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Unveiling the Ir single atoms as selective active species for the partial hydrogenation of butadiene by operando XAS

机译:揭幕的红外单原子选择性活跃部分氢化的物种butadiene by XAS运作

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Single-atom catalysts represent an intense topic of research due to their interesting catalytic properties for a wide range of reactions. Clarifying the nature of the active sites of single-atom catalysts under realistic working conditions is of paramount importance for the design of performant materials. We have prepared an Ir single-atom catalyst supported on a nitrogen-rich carbon substrate that has proven to exhibit substantial activity toward the hydrogenation of butadiene with nearly 100% selectivity to butenes even at full conversion. We evidence here, by quantitative operando X-ray absorption spectroscopy, that the initial Ir single atoms are coordinated with four light atoms i.e., Ir–X4 (X = C/N/O) with an oxidation state of +3.2. During pre-treatment under hydrogen flow at 250 °C, the Ir atom loses one neighbour (possibly oxygen) and partially reduces to an oxidation state of around +2.0. We clearly demonstrate that Ir–X3 (X = C/N/O) is an active species with very good stability under reactive conditions. Moreover, Ir single atoms remain isolated under a reducing atmosphere at a temperature as high as 400 °C.
机译:单原子催化剂的代表一个激烈的话题的研究由于其有趣的催化属性范围广泛的反应。澄清的本质活动的网站单原子催化剂下的现实的工作条件是至关重要的设计的高性能材料。一个单原子催化剂支持红外富氮碳底物已被证明向表现出实质性的活动丁二烯加氢的近100%选择性丁烯即使在完全转换。我们这里的证据,通过定量operando x射线最初的红外吸收光谱,单原子与光四相协调原子即Ir-X4 (X = C / N / O)的氧化+ 3.2。氢气流量在250°C, Ir原子失去一个邻居(可能是氧气)和部分减少的氧化态+ 2.0左右。证明Ir-X3 (X = C / N / O)是一个活跃的物种具有非常好的稳定性受到活性条件。孤立的还原性气氛下温度高达400°C。

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