Lamberti C, Bordiga S, Zecchina A, Artioli G, Marra G, Spanò G
Contribution from the Dipartimento di Chimica IFM, Università di Torino, Via P. Giuria 7, 10125 Torino, Italy.
J Am Chem Soc. 2001 Mar 14;123(10):2204-12. doi: 10.1021/ja003657t.
The first direct evidence that Ti atoms are not equally distributed in the 12 crystallographically independent T sites of the MFI framework is presented on the basis of neutron diffraction data collected at the HRPD instrument of the ISIS pulsed neutron source. We found strong evidence indicating that T6, T7, and T11 are the most populated sites and weak evidence that Ti may be hosted in T10. Ti occupancy can be excluded for sites T1, T2, T4, T5, T9, and T12. The occupancy of the remaining sites is doubtful. Since defective silicalite has been shown to exhibit the same preferential sites (T6, T7, T11, and T10) for Si vacancies, it may be suggested that the incorporation mechanism of the Ti atoms in the MFI framework occurs via the insertion of titanium in the defective sites. This hypothesis implies that titanium has a mineralizing effect on the MFI framework, and it is supported by independent spectroscopic data on both TS-1 and defective silicalite. The results are discussed in comparison with the known substitution mechanisms in the T-sites of MFI-type structures.
基于在ISIS脉冲中子源的HRPD仪器上收集的中子衍射数据,首次给出了Ti原子在MFI骨架的12个晶体学独立T位中分布不均的直接证据。我们发现有力证据表明T6、T7和T11是占据最多的位点,而关于Ti可能存在于T10位的证据较弱。对于T1、T2、T4、T5、T9和T12位,可以排除Ti的占据。其余位点的占据情况存疑。由于已表明缺陷硅沸石对Si空位表现出相同的优先位点(T6、T7、T11和T10),因此可以推测Ti原子在MFI骨架中的掺入机制是通过钛插入缺陷位点来实现的。这一假设意味着钛对MFI骨架具有矿化作用,并且得到了关于TS-1和缺陷硅沸石的独立光谱数据的支持。将这些结果与MFI型结构T位中已知的取代机制进行了比较讨论。