Catlow C R A, French S A, Sokol A A, Thomas J M
Davy Faraday Research Laboratory, The Royal Institution of Great Britain, 21 Albemarle Street, London W1S 4BS, UK.
Philos Trans A Math Phys Eng Sci. 2005 Apr 15;363(1829):913-36; discussion 1035-40. doi: 10.1098/rsta.2004.1529.
We apply quantum chemical methods to the study of active site structures and reaction mechanisms in mesoporous silica and metal oxide catalysts. Our approach is based on the use of both molecular cluster and embedded cluster (QM/MM) techniques, where the active site and molecular complex are described using density functional theory (DFT) and the embedding matrix simulated by shell model potentials. We consider three case studies: alkene epoxidation over the microporous TS-1 catalyst; methanol synthesis on ZnO and Cu/ZnO and C-H bond activation over Li-doped MgO.
我们应用量子化学方法来研究介孔二氧化硅和金属氧化物催化剂中的活性位点结构及反应机理。我们的方法基于分子簇和嵌入簇(QM/MM)技术的使用,其中活性位点和分子复合物采用密度泛函理论(DFT)进行描述,而嵌入矩阵则通过壳层模型势进行模拟。我们考虑了三个案例研究:微孔TS-1催化剂上的烯烃环氧化反应;ZnO和Cu/ZnO上的甲醇合成反应;以及锂掺杂MgO上的C-H键活化反应。