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首页> 外文期刊>RSC Advances >Ir/C and Brφnsted acid functionalized ionic liquids: an efficient catalytic system for hydrogenation of nitrobenzene to p-aminophenol
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Ir/C and Brφnsted acid functionalized ionic liquids: an efficient catalytic system for hydrogenation of nitrobenzene to p-aminophenol

机译:Ir / C和布朗斯台德酸官能化的离子液体:硝基苯加氢成 p -氨基苯酚的有效催化体系

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摘要

In this study, we found that the phenylhydroxylamine intermediate could desorb more easily from an Ir surface than from a Pt surface, which is beneficial for inhibiting the over-hydrogenation of phenylhydroxylamine to aniline. On the other hand, the Brφnsted acid functionalized ionic liquids with sulfonic acid and bisulfate anions were acidic enough to catalyze the Bamberger rearrangement to form p-aminophenol from phenylhydroxylamine. On this basis, a new catalytic system constructed by Ir/C and Brφnsted acid functionalized ionic liquid was applied, for the first time, to the one-pot hydrogenation of nitrobenzene to p-aminophenol. Our results indicate that the PAP selectivity of Ir/C and [SO3H-bmim][HSO4] Brφnsted functionalized ionic liquid was far more than that of the traditional Pt/C and sulfuric acid catalyst system. Furthermore, the dually functionalized ionic liquid ([HSO3-b-N-Bu3][HSO4]) can be used simultaneously as an acid catalyst and also as a surfactant, due to its higher lipophilicity. Therefore, our new catalytic system has unique advantages in the hydrogenation of nitrobenzene to p-aminophenol.
机译:在这项研究中,我们发现苯基羟胺中间体从Ir表面比从Pt表面更容易解吸,这有利于抑制苯基羟胺过度氢化为苯胺。另一方面,具有磺酸和硫酸氢根阴离子的布朗斯台德酸官能化的离子液体具有足够的酸性,可以催化班伯格重排,从苯羟胺形成 p -氨基苯酚。在此基础上,首次将由Ir / C和Brφnsted酸官能化的离子液体构建的新型催化体系应用于硝基苯的一锅法加氢生成 p -氨基苯酚。我们的结果表明Ir / C和[SO 3 H-bmim] [HSO 4 的PAP选择性]Brφnsted功能化离子液体远远超过传统的Pt / C和硫酸催化剂体系。此外,双功能离子液体([HSO 3 - bN -Bu 3 ] [HSO 4 ])由于具有较高的亲脂性,因此可以同时用作酸催化剂和表面活性剂。因此,我们的新催化体系在硝基苯加氢成 p -氨基苯酚方面具有独特的优势。

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