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(Invited) Self-Powered Heavy Metal Sensors Based on Triboelectric and Thermoelectric Effects

机译:(邀请的)基于摩擦和热电效应的自动重金属传感器

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Self-powered sensors have shown their superior advantages and become more popular when comparing to other traditional sensing technologies. In the past years, we have developed self-powered sensors based on triboelectric and thermoelectric effects for the detection of metal ions and small molecules. In those self-powered sensors, functional nanomaterials will act as core materials to spontaneously generate electric outputs by environmental mechanical motions or temperature differences as well as recognition elements for highly specific reaction with mercury ions. For example, those self-powered sensors can provide a high sensitivity (LOD of 1.7 nM) and good linear range (from 10 nM to 1 mM) toward mercury ion detection. The selectivity of those self-powered sensors is also evaluated. Among the investigated metal ions, only Hg~(2+) ions result in a distinct output voltage change, by approximately 9 times. Those self-powered sensors exhibit the capability to clearly distinguish even a small concentration of Hg~(2+) ions from the presence of various other species in environmental samples. With the simplicity (no complex circuitry or power supply involved) and low-cost fabrication mechanism (small-sized; minimal and low-priced materials required), those self-powered sensors demonstrate great potential to serve as new prototypes of portable devices for the infield sensing of samples.
机译:与其他传统传感技术相比,自动传感器显示出优异的优势,变得更加流行。在过去几年中,我们开发了基于摩擦电和热电效应的自动传感器,用于检测金属离子和小分子。在那些自给自足的传感器中,功能性纳米材料将充当核心材料,通过环境机械运动或温度差异自发地产生电输出,以及与汞离子的高度特异性反应的识别元件。例如,那些自给自动的传感器可以提供高灵敏度(17nm)和良好的线性范围(从10nm至1mm)朝着汞离子检测。还评估了这些自动传感器的选择性。在研究的金属离子中,仅HG〜(2+)离子导致不同的输出电压变化,约9倍。那些自给自足的传感器表现出明确区分甚至在环境样品中各种其他物种存在的小浓度Hg〜(2+)离子的能力。利用简单性(无复杂的电路或电源)和低成本的制造机制(需要小型;需要小价和低价的材料),那些自给自足的传感器展示了作为便携式设备的新原型的巨大潜力样品的infield感应。

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