首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Catalytic Nanoreactors of Au@Fe3O4 Yolk-Shell Nanostructures with Various Au Sizes for Efficient Nitroarene Reduction
【24h】

Catalytic Nanoreactors of Au@Fe3O4 Yolk-Shell Nanostructures with Various Au Sizes for Efficient Nitroarene Reduction

机译:Au @ Fe3O4蛋白壳烯壳纳米结构具有各种Au尺寸的催化纳米反应器,用于高效硝基芳烃

获取原文
获取原文并翻译 | 示例
           

摘要

Au@Fe3O4 yolk shell nanocatalysts based on the thermal decomposition of iron pentacarbonyl in the presence of 2.5-10-nm Au core nanoparticles were successfully fabricated for the catalytic reduction of nitroarenes. The particle sizes of the Au@Fe3O4 nanostructures were in the range 8-15 nm, with Fe3O4 shell layer thicknesses of 2.0-2.4 nm. The Fe3O4 layer not only can form a magnetic shell for recovery but also enables the protection of the catalytic activity of the Au core nanoparticles toward the reduction of nitrobenzene derivatives including 2-nitrophenol, 4-nitrophenol, 4-nitrotoluene, and 1-chloro-4-nitrobenzene in the presence of NaBH4. The catalytic performance of Au@Fe3O4 is highly dependent on the particle size of the Au core materials and the substituent groups of the nitroarenes. The reduction rates of nitroarenes with electron-withdrawing groups were found to be 2.3-2.6 times higher than those of nitroarenes with electron-donating groups. In addition, the reduction of nitroarenes by the Au@Fe3O4 yolk shell nanocatalysts was found to be a surface-mediated reaction, and the relationship rate and the initial NaBH4 concentration was found to follow Langmuir Hinshelwood kinetics. Moreover, the yolk shell nanoparticles showed good separation ability and reusability, as they could be repeatedly applied for the nearly complete reductions of 4-nitrophenol and 1-chloro-4-nitrobenzene for at least five successive cycles. These unique properties make Au@Fe3O4 nanocatalysts an ideal platform for tailoring yolk shell nanoreactors with various active materials and also for studying various heterogeneous catalytic processes.
机译:Au @ Fe3O4蛋白蛋白壳纳米催化剂在2.5-10-nm Au核心纳米粒子存在下的基于铁芳羰基的热分解,用于催化还原硝基酮的催化还原。 Au @ Fe3O4纳米结构的粒径为8-15nm,Fe3O4壳层厚度为2.0-2.4nm。 Fe3O4层不仅可以形成用于回收的磁性壳,还可以使Au核心纳米颗粒的催化活性保护朝向硝基苯衍生物的还原,包括2-硝基苯酚,4-硝基苯酚,4-硝基甲苯和1-氯 - 在NaBH4存在下4-硝基苯。 Au @ fe3O4的催化性能高度依赖于Au核心材料的粒度和硝基酮的取代基。发现硝基拉酮的硝基拉酮的减少率比用电子给电子基团的硝基拉酮高2.3-2.6倍。此外,发现Au @ Fe3O4蛋黄壳纳米催化剂的硝基甲烷的还原为表面介导的反应,并且发现关系率和初始NaBH4浓度关注Langmuir Hinshelwood动力学。此外,蛋黄壳纳米颗粒显示出良好的分离能力和可重用性,因为它们可以重复施加至少五个连续循环的几乎完全减少4-硝基苯酚和1-氯-4-硝基苯。这些独特的属性使AU @ Fe3O4纳米催化剂成为剪裁蛋黄壳纳米反应器的理想平台,以及各种活性材料,还用于研究各种异质催化过程。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号