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Three-dimensional orientation sensors by defocused imaging of gold nanorods through an ordinary wide-field microscope

机译:通过普通的宽视野显微镜对金纳米棒进行散焦成像的三维方向传感器

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摘要

Gold (Au) nanoparticles, particularly nanorods, are actively employed as imaging probes because of their special nonblinking and nonbleaching absorption, scattering, and emitting properties that arise from the excitation of surface plasmons. Herein, we report a novel sensing method that detects feature orientation at the nanoscale via the defocused imaging of individual Au nanorods (AuNRs) with an ordinary wide-field optical microscope. By simultaneously recording defocused images and two-photon luminescence intensities for a large number of individual AuNRs, we correlate their defocused images with their three-dimensional spatial orientations. The spatial orientation of many individual AuNRs can be monitored in situ and in real-time within a single frame, enabling its use as a technique for high-throughput sensing. The probe size can be as small as several nanometers, which is highly desirable for minimization of any potential interference from the probe itself. Furthermore, the sensing property is insensitive to the excitation polarization and the distribution of the probe aspect ratio, which allows AuNRs of any length within a proper regime to be used as orientation sensors without changing the laser frequency and polarization. These unique features make the orientation probes proposed here outstanding candidates for optical imaging and sensing in materials science and biological applications.
机译:金(Au)纳米粒子,尤其是纳米棒,由于其表面等离子体激元的激发而具有特殊的非闪烁和非漂白吸收,散射和发射特性,因此被积极用作成像探针。在本文中,我们报告了一种新颖的传感方法,该方法通过使用普通的宽视野光学显微镜对单个Au纳米棒(AuNRs)进行散焦成像来检测纳米级的特征方向。通过同时记录大量单个AuNRs的散焦图像和双光子发光强度,我们将其散焦图像与三维空间方向相关联。许多单个AuNR的空间方向可以在单个帧中进行实时监控,从而使其可以用作高通量传感技术。探针的大小可以小至几纳米,这对于最大程度地减少探针本身的潜在干扰是非常理想的。此外,感测特性对激发偏振和探头纵横比的分布不敏感,这使得在不改变激光频率和偏振的情况下,可以将适当范围内任何长度的AuNR用作取向传感器。这些独特的功能使这里提出的定向探针成为材料科学和生物学应用中光学成像和传感的优秀候选者。

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