Shetty Sharan, Pal Sourav, Kanhere Dilip G, Goursot Annick
Theoretical Chemistry Group, Physical Chemistry Division, National Chemical Laboratory, Pune-411008, India.
Chemistry. 2005 Dec 23;12(2):518-23. doi: 10.1002/chem.200500487.
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 cohesive energy and the LUMO energy, the T2 site is shown to be the most favorable site for the substitution Sn atoms in the BEA framework.
采用周期性密度泛函理论研究了沸石β-Sn(Sn-BEA)的结构、电子和键合性质。BEA中九个不同的T位均被Sn原子取代,并使用平面波基组结合超软赝势对所有九种几何结构进行了完全优化。基于结构和电子性质,已证明在BEA骨架中取代Sn原子是一个吸热过程,因此BEA中Sn的掺入受到限制。最低未占据分子轨道(LUMO)能量已用于表征每个T位的路易斯酸度。基于相对内聚能和LUMO能量,T2位被证明是BEA骨架中取代Sn原子的最有利位点。