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Synthesis of stabilizer-free, homogeneous gold nanoparticles by cold atmospheric-pressure plasma jet and their optical sensing property

机译:冷大气压等离子体射流合成无稳定剂均质金纳米颗粒及其光学传感性能

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Recently, cold atmospheric-pressure plasma has been studied extensively as an efficient and green method to synthesize gold nanoparticles (AuNPs). Although the characteristics of the AuNPs, especially their homogeneousness, depend very much on the plasma synthesis parameters, there is a lack of a study involving these parameters systematically. Moreover, most of AuNPs-cold-plasma synthesis reports so far either required organic capping agents or resulted in highly non-uniform AuNPs. In this work, we systematically study the effect of most important synthesis parameters- including distance from the plasma jet to the solution, gas flow rate, plasma frequency, volume and concentration of the precursor, plasma interaction time as well as the effect of the synthesis environment (humidity and temperature)-on the uniformity of the AuNPs. Through various characterization measurements, we show that homogeneous and highly stable intrinsic AuNPs with an average size of 45 nm can be obtained with optimized synthesis parameters and in the absence of a stabilizer. The synthesized AuNPs yield advanced optical sensing properties in comparison with commercial AuNPs and can be further applied in developing versatile and high-sensitivity biosensors.
机译:近年来,冷大气压等离子体作为一种高效、绿色的金纳米粒子(AuNPs)合成方法被广泛研究。尽管AuNPs的特性,特别是它们的均匀性,很大程度上取决于等离子体合成参数,但缺乏系统地涉及这些参数的研究。此外,到目前为止,大多数AuNPs-冷等离子体合成报告要么需要有机封端剂,要么导致AuNPs高度不均匀。在这项工作中,我们系统地研究了最重要的合成参数,包括从等离子体射流到溶液的距离、气体流速、等离子体频率、前驱体的体积和浓度、等离子体相互作用时间以及合成环境(湿度和温度)对AuNPs均匀性的影响。通过各种表征测量,我们发现,在优化合成参数和没有稳定剂的情况下,可以获得平均尺寸为 45 nm 的均匀且高度稳定的本征 AuNP。与商业AuNPs相比,合成的AuNPs具有先进的光学传感特性,可以进一步应用于开发多功能和高灵敏度的生物传感器。

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