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Ordered Monolayer Gold Nano-urchin Structures and Their Size Induced Control for High Gas Sensing Performance

机译:有序单层金纳米胆结构及其尺寸感应控制可实现高气敏性能

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摘要

The synthesis of ordered monolayers of gold nano-urchin (Au-NU) nanostructures with controlled size, directly on thin films using a simple electrochemical method is reported in this study. In order to demonstrate one of the vast potential applications, the developed Au-NUs were formed on the electrodes of transducers (QCM) to selectively detect low concentrations of elemental mercury (Hg0) vapor. It was found that the sensitivity and selectivity of the sensor device is enhanced by increasing the size of the nanospikes on the Au-NUs. The Au-NU-12 min QCM (Au-NUs with nanospikes grown on it for a period of 12 min) had the best performance in terms of transducer based Hg0 vapor detection. The sensor had 98% accuracy, 92% recovery, 96% precision (repeatability) and significantly, showed the highest sensitivity reported to date, resulting in a limit of detection (LoD) of only 32 μg/m3 at 75 °C. When compared to the control counterpart, the accuracy and sensitivity of the Au-NU-12 min was enhanced by ~2 and ~5 times, respectively. The results demonstrate the excellent activity of the developed materials which can be applied to a range of applications due to their long range order, tunable size and ability to form directly on thin-films.
机译:本研究报道了直接在薄膜上使用简单的电化学方法合成尺寸受控的纳米金-海胆(Au-NU)纳米结构的有序单层膜的方法。为了证明其巨大的潜在应用之一,已开发的Au-NUs形成在换能器(QCM)的电极上,以选择性地检测低浓度的元素汞(Hg 0 )蒸气。发现通过增加Au-NUs上的纳米钉的尺寸来增强传感器装置的灵敏度和选择性。就基于换能器的Hg 0 蒸气检测而言,Au-NU-12 min QCM(在其上长有纳米钉的Au-NUs持续12 min)具有最佳性能。该传感器具有98%的准确度,92%的回收率,96%的精确度(可重复性),并且显着地显示了迄今为止报道的最高灵敏度,因此在75°C时的检测限(LoD)只有32μg/ m3。与对照组相比,Au-NU-12 min的准确度和灵敏度分别提高了约2倍和5倍。结果证明了所开发材料的优异活性,由于其长程有序,可调节的尺寸以及直接在薄膜上形成的能力,因此可应用于多种应用。

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