催化作用
介孔材料
选择性
硅烷化
吸附
化学
介孔二氧化硅
环己烷
解吸
表面改性
化学工程
无机化学
介孔有机硅
多相催化
有机化学
物理化学
工程类
作者
Kazuki Nakatsuka,Kohsuke Mori,Shusuke Okada,Shohei Ikurumi,Takashi Kamegawa,Hiromi Yamashita
标识
DOI:10.1002/chem.201402586
摘要
Abstract To enhance the catalytic activity in a selective one‐pot oxidation using in‐situ generated H 2 O 2 , a hydrophobically modified core–shell catalyst was synthesized by means of a simple silylation reaction using the fluorine‐containing silylation agent triethoxyfluorosilane (TEFS, SiF(OEt) 3 ). The catalyst consisted of a Pd‐supported silica nanosphere and a mesoporous silica shell containing isolated Ti IV and F ions bonded with silicon (SiF bond). Structural analyses using XRD and N 2 adsorption–desorption suggested that the mesoporous structure and large surface area of the mesoporous shells were retained even after the modification. During the one‐pot oxidation of sulfide, catalytic activity was enhanced significantly by increasing the amount of fluorine in the shell. A hydrophobic surface enhanced adsorption of the hydrophobic reactant into the mesopore, while the less hydrophobic oxygenated products efficiently diffused into the outside of the shell, which improved the catalytic activity and selectivity. In addition, the present methodology can be used to enhance the catalytic activity and selectivity in the one‐pot oxidation of cyclohexane by using an Fe‐based core–shell catalytic system.
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