催化作用
铜
热重分析
有机硅
化学工程
扫描电子显微镜
透射电子显微镜
材料科学
壳体(结构)
微球
复合数
纳米技术
核化学
化学
高分子化学
复合材料
有机化学
冶金
工程类
作者
Zailei Zhang,Hongwei Che,Yingli Wang,Jiajian Gao,Yuan Ping,Ziyi Zhong,Fabing Su
标识
DOI:10.1016/j.cej.2012.09.095
摘要
We report the synthesis of [email protected]2O core–shell microspheres via a facile template-free solvothermal method. The resulting products were characterized by X-ray diffraction, scanning electron microscopy with energy-dispersive spectroscopy, transmission electron microscopy, temperature-programmed reduction, and thermogravimetric analysis. It is found that, Cu2O microspheres were firstly formed through the reduction of copper acetate by glutamic acid, and then, the reduction started inside the microspheres due to the higher surface energies of inner Cu2O particles, resulting in the formation of [email protected]2O core–shell structure. The content of Cu core in the composite microspheres increased with the reaction time and temperature. The as-prepared [email protected]2O core–shell microspheres exhibited a better catalytic performance for dimethyldichlorosilane synthesis than pure Cu2O and Cu, and even superior to the physically mixed Cu and Cu2O microspheres possibly because of the synergistic catalytic effect. These [email protected]2O core–shell microspheres will have potential application in organosilicon industry as copper-based catalysts.
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