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Super-resolution visible photoactivated atomic force microscopy

机译:超分辨率可见光活化原子力显微镜

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摘要

Imaging the intrinsic optical absorption properties of nanomaterials with optical microscopy (OM) is hindered by the optical diffraction limit and intrinsically poor sensitivity. Thus, expensive and destructive electron microscopy (EM) has been commonly used to examine the morphologies of nanostructures. Further, while nanoscale fluorescence OM has become crucial for investigating the morphologies and functions of intracellular specimens, this modality is not suitable for imaging optical absorption and requires the use of possibly undesirable exogenous fluorescent molecules for biological samples. Here we demonstrate super-resolution visible photoactivated atomic force microscopy (pAFM), which can sense intrinsic optical absorption with ~8 nm resolution. Thus, the resolution can be improved down to ~8 nm. This system can detect not only the first harmonic response, but also the higher harmonic response using the nonlinear effect. The thermoelastic effects induced by pulsed laser irradiation allow us to obtain visible pAFM images of single gold nanospheres, various nanowires, and biological cells, all with nanoscale resolution. Unlike expensive EM, the visible pAFM system can be simply implemented by adding an optical excitation sub-system to a commercial atomic force microscope.
机译:用光学显微镜(OM)成像纳米材料的固有光吸收特性受到光学衍射极限和固有的较差灵敏度的阻碍。因此,昂贵且破坏性的电子显微镜(EM)已被普遍用于检查纳米结构的形态。此外,尽管纳米级荧光OM已成为研究细胞内标本的形态和功能的关键,但这种方式不适用于成像光吸收成像,需要将可能不希望的外源荧光分子用于生物样品。在这里,我们演示了超分辨率可见光激活原子力显微镜(pAFM),它可以以〜8µnm的分辨率感应固有的光吸收。因此,分辨率可以提高到约8 nm。利用非线性效应,该系统不仅可以检测一次谐波响应,而且可以检测更高的谐波响应。脉冲激光辐照引起的热弹性效应使我们可以获得单个金纳米球,各种纳米线和生物细胞的可见pAFM图像,所有图像均具有纳米级分辨率。与昂贵的EM不同,可见的pAFM系统可以通过向商业原子力显微镜添加光学激发子系统来简单地实现。

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