分子筛
钛
锐钛矿
丙烯
催化作用
单体
低聚物
材料科学
环境友好型
水热合成
热液循环
水解
化学工程
化学
有机化学
光催化
聚合物
生态学
工程类
生物
作者
Dong Lin,Quande Zhang,Zhengxing Qin,Qing Li,Xiang Feng,Zhaoning Song,Zhenping Cai,Yibin Liu,Xiaobo Chen,De Chen,Svetlana Mintova,Chaohe Yang
标识
DOI:10.1002/anie.202011821
摘要
Green and efficient synthesis of titanium-containing molecular sieves is limited by the quantity of environmentally unfriendly additives and complicated synthesis procedures required. Oligomerization of Ti monomers into anatase TiO2 is the typical outcome of such procedures because of a mismatch between hydrolysis rates of Si and Ti precursors. We report a simple and generic additive-free route for the synthesis of Ti-containing molecular sieves (MFI, MEL, and BEA). This approach successfully reverses the formation of Ti oligomers to match hydrolysis rates of Ti and Si species with the assistance of hydroxyl free radicals generated in situ from ultraviolet irradiation. Moreover, fantastic catalytic performance for propene epoxidation with H2 and O2 was observed. Compared with the conventional hydrothermal method, this approach opens up new opportunities for high-efficiency, environmentally benign, and facile production of pure titanium-containing molecular sieves.
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