Corma Avelino, Navarro Maria T, Rey Fernando, Ruiz Violeta R, Sabater Maria J
Instituto de Tecnología Química UPV-CSIC, Avenida Los Naranjos s/n, 46022, Valencia, Spain.
Chemphyschem. 2009 May 11;10(7):1084-9. doi: 10.1002/cphc.200800724.
A photoactive, hexagonally structured mesoporous material (Tyl-MCM41) is produced through co-hydrolysis of SiO(2) and a trialkoxysilane-functionalized trityl cation as photoactive species. The formation of the corresponding triphenylmethanol precursor in the material is confirmed by spectroscopic techniques. The hybrid material has an ordered structure with a narrow pore size distribution typical of ordered mesoporous MCM-41-type materials. The triarylcarbinol molecules incorporated into this hybrid structure (Triphol-MCM41) generate trityl cations under acidic conditions, which are photoactive and able to promote the photosensitized dimerization of 1,3-cyclohexadiene in a heterogeneous solid-liquid system. The material is stable and can be recycled without loss of the photochemical activity.
通过二氧化硅(SiO₂)与作为光活性物种的三烷氧基硅烷官能化三苯甲基阳离子的共水解反应,制备出一种具有光活性的六边形结构介孔材料(Tyl-MCM41)。通过光谱技术证实了该材料中相应三苯甲醇前体的形成。这种杂化材料具有有序结构,其孔径分布狭窄,这是有序介孔MCM-41型材料的典型特征。掺入这种杂化结构(Triphol-MCM41)中的三芳基甲醇分子在酸性条件下会生成三苯甲基阳离子,这些阳离子具有光活性,能够在非均相固液体系中促进1,3-环己二烯的光敏二聚反应。该材料稳定,可循环使用且不会损失光化学活性。