首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Monolayered Wires of Gold Colloidal Nanoparticles for High-Sensitivity Strain Sensing
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Monolayered Wires of Gold Colloidal Nanoparticles for High-Sensitivity Strain Sensing

机译:金胶体纳米粒子的单层导线,用于高灵敏度应变传感

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摘要

High-sensitivity resistive strain gauges based on electron tunneling in assemblies of gold colloidal nanoparticles are fabricated and characterized. The active area of these strain gauges consists in well-defined arrays of parallel, few micrometer wide wires of close-packed 18 nm gold nanoparticles. These nanoparticle wires are obtained by convective self-assembly (CSA) on flexible polyethylene terephtalate substrates, without any lithographic prepatterning. The fine control over the thickness and the width of the nanoparticle wires through the substrate temperature and the meniscus speed during the CSA process allows demonstrating the strong impact of the dimensionality (2D or 3D) of the nanoparticle assembly on the strain gauge sensitivity. Wires made of a single monolayer of nanoparticles turn out to give strain gauges about three times more sensitive than those made of multilayers. This work shows that the simplicity and versatility of convective self-assembly over other alternative methods make this technique very suitable for the reliable and low-cost fabrication of miniaturized, highly sensitive nanoparticle-based strain gauges.
机译:制备和表征了基于电子隧穿的金胶体纳米颗粒组装体的高灵敏度电阻应变仪。这些应变仪的有效区域包括排列紧密,几微米宽的紧密排列的18​​ nm金纳米颗粒的明确定义的阵列。这些纳米粒子线是通过在柔性聚对苯二甲酸乙二醇酯基板上进行对流自组装(CSA)而获得的,无需进行任何光刻预构图。通过在CSA过程中通过基板温度和弯月面速度对纳米粒子线的厚度和宽度进行精细控制,可以证明纳米粒子组件的尺寸(2D或3D)对应变仪灵敏度的强烈影响。事实证明,由单层纳米颗粒制成的导线所产生的应变仪的灵敏度约为多层传感器的三倍。这项工作表明,对流自组装相对于其他替代方法的简单性和多功能性使该技术非常适合可靠,低成本地制造小型化,高灵敏度的基于纳米粒子的应变仪。

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