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Highly Sensitive Solvent-free Silver Nanoparticle Strain Sensors with Tunable Sensitivity Created Using an Aerodynamically Focused Nanoparticle Printer

机译:使用空气动力学聚焦的纳米粒子打印机产生高度敏感的无溶剂银纳米粒子菌株传感器,采用空气动力学聚焦的纳米粒子打印机产生可调灵敏度

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摘要

We developed and presented highly sensitive solvent-free silver nanoparticle strain sensors fabricated using the aerodynamically focused nanoparticle (AFN) printer. The nanoparticles were printed in various conductive patterns. We explored how printer scan velocity affected pattern geometry and sensor sensitivity. The strain sensors were highly sensitive; the scan velocity afforded tunable sensitivity; and an analytical model predicted the behavior well under low-strain (<0.4%) conditions. We describe a prototype sensor that reliably measured composite beam tensile strain. We further enhanced the sensitivity by creating mechanical cracks, facilitating small dynamic signal measurements. The linear sensitivity of the sensor could be tuned from 18.60 to 290.62 by varying the scan velocity from 2 to 40 ym/s. The cracked sensor afforded the greatest sensitivity (1056) and captured small vibrations from a stringed instrument. We report highly sensitive and reliable measurements of dynamic behavior with simple tunability.
机译:我们开发了使用空气动力学聚焦的纳米颗粒(AFN)打印机制造的高度敏感的无溶剂银纳米粒子菌株传感器。以各种导电图案印刷纳米颗粒。我们探讨了打印机扫描速度如何影响图案几何和传感器灵敏度。应变传感器高度敏感;扫描速度提供可调灵敏度;分析模型预测了低菌株(<0.4%)条件下的行为。我们描述了一种可靠地测量的复合梁拉伸应变的原型传感器。我们通过创建机械裂缝进一步提高了灵敏度,便于小动态信号测量。通过从2至40 ym / s的扫描速度改变扫描速度,传感器的线性灵敏度可以从18.60到290.62调谐。裂缝传感器提供了最大的灵敏度(1056)并从弦乐器捕获小振动。我们报告了具有简单可调性的高度敏感和可靠的动态行为测量。

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