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A 'green' chitosan-silver nanoparticle composite as a heterogeneous as well as micro-heterogeneous catalyst

机译:一种“绿色”壳聚糖-银纳米颗粒复合材料,可作为非均相和微非均相催化剂

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摘要

In this paper, we report on the catalytic activity of a new metal nanoparticle-polymer composite consisting of Ag nanoparticles (NPs) and environmentally friendly ('green') chitosan. The polymer (chitosan) not only acted as the reducing agent for the metal ions, but also stabilized the product NPs by anchoring them. The majority of the particles produced in this way had sizes less than 5 nm. The catalytic activity of the composite was investigated photometrically by monitoring the reduction of 4-nitrophenol (4NP) in the presence of excess NaBH4 in water, under both heterogeneous and micro-heterogeneous conditions. The reaction was first order with respect to the concentration of 4NP. We also observed that the apparent rate constant, kapp, for the reaction was linearly dependent on the amount of Ag NPs present in the composite. Moreover, the turn-over frequency (TOF) of the catalyst was found to be (1.5 +/- 0.3) x 10(-3) s(-1), when the reaction was carried out under heterogeneous conditions. The Ag NPs in the composite retained their catalytic activities even after using them for ten cycles. Our observations also suggest that the catalytic efficiency under micro-heterogeneous conditions is much higher than under heterogeneous conditions. Thus the composite we have represents an ideal case of an environmentally friendly and stable catalyst, which works under heterogeneous as well as micro-heterogeneous conditions with the advantage of nanoscopic particles as the catalyst.
机译:在本文中,我们报告了一种新型金属纳米颗粒-聚合物复合材料的催化活性,该复合材料由银纳米颗粒(NPs)和环境友好型(“绿色”)壳聚糖组成。聚合物(壳聚糖)不仅充当金属离子的还原剂,而且通过固定它们来稳定产品NP。以这种方式生产的大多数颗粒的尺寸小于5nm。在非均相和微非均相条件下,通过监测水中过量NaBH4存在下4-硝基苯酚(4NP)的还原,以光度法研究了复合材料的催化活性。关于4NP的浓度,反应是一级的。我们还观察到反应的表观速率常数kapp线性依赖于复合物中存在的Ag NPs的数量。此外,当反应在非均相条件下进行时,发现催化剂的翻转频率(TOF)为(1.5 +/- 0.3)×10(-3)s(-1)。即使在使用十个周期后,复合材料中的Ag NP仍保持其催化活性。我们的观察结果还表明,微非均相条件下的催化效率比非均相条件下的催化效率高得多。因此,我们拥有的复合材料代表了一种环境友好且稳定的催化剂的理想情况,该催化剂可在非均质和微非均质条件下工作,并具有纳米级颗粒作为催化剂的优势。

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