The structural, electronic, and the bonding properties of the zeolite Sn-beta (Sn-BEA) have been investigated by using the periodic density functional theory. Each of the nine different T-sites in BEA were substituted by Sn atoms and all the nine geometries were completely optimized by using the plane-wave basis set in conjunction with the ultra-soft pseudopotential. On the basis of the structural and the electronic properties, it has been demonstrated that the substitution of Sn atoms in the BEA framework is an endothermic process and hence the incorporation of Sn in the BEA is limited. The lowest unoccupied molecular orbitals (LUMO) energies have been used to characterize the Lewis acidity of each T-site. On the basis of the relative cohe...
Tetravalent-ion (M4+)-doped zeolites show excellent performances for a variety of catalytic processe...
Chabazite (CHA) molecular sieves, which are industrial catalysts for the selective reduction of nitr...
We have proposed a combination of density functional theory calculations and interatomic potential-b...
The structural, electronic, and the bonding properties of the zeolite Sn-beta (Sn-BEA) have been inv...
The Lewis acidic nature and reactivity of two industrially important catalysts, viz., Sn and Ti subs...
The siting of Ti, Sn, and Zr framework heteroatoms in zeolite BEA and the resulting Lewis acidity we...
A highly active Sn site with Lewis acid properties is identified in post-synthetically synthesized S...
M(IV)-incorporated zeolites have recently aroused wide interest due to outstanding catalytic effects...
Density functional theory (DFT) has been performed to characterize the structural stability and Lewi...
Sn-beta zeolites prepared using different recipes feature very different catalytic activities for aq...
© The Royal Society of Chemistry. The selective incorporation of isolated framework Lewis acid sites...
Sn-Beta zeolite was prepared by acid dealumination of Beta zeolite, followed by dehydration and impr...
The adsorption properties of framework Sn sites in a siliceous zeolite beta were examined by compari...
The isomerization of glucose to fructose in the presence of Sn-containing zeolite BEA (beta polymorp...
Tetravalent-ion (M4+)-doped zeolites show excellent performances for a variety of catalytic processe...
Chabazite (CHA) molecular sieves, which are industrial catalysts for the selective reduction of nitr...
We have proposed a combination of density functional theory calculations and interatomic potential-b...
The structural, electronic, and the bonding properties of the zeolite Sn-beta (Sn-BEA) have been inv...
The Lewis acidic nature and reactivity of two industrially important catalysts, viz., Sn and Ti subs...
The siting of Ti, Sn, and Zr framework heteroatoms in zeolite BEA and the resulting Lewis acidity we...
A highly active Sn site with Lewis acid properties is identified in post-synthetically synthesized S...
M(IV)-incorporated zeolites have recently aroused wide interest due to outstanding catalytic effects...
Density functional theory (DFT) has been performed to characterize the structural stability and Lewi...
Sn-beta zeolites prepared using different recipes feature very different catalytic activities for aq...
© The Royal Society of Chemistry. The selective incorporation of isolated framework Lewis acid sites...
Sn-Beta zeolite was prepared by acid dealumination of Beta zeolite, followed by dehydration and impr...
The adsorption properties of framework Sn sites in a siliceous zeolite beta were examined by compari...
The isomerization of glucose to fructose in the presence of Sn-containing zeolite BEA (beta polymorp...
Tetravalent-ion (M4+)-doped zeolites show excellent performances for a variety of catalytic processe...
Chabazite (CHA) molecular sieves, which are industrial catalysts for the selective reduction of nitr...
We have proposed a combination of density functional theory calculations and interatomic potential-b...