Pulido Angeles, Sastre German, Corma Avelino
Instituto de Tecnologia QuimicaUPV-CSIC, Av/Los Naranjos s/n, 46022 Valencia, Spain.
Chemphyschem. 2006 May 12;7(5):1092-9. doi: 10.1002/cphc.200500634.
(19)F NMR chemical shifts are calculated in order to study the F(-) environment in double four ring (D4R) containing Si/Ge-zeolites. The calculations with the DFT/CSGT/B3PW91 methodology yielded an agreement within 2 ppm with respect to the experimental peaks corresponding to the D4R units containing 8Si0Ge, 7Si1Ge and 0Si8Ge of the octadecasil zeolite. The optimisation of the 7Si1Ge-, 6Si2Ge-, 5Si3Ge- and 4Si4Ge-D4R units with DFT/B3LYP methodology shows that a covalent Ge-F bond is formed and therefore a Ge atom in the D4R is pentacoordinated. The displacement of the fluoride ion towards a Ge atom in the Ge-containing D4R units locates four Si/Ge atoms in the close vicinity of the F(-) and this makes possible a rationalization of the (19)F NMR signals in groups according to the number of Si (n) and Ge (m) atoms in the nearest F(-) environment, F-Si(n)Ge(m) (where n+m=4). Thus, the calculated chemical shifts show that higher values are observed when the number of Ge atoms in the nearest F(-) environment increases.
计算¹⁹F核磁共振化学位移,以研究含硅/锗沸石中双四环(D4R)的F⁻环境。采用DFT/CSGT/B3PW91方法进行的计算,与对应于八面沸石中含8Si0Ge、7Si1Ge和0Si8Ge的D4R单元的实验峰相比,在2 ppm范围内达成了一致。采用DFT/B3LYP方法对7Si1Ge-、6Si2Ge-、5Si3Ge-和4Si4Ge-D4R单元进行优化表明,形成了共价Ge-F键,因此D4R中的Ge原子为五配位。在含锗的D4R单元中,氟离子向Ge原子的位移使得四个Si/Ge原子位于F⁻的紧邻位置,这使得根据最近F⁻环境中Si(n)和Ge(m)原子的数量,即F-Si(n)Ge(m)(其中n + m = 4),对¹⁹F核磁共振信号进行分组合理化成为可能。因此,计算得到的化学位移表明,当最近F⁻环境中Ge原子的数量增加时,会观察到更高的值。