Morra Elena, Giamello Elio, Chiesa Mario
Department of Chemistry, University of Torino, Via Giuria, 7, 10125 Torino (Italy), Fax: (+39) 0116707855; Dutch Polymer Institute (DPI), P.O. Box 902, 5600 AX Eindhoven (The Netherlands).
Chemistry. 2014 Jun 10;20(24):7381-8. doi: 10.1002/chem.201304139. Epub 2014 May 13.
Transition-metal ions with open-shell configurations hold promise in the development of novel coordination chemistry and potentially unprecedented redox catalysis. Framework-substituted Ti(3+) ions with tetrahedral coordination are generated by reductive activation of titanium silicalite-1 with triethylaluminum, an indispensable co-catalyst for heterogeneous Ziegler-Natta polymerization catalysts. Continuous-wave and pulse electron paramagnetic resonance methods are applied to unravel details on the local environment of the reduced transition metal-ions, which are shown to be part of the silica framework by detection of (29)Si hyperfine interactions. The chemical accessibility of the reduced sites is probed using ammonia as probe molecule. Evidence is found for the coordination of a single ammonia molecule. Comparison to similar systems, such as TiAlPO-5, reveals clear differences in the coordination chemistry of the reduced Ti sites in the two solids, which may be understood considering the different electronic properties of the solid frameworks.
具有开壳层构型的过渡金属离子在新型配位化学以及潜在的前所未有的氧化还原催化发展中具有前景。通过用三乙基铝对钛硅分子筛-1进行还原活化生成具有四面体配位的骨架取代Ti(3+)离子,三乙基铝是多相齐格勒-纳塔聚合催化剂中不可或缺的助催化剂。应用连续波和脉冲电子顺磁共振方法来揭示还原态过渡金属离子局部环境的细节,通过检测(29)Si超精细相互作用表明这些离子是二氧化硅骨架的一部分。使用氨作为探针分子来探测还原位点的化学可及性。发现了单个氨分子配位的证据。与类似体系如TiAlPO-5的比较揭示了两种固体中还原态Ti位点配位化学的明显差异,考虑到固体骨架的不同电子性质,这是可以理解的。