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Immobilized copper nanoparticles on nitrogen-rich porous activated carbon from egg white biomass: a robust hydrophilic-hydrophobic balance catalyst for click reaction

机译:从蛋白生物量固定在富氮多孔活性炭上的铜纳米颗粒:牢固的亲水 - 疏水平衡催化剂,用于点击反应

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摘要

Biomass conversion to carbonaceous materials and their use in various applications, such as capacitors, catalyst supports, and adsorbents, have attracted considerable attention from the viewpoint of green chemistry. In this regard, chicken egg white is one of the most important biomass, which can act as an in situ nitrogen doping source. In this paper, nitrogen-rich porous carbon material was synthesized from egg white biomass via pyrolysis at 600 degrees C under nitrogen atmosphere, followed by chemical activation with KOH at 500 degrees C. The results showed that the as-synthesized porous carbon material has a high content of nitrogen and high surface area, on which nitrogen can tune the surface hydrophobicity-hydrophilicity through interaction with water molecules. Then, the copper nanoparticles were immobilized on the surface of nitrogen-rich activated carbon by a chemical reduction method. Nanocatalyst structure was characterized by elemental analysis, TEM, AFM, Raman, FT-IR, porosimetry and atomic adsorption techniques. Finally, catalytic activity was evaluated for the one-pot synthesis of triazole in aqueous medium. The nanocatalyst offers some advantages such as excellent activity, low loading of catalyst, good yields of products and short reaction times.
机译:生物质转化为碳质材料及其在各种应用中的用途,例如电容器,催化剂载体和吸附剂,从绿色化学的观点出发了相当大的关注。在这方面,鸡蛋白是最重要的生物质之一,可以充当原位氮掺杂源。在本文中,在氮气氛下通过热解,在600℃下通过热解相于蛋白生物质合成氮的多孔碳材料,然后在500℃下用KOH进行化学活化。结果表明,作为合成的多孔碳材料具有A.高含量的氮和高表面积,其中氮气可以通过与水分子的相互作用来调节表面疏水性 - 亲水性。然后,通过化学还原方法将铜纳米颗粒固定在富含氮活性炭的表面上。纳米催化剂结构的特征在于元素分析,TEM,AFM,拉曼,FT-IR,孔隙测定法和原子吸附技术。最后,评价催化活性在水性介质中对三唑的单罐合成。纳米催化剂提供了一些优异的优点,如优异的活性,低负荷催化剂,良好的产品产率和短时间。

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