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Synthesis and catalytic activity of palladium supported on heteroatom doped single-wall carbon nanohorns

机译:杂原子掺杂单壁碳纳米角负载钯的合成及催化活性

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摘要

The dehydrogenation of indoline to indole is a vital chemical transformation because of the versatile application of indole as an intermediate in the synthesis of medicines or fine chemicals. As a consequence, various approaches are being explored to catalyze dehydrogenation of indoline. Here, we provided a new strategy for dehydrogenation of indoline. Pd nanoparticles supported on boron-, oxygen-, nitrogen- and phosphorus-doped single-wall carbon nanohorns (CNHs) without ligands were synthesized via a one-step ultrasonic method. Pd nanoparticles with a diameter of 2–3 nm were dispersed uniformly on heteroatom-doped CNHs. The as-prepared Pd-OCNHs (Pd nanoparticles supported on oxygen-doped CNHs) exhibited excellent performance as the catalyst in dehydrogenation of indoline at a low temperature due to a synergistic effect between metal palladium and oxygen-doped CNHs (OCNHs). In the process, metal palladium offers the main active site for adsorption of indoline, and OCNHs not only act as a carrier, but also provide the active groups (ketonic CO) for C–H activation of reactants to improve the catalytic activity. Pd-OCNHs could open up a novel way to the dehydrogenation of other heterocycles.
机译:由于吲哚作为中间体在药物或精细化学品的合成中的广泛应用,因此吲哚啉脱氢为吲哚是至关重要的化学转化。结果,正在探索各种方法来催化二氢吲哚的脱氢。在这里,我们提供了吲哚啉脱氢的新策略。通过一步超声波法 合成了负载硼,氧,氮和磷的单壁碳纳米角(CNHs)负载的钯纳米颗粒。直径为2-3 nm的Pd纳米颗粒均匀地分散在掺杂杂原子的CNH上。所制备的Pd-OCNHs(负载在掺杂氧的CNHs上的Pd纳米颗粒)由于金属钯和掺杂氧的CNHs(OCNHs)之间的协同作用,在低温下使二氢吲哚脱氢时表现出优异的催化剂性能。在此过程中,金属钯提供了吸附二氢吲哚的主要活性位点,而OCNHs不仅充当了载体,而且还提供了用于反应物C–H活化的活性基团(酮型CO),以提高催化活性。 Pd-OCNHs可能为其他杂环的脱氢开辟新途径。

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