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首页> 外文期刊>Chemical science >A high performance catalyst of shape-specific ruthenium nanoparticles for production of primary amines by reductive amination of carbonyl compounds
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A high performance catalyst of shape-specific ruthenium nanoparticles for production of primary amines by reductive amination of carbonyl compounds

机译:通过羰基化合物的还原胺化生产的特异性特异性钌纳米粒子的高效催化剂,用于生产羰基化合物的胺化

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摘要

The creation of metal catalysts with highly active surfaces is pivotal to meeting the strong economic demand of the chemical industry. Specific flat-shaped pristine fcc ruthenium nanoparticles having a large fraction of atomically active {111} facets exposed on their flat surfaces have been developed that act as a highly selective and reusable heterogeneous catalyst for the production of various primary amines at exceedingly high reaction rates by the low temperature reductive amination of carbonyl compounds. The high performance of the catalyst is attributed to the large fraction of metallic Ru serving as active sites with weak electron donating ability that prevail on the surface exposed {111} facets of flat-shaped fcc Ru nanoparticles. This catalyst exhibits a highest turnover frequency (TOF) of ca. 1850 h ~(?1) for a model reductive amination of biomass derived furfural to furfurylamine and provides a reaction rate approximately six times higher than that of an efficient and selective support catalyst of Ru-deposited Nb _(2) O _(5) (TOF: ca. 310 h ~(?1) ).
机译:具有高活性表面的金属催化剂的创建是符合化学工业的强大经济需求的关键。已经开发出具有大部分的特定扁平扁平FCC钌纳米粒子,其暴露在其平坦表面上的小部分,其用作高度选择性和可重复使用的非均相催化剂,用于生产各种原发性胺的产生极高的反应速率羰基化合物的低温还原胺化。催化剂的高性能归因于用作具有弱电子捐献能力的活性位点的大部分金属Ru,其在扁平的FCC ru纳米粒子的表面暴露的表面暴露的{111}小颗粒上。该催化剂表现出CA的最高周转频率(TOF)。 1850 H〜(α1)对于生物质的模型还原胺化衍生糠醛至糠醇,并提供比Ru沉积的Nb _(2)O _(5)的有效和选择性载体催化剂高约6倍的反应速率(TOF:CA. 310 H〜(?1))。

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