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Coupling magnetic and plasmonic anisotropy in hybrid nanorods for mechanochromic responses

机译:混合纳米杆耦合磁性和等离子体各向异性,用于机械压力响应

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Mechanochromic response is of great importance in designing bionic robot systems and colorimetric devices. Unfortunately, compared to mimicking motions of natural creatures, fabricating mechanochromic systems with programmable colorimetric responses remains challenging. Herein, we report the development of unconventional mechanochromic films based on hybrid nanorods integrated with magnetic and plasmonic anisotropy. Magnetic-plasmonic hybrid nanorods have been synthesized through a unique space-confined seed-mediated process, which represents an open platform for preparing next-generation complex nanostructures. By coupling magnetic and plasmonic anisotropy, the plasmonic excitation of the hybrid nanorods could be collectively regulated using magnetic fields. It facilitates convenient incorporation of the hybrid nanorods into polymer films with a well-controlled orientation and enables sensitive colorimetric changes in response to linear and angular motions. The combination of unique synthesis and convenient magnetic alignment provides an advanced approach for designing programmable mechanochromic devices with the desired precision, flexibility, and scalability.
机译:机械压响应在设计仿生机器人系统和比色器件方面具有重要意义。遗憾的是,与自然生物的模仿动作相比,制造具有可编程比色响应的机械光学系统仍然具有挑战性。在此,我们报告了基于磁性和等离子体各向异性集成的杂化纳米棒的非传统机械芯片的发展。通过独特的空间限制种子介导的方法合成了磁性等级杂交纳米棒,其代表了用于制备下一代复合纳米结构的开放平台。通过耦合磁性和等离子体各向异性,可以使用磁场共同调节混合纳米棒的等离子体激发。它有助于用良好控制的取向方便地将杂交纳米棒与聚合物膜结合到聚合物膜中,并且能够响应于线性和角度运动而实现敏感的比色变化。独特合成和方便的磁对准的组合提供了一种用于设计具有所需精度,灵活性和可扩展性的可编程机械芯形器件的先进方法。

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