首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Nanoparticle-Based Strain Gauges Fabricated by Convective Self Assembly: Strain Sensitivity and Hysteresis with Respect to Nanoparticle Sizes
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Nanoparticle-Based Strain Gauges Fabricated by Convective Self Assembly: Strain Sensitivity and Hysteresis with Respect to Nanoparticle Sizes

机译:对流自组装制造的基于纳米颗粒的应变计:应变敏感性和滞后性相对于纳米颗粒的大小。

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摘要

The effect of nanoparticle (NP) size on the performance of resistive strain gauges fabricated from gold colloidal NPs is evaluated. The active area of the strain gauges consists of colloidal NPs assembled into multilayered wire arrays on a flexible substrate using Stop&Go convective self-assembly (SG-CSA). The strain sensing in such gauges relies on the exponential variation of tunnel resistance with interparticle gap. The sensitivity of the fabricated strain gauges is found to increase linearly with the size of the gold NPs. A 15 times increase in sensitivity is observed on going from 5 to 97 nm NPs. However, the hysteresis under cycling tests is higher for the most sensitive gauges constructed from larger NPs because of increased disorders in the assemblies of larger NPs, which leads to their irreversible displacement under applied strain. This investigation reveals that the strain gauges derived from 15 nm gold NPs have the best overall performance, with a gauge sensitivity ten times higher than the conventional metal foil gauges at 0.5% strain without undergoing damage under cycling tests.
机译:评估了纳米颗粒(NP)尺寸对由金胶体NPs制成的电阻应变仪性能的影响。应变计的有效区域由胶体NP组成,这些胶体使用Stop&Go对流自组装(SG-CSA)组装到柔性基板上的多层导线阵列中。在这样的量规中,应变感应依赖于隧道阻力随颗粒间间隙的指数变化。发现制成的应变仪的灵敏度随金纳米颗粒的大小线性增加。从5纳米到97纳米NP观察到灵敏度提高了15倍。但是,由于较大NP组件中的不规则性增加,循环测试中由较大NP构造的最灵敏的仪表的磁滞较高,这导致它们在施加应变的情况下不可逆位移。这项研究表明,源自15 nm金纳米粒子的应变仪具有最佳的整体性能,在0.5%应变下的应变仪灵敏度比传统金属箔应变仪高出十倍,并且在循环测试中不会受到损坏。

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