相关链接
联系方式
  • 通信地址:天津市卫津路南开大学高分子化学研究所蒙民伟楼417
  • 邮编:300071
  • 电话:022-23509794
  • 传真:
  • Email:wqzhang@nankai.edu.cn
当前位置:> 首页 > 论文著作 > 正文
A strategy to immobilize noble metal nanoparticles on silica microspheres
作者:Wang, Shengnan; Zhang, Minchao; Zhong, Luwei; 等.
关键字:noble metal nanoparticles
论文来源:期刊
具体来源:JOURNAL OF MOLECULAR CATALYSIS A-CHEMICAL
发表时间:2010年

www.sciencedirect.com/science/article/pii/S1381116910002335

A strategy to immobilize noble metal nanoparticles on silica microspheres is proposed. Following this strategy, 350 nm silica microspheres synthesized by Stöber method are initially activated with 3-(trimethoxysilyl) propyl methacrylate to anchor CC bonds on the surface of the silica microspheres. Then a thin layer of coordination polymer containing chelate ligand of β-diketone is coated on the surface of the activated silica microspheres by dispersion polymerization. The noble metal nanoparticles therefore can be immobilized on the polymer coated silica microspheres initially through coordination between the chelate ligand of β-diketone in the coating polymer and the metal precursors followed by reduction. It is found that 5.1 nm Pd, 6.1 nm Au, and 5.7 nm Ag nanoparticles can be immobilized on the polymer coated silica microspheres. The typical immobilized Pd catalyst is tested using hydrogenation of cinnamyl alcohol in water at 300 K as model reaction. The catalysis demonstrates that the immobilized Pd catalyst affords a turnover frequency of 270 h−1 with minimal leaching and it could be recycled ∼8 times without any loss of activity.