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首页> 外文期刊>Green chemistry >Ag-Fe3O4 nanocomposites@chitin microspheres constructed by in situ one-pot synthesis for rapid hydrogenation catalysis
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Ag-Fe3O4 nanocomposites@chitin microspheres constructed by in situ one-pot synthesis for rapid hydrogenation catalysis

机译:原位一锅合成法制备Ag-Fe3O4纳米复合甲壳素微球用于快速加氢催化

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摘要

The fabrication of reusable and biodegradable materials from renewable resources such as chitin is essential for a sustainable world. In the present work, chitin was dissolved in 11 wt% NaOH-4 wt% urea aqueous solution via freezing-thawing, and then chitin microspheres (RChS) were prepared by a sol-gel transition method. Subsequently, novel magnetic Ag-Fe3O4(achitin microspheres (MRChS) were constructed successfully by an in situ one-pot synthesis of Ag-Fe3O4 nanoparticles onto the RChS surface. The magnetic chitin microspheres displayed a spherical shape with a 3D-mesh structure, and had a narrow size distribution (150-400 nm). There were many micro-and nano-pores existing in MRChS, and the Ag-Fe3O4 nanoparticles were immobilized through anchoring with the acetyl amine groups of chitin in these pores. The MRChS microspheres were used as a chromatography column packing material for a "catalytic reaction column", and exhibited highly effective catalytic activity in the rapid transformation from 4-nitrophenol to 4-aminophenol. Moreover, the microspheres displayed a small hysteresis loop and low coercivity, as well as high turnover frequency (at least 10 times) without any loss of catalytic activity. Thus, MRChS could be quickly removed from the water under a magnetic field, leading to easy recycling and reuse. Therefore, this is an environmentally friendly process, and would be highly beneficial to address industrial requirements.
机译:利用甲壳素等可再生资源制造可重复使用和可生物降解的材料对于可持续世界至关重要。在本发明中,通过冷冻-解冻将几丁质溶解在11wt%的NaOH-4wt%的尿素水溶液中,然后通过溶胶-凝胶转变法制备几丁质微球(RChS)。随后,通过一锅法将Ag-Fe3O4纳米颗粒原位合成到RChS表面上,成功地构建了新型的磁性Ag-Fe3O4(壳多糖微球)(MRChS),磁性几丁质微球呈球形,具有3D网格结构,并且MRChS具有窄的尺寸分布(150-400 nm),在MRChS中存在许多微孔和纳米孔,并且通过将甲壳素的乙酰胺基团锚定在这些孔中而将Ag-Fe3O4纳米颗粒固定化。用作“催化反应塔”的色谱柱填充材料,在从4-硝基苯酚向4-氨基苯酚的快速转化中表现出高效的催化活性,而且微球的磁滞回线小,矫顽力低,并且高周转频率(至少10次)而没有任何催化活性的损失,因此,在磁场下,MRChS可以快速从水中去除,从而易于回收利用和重用。因此,这是一个环境友好的过程,将对解决工业要求非常有益。

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