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Special Magnetic Catalyst with Lignin-Reduced Au–PdNanoalloy

机译:木质素还原Au-Pd的特殊磁性催化剂纳米合金

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摘要

This study describes a new strategy to fabricate a special magnetic catalyst via facile coating Au–Pd nanoalloy catalysts onto a commercial magnetic stirring bar, without the incorporation of iron element. First, the abundant natural “waste” lignin was utilized as the reducing and stabilizing agent to prepare Au–Pd nanoalloys in a green manner. The Au–Pd nanoalloys were assumed to have a core–shell structure with an Au-rich core and a Pd-rich shell. The Au–Pd nanoalloys could be well dispersed in aqueous medium due to the stabilizing effect of lignin and be conveniently coated onto the surface of a commercial stirring bar. The Au1.0Pd1.0 nanoalloy catalyst exhibited excellent catalytic activities in the reduction of 4-nitrophenol to 4-amnophenol by NaBH4, with a rate constant (k) of 0.239 min–1, which was higher than that of Au0.5Pd1.0 and Au2.0Pd1.0 nanoalloys and 4 times higher than that of a single-component Au or Pd nanoparticles. Besides, the catalytic ability of Au–Pd nanoalloy catalyst could be maintained even after seven cycles of catalysis. The catalytic rate constant was found to be positively correlated to the stirring speed of the bar. The scanning electron microscopy analysis revealed ravinesand pores on the surface of lignin–nanoalloys composites, implyingthe possible mechanism of the catalytic activities. This study notonly proved the feasibility of lignin for green synthesis of Au–Pdnanoalloys but also proposed a facile and innovated strategy for thefuture production of solid/liquid catalytic platforms where the developedmethod could be used to coat any surface interfacing the reagents.
机译:这项研究描述了一种通过在商业磁性搅拌棒上轻松涂覆Au-Pd纳米合金催化剂来制备特殊磁性催化剂的新策略,而无需掺入铁元素。首先,将丰富的天然“废物”木质素用作还原剂和稳定剂,以绿色方式制备Au-Pd纳米合金。假定Au-Pd纳米合金具有核壳结构,具有富Au核和富Pd壳。由于木质素的稳定作用,Au-Pd纳米合金可以很好地分散在水性介质中,并且可以方便地涂覆在商用搅拌棒的表面。 Au1.0Pd1.0纳米合金催化剂在NaBH4将4-硝基苯酚还原为4-氨基苯酚方面表现出出色的催化活性,其速率常数(k)为0.239 min -1 ,高于分别是Au0.5Pd1.0和Au2.0Pd1.0纳米合金的平均分子量的四倍,是单组分Au或Pd纳米颗粒的四倍。此外,即使经过七个催化循环,Au-Pd纳米合金催化剂的催化能力仍可保持。发现催化速率常数与棒的搅拌速度正相关。扫描电子显微镜分析显示沟壑和木质素-纳米合金复合材料表面的孔隙,这表明催化活性的可能机理。本研究不仅证明了木质素用于绿色合成Au-Pd的可行性纳米合金,但也提出了一种简便而创新的策略未来生产的固态/液态催化平台该方法可用于涂覆与试剂连接的任何表面。

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