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Solid-State Green Synthesis of Ag NPs: Higher Temperature Harvests Larger Ag NPs but Smaller Size Has Better Catalytic Reduction Reaction

机译:Ag NP的固态绿色合成:较高的温度收获较大的Ag NP但较小的尺寸则具有较好的催化还原反应

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摘要

In this work a novel solid-state green approach without using any solvent environment has been proposed to synthesize Ag NPs. The synthetic condition has been investigated in 4 °C, 20 °C, 40 °C and 60 °C and at ten different time intervals. This synthesis process gives different size and shape of curcumin conjugated Ag NPs, which have been confirmed by various morphological and spectroscopic techniques. It is found that higher temperature and longer time produces larger particles size and different varieties in shapes. For example, Ag NPs prepared at 4 °C are spherical shapes whereas that prepared at 60 °C are of spherical, rods, and many hexagonal shapes. At 60 °C and after 5 and 7 days the size of the prepared Ag NPs exceed the nano scale to reach micro scale level. This size and shape distribution are well reflected in the optical properties as absorbance, fluorescence intensity and SFS intensity of Ag NPs consistently increase with increase in temperature during synthesis. Ag NPs obtained in different temperature and various time intervals have been subsequently tested as catalysts for the reduction reaction, where 4-nitrophenol is reduced to 4-aminophenol in the presence of NaBH4. It is found that smaller particles have better catalytic properties for the reduction reaction.
机译:在这项工作中,已经提出了一种不使用任何溶剂环境的新型固态绿色方法来合成Ag NP。已在10°C,4°C,20°C,40°C和60°C下研究了合成条件。该合成过程给出了姜黄素偶联的Ag NP的不同大小和形状,这已通过各种形态学和光谱学技术得到证实。发现较高的温度和较长的时间会产生较大的颗粒尺寸和不同的形状。例如,在4℃下制备的Ag NPs为球形,而在60℃下制备的Ag NPs为球形,棒状和许多六边形。在60°C以及5天和7天后,制备的Ag NP的尺寸超过纳米级,达到微米级。 Ag NP的吸光度,荧光强度和SFS强度随着合成过程中温度的升高而持续增加,因此其尺寸和形状分布在光学特性中得到了很好的反映。随后已测试了在不同温度和不同时间间隔下获得的Ag NPs作为还原反应的催化剂,其中在NaBH4存在下将4-硝基苯酚还原为4-氨基苯酚。发现较小的颗粒对还原反应具有更好的催化性能。

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