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Controllable synthesis of a Pd/PdO nanocomposite as a catalyst for hydrogenation of nitroarenes to anilines in water

机译:Pd / PDO纳米复合物的可控合成作为氢化对水中苯胺氢化的催化剂

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A heterogeneous catalytic assembly of the different Pd/PdO ratio nanoparticles supported on oxide carbon nanotubes (OCNTs) can be controllably synthesized by a one-pot gas–liquid interfacial plasma (GLIP) method via adjusting the glow produced parameter. The Pd/PdO nanoparticles have uniform particle size distribution. It is found that the catalysts with different Pd/PdO ratios could affect catalytic activity during the reduction of 4-nitrophenol (4-NP) in water by NaBH _(4) . The best turn over frequency (TOF) value is up to 3000 h ~(?1) , which is much higher than the case only using Pd nanoparticles as catalysts. Moreover, the catalysts allowed hydrogenation of nitroarenes in water by atmospheric pressure H _(2) , and it displayed remarkable activity toward the hydrogenation of nitroarenes using low Pd loading in good yields. The catalyst can be simply and efficiently used for ten consecutive runs without significant decrease in activity.
机译:在氧化物碳纳米管(OCNT)上负载在氧化物碳纳米管(OCNT)上的不同PD / PDO比纳米颗粒的异质催化组件可以通过调节发光产生的参数来控制用一锅气液界面界面等离子体(GLIP)方法来控制。 PD / PDO纳米粒子具有均匀的粒度分布。发现具有不同PD / PDO比的催化剂可以通过NaBH _(4)在水中减少4-硝基苯酚(4-NP)期间的催化活性。最佳转弯频率(TOF)值高达3000小时〜(?1),远远高于使用Pd纳米粒子作为催化剂的情况。此外,催化剂通过大气压H _(2)允许在水中氢化Nitarenes,并且它使用低PD负载效果朝向硝基酮的氢化产生了显着的活性。催化剂可以简单且有效地使用10个连续运行,而不会显着降低活性。

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