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A self-powered mercury ion nanosensor based on the thermoelectric effect and chemical transformation mechanism

机译:基于热电效应和化学转化机制的一种自供电的汞离子纳米传感器

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摘要

Self-powered sensors and sensing systems without an external power supply have shown their superior advantages and become more popular in recent years. In this paper, the first self-powered nanosensor based on the thermoelectric effect for the detection of mercury ions is demonstrated. In this sensing device, tellurium nanowires (Te NWs) act as the core material to spontaneously generate an electric output by a small surrounding temperature difference and act as a recognition element for specific reaction with mercury ions. The as-developed thermoelectric nanosensor can provide a high sensitivity (LOD of 1.7 nM) and good linear range (from 10 nM to 1 mu M) of mercury ion detection. The selectivity of the self-powered thermoelectric nanosensor is also evaluated. Among the investigated metal ions, only Hg2+ ions result in a distinct enhanced output voltage, by approximately 9 times. The self-powered thermoelectric sensor exhibits the capability to clearly distinguish even a small concentration of Hg2+ ions from the presence of various other species in environmental samples. All these results indicate that the thermoelectric nanosensor shows great potential to become a portable sensor for the in-field sensing of environmental samples.
机译:无需外部电源的自动传感器和传感系统已经显示出近年来的优势并且变得更加流行。本文证明了基于对汞离子检测的热电效应的第一自动纳米传感器。在该感测装置中,碲纳米线(Te NWS)用作芯材料以通过小的周围温度差自发地产生电输出,并用作与汞离子的特异性反应的识别元件。 AS开发的热电纳米体传感器可以提供高灵敏度(17nm)和汞离子检测的良好线性范围(从10nm至1μm)。还评估了自供电热电纳米传感器的选择性。在研究的金属离子中,仅HG2 +离子导致不同的增强的输出电压,大约9次。自动热电传感器表现出显然甚至在环境样品中各种其他物种的存在的小浓度HG2 +离子的能力。所有这些结果表明,热电纳米传感器显示出成为环境样品的现场感测的便携式传感器的巨大潜力。

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