Wei
AU - Xie, Jingyan
AU - Gu, Jing
AU - Wen, Haimeng
AU - Wang, Jun
AU - Peng, Luming
N1 - Publisher Copyright:
© 2015 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim.
PY - 2015/10/1
Y1 - 2015/10/1
N2 - Fabricating stable strong basic sites in well-preserved crystallized zeolitic frameworks still remains a difficult issue. Here, we reported a family of MFI-type metallosilicate zeolites, AeS-1 (Ae: alkaline-earth metal ions of Mg, Ca, Sr or Ba; S-1: silicalite-1) through a direct one-pot hydrothermal method involving the acidic co-hydrolysis/condensation of the silica precursor with the Ae salts. Step-by-step full characterizations were designed and conducted for in-depth discussion of the Ae status in AeS-1. Strong basicity (H-≈22.5-26.5) was detected in AeS-1. The basicity was further confirmed by CO2 sorption measurements, 13C NMR spectra of chloroform-adsorbed samples, and 1H→13C and 1H→29Si cross-polarization magic-angle spinning NMR spectra of ethyl cyanoacetate-adsorbed samples. The results of Knoevenagel condensations demonstrated the excellent solid base catalysis of AeS-1, which showed high activity, reusability, and shape-selectivity, all of which are explained by Ae-derived zeolitic intracrystalline strong basic sites. Basic instinct: A family of alkaline-earth metal-containing silicalite-1 zeolites was synthesized in a one-pot hydrothermal system involving an unusual acidic co-hydrolysis/condensation of the silica precursor with alkaline-earth salts. This generated a new type of strong zeolitic solid bases with superior basicity and well-preserved zeolite crystalline structure.
AB - Fabricating stable strong basic sites in well-preserved crystallized zeolitic frameworks still remains a difficult issue. Here, we reported a family of MFI-type metallosilicate zeolites, AeS-1 (Ae: alkaline-earth metal ions of Mg, Ca, Sr or Ba; S-1: silicalite-1) through a direct one-pot hydrothermal method involving the acidic co-hydrolysis/condensation of the silica precursor with the Ae salts. Step-by-step full characterizations were designed and conducted for in-depth discussion of the Ae status in AeS-1. Strong basicity (H-≈22.5-26.5) was detected in AeS-1. The basicity was further confirmed by CO2 sorption measurements, 13C NMR spectra of chloroform-adsorbed samples, and 1H→13C and 1H→29Si cross-polarization magic-angle spinning NMR spectra of ethyl cyanoacetate-adsorbed samples. The results of Knoevenagel condensations demonstrated the excellent solid base catalysis of AeS-1, which showed high activity, reusability, and shape-selectivity, all of which are explained by Ae-derived zeolitic intracrystalline strong basic sites. Basic instinct: A family of alkaline-earth metal-containing silicalite-1 zeolites was synthesized in a one-pot hydrothermal system involving an unusual acidic co-hydrolysis/condensation of the silica precursor with alkaline-earth salts. This generated a new type of strong zeolitic solid bases with superior basicity and well-preserved zeolite crystalline structure.
KW - alkaline-earth metals
KW - heterogeneous catalysis
KW - hydrothermal synthesis
KW - solid bases
KW - zeolites
UR - http://www.scopus.com/inward/record.url?scp=84945475095&partnerID=8YFLogxK
U2 - 10.1002/chem.201501894
DO - 10.1002/chem.201501894
M3 - 文章
AN - SCOPUS:84945475095
SN - 0947-6539
VL - 21
SP - 15412
EP - 15420
JO - Chemistry - A European Journal
JF - Chemistry - A European Journal
IS - 43
ER -