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Catalyst Recovery and Recycling Facilitated by Magnetic Separation: Iridium and Other Metal Nanoparticles

机译:磁性分离促进的催化剂回收和再循环:铱和其他金属纳米粒子

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摘要

The immobilization of metal nanoparticles in magnetic responsive solids allows the easy, fast, and clean separation of catalysts; however, the efficiency of this separation process depends on a strong metalsupport interaction. This interaction can be enhanced by functionalizing the support surface with amino groups. Our catalyst support contains an inner core of magnetite that enables the magnetic separation from liquid systems and an external surface of silica suitable for further modification with organosilanes. We report herein that a magnetically recoverable amino-functionalized support captured iridium species from liquid solutions and produced a highly active hydrogenation catalyst with negligible metal leaching. An analogous Ir0 catalyst prepared with use of a nonfunctionalized support shows a higher degree of metal leaching into the liquid products. The catalytic performance in the hydrogenation of alkenes is compared with that of Rh and Pt catalysts.
机译:磁性响应固体中金属纳米颗粒的固定允许易于快速,快速,清洁催化剂的分离; 然而,这种分离过程的效率取决于强的MetalSupport交互。 通过用氨基官能化支撑表面可以增强这种相互作用。 我们的催化剂载体含有磁铁矿的内芯,其能够从液体系统和二氧化硅的外表面的磁性分离,适用于有机硅烷的进一步改性。 我们在本文中报告的是,磁性可收回的氨基官能化载体从液体溶液中捕获了铱物种,并产生了高活性的氢化催化剂,具有可忽略的金属浸出。 使用非官能化载体制备的类似IRO催化剂显示出更高程度的金属浸出到液体产物中。 将烯烃氢化的催化性能与RH和PT催化剂的氢化进行比较。

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