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首页> 外文期刊>Nano letters >Mechanisms of Local Stress Sensing in Multifunctional Polymer Films Using Fluorescent Tetrapod Nanocrystals
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Mechanisms of Local Stress Sensing in Multifunctional Polymer Films Using Fluorescent Tetrapod Nanocrystals

机译:荧光四足形纳米晶体在多功能聚合物薄膜中的局部应力传感机理

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摘要

Nanoscale stress-sensing can be used across fields ranging from detection of incipient cracks in structural mechanics to monitoring forces in biological tissues. We demonstrate how tetrapod quantum dots (tQDs) embedded in block copolymers act as sensors of tensile/compressive stress. Remarkably, tQDs can detect their own composite dispersion and mechanical properties with a switch in optomechanical response when tQps are in direct contact. Using experimental characterizations, atomistic simulations and finite-element analyses, we show that under tensile stress, densely packed tQDs exhibit a photoluminescence peak shifted to higher energies ("blue-shift") due to volumetric compressive stress in their core; loosely packed tQps exhibit a peak shifted to lower energies ("red-shift") from tensile stress in the core. The stress shifts result from the tQD's unique branched morphology in which the CdS arms act as antennas that amplify the stress in the CdSe core. Our nanocomposites exhibit excellent cyclability and scalability with no degraded properties of the host polymer. Colloidal tQDs allow sensing in many materials to potentially enable autoresponsive, smart structural nanocomposites that self-predict impending fracture.
机译:纳米应力感测可用于从结构力学中的早期裂纹检测到监测生物组织中的力的各个领域。我们演示了嵌入嵌段共聚物中的四足量子点(tQDs)如何充当拉伸/压缩应力的传感器。值得注意的是,当tQps直接接触时,tQD可以通过光机响应中的开关来检测其自身的复合色散和机械性能。通过实验表征,原子模拟和有限元分析,我们表明,在拉伸应力下,密集堆积的tQD由于其核心中的体积压缩应力而呈现出向较高能量(“蓝移”)移动的光致发光峰。松散堆积的tQps表现出一个峰值,该峰值从铁心中的拉应力移至较低的能量(“红移”)。应力转移是由tQD独特的分支形态引起的,其中CdS臂充当天线,放大了CdSe核心中的应力。我们的纳米复合材料具有出色的可循环性和可扩展性,且不会降低主体聚合物的性能。胶体tQD允许对多种材料进行传感,从而潜在地实现自动预测,智能预测即将断裂的智能纳米结构。

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