还原胺化
催化作用
纳米材料基催化剂
组合化学
钌
化学
胺气处理
小学(天文学)
有机化学
天文
物理
作者
Haifeng Qi,Ji Yang,Fei Liu,Leilei Zhang,Jingyi Yang,H. Liu,Lin Li,Yang Su,Yuefeng Liu,Rui Hao,Aiqin Wang,Tao Zhang
标识
DOI:10.1038/s41467-021-23429-w
摘要
Abstract Single-atom catalysts (SACs) have emerged as a frontier in heterogeneous catalysis due to the well-defined active site structure and the maximized metal atom utilization. Nevertheless, the robustness of SACs remains a critical concern for practical applications. Herein, we report a highly active, selective and robust Ru SAC which was synthesized by pyrolysis of ruthenium acetylacetonate and N/C precursors at 900 °C in N 2 followed by treatment at 800 °C in NH 3 . The resultant Ru 1 -N 3 structure exhibits moderate capability for hydrogen activation even in excess NH 3 , which enables the effective modulation between transimination and hydrogenation activity in the reductive amination of aldehydes/ketones towards primary amines. As a consequence, it shows superior amine productivity, unrivalled resistance against CO and sulfur, and unexpectedly high stability under harsh hydrotreating conditions compared to most SACs and nanocatalysts. This SAC strategy will open an avenue towards the rational design of highly selective and robust catalysts for other demanding transformations.
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