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Orientational Imaging of a Single Gold Nanorod at the Liquid/Solid Interface with Polarized Evanescent Field Illumination

机译:单个金纳米棒在液体/固体界面的极化瞬逝场照明的定向成像

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Understanding the mechanistic information on many kinetic processes requires the exploration of dynamic rotational information on the target object at the single particle (or molecule) level. In this work, we developed a new strategy, total internal reflection scattering (TIRS) microscopy, to determine the full three-dimensional (3D) angular information on a single gold nanorod (GNR) close to the liquid/solid interface. It was found that the 3D orientational information on individual GNR could be readily elucidated by using p -polarized TIRS illumination through deciphering the orientation -coded intensity distribution pattern in a single TIRS image. In comparison with the previously reported strategies, this method does not require complicated focal plane correction, affording a versatile pathway to track the rotational dynamics close to the interface in a high throughput manner. The methodology presented here, therefore, demonstrates a promising approach that can be applied to fluidic membranes, including membranes with polymers, bound proteins, and so on.
机译:要了解许多动力学过程的机械信息,就需要在单个粒子(或分子)水平上探索目标物体的动态旋转信息。在这项工作中,我们开发了一种新的策略,即全内反射散射(TIRS)显微镜,以确定靠近液/固界面的单个金纳米棒(GNR)上的完整三维(3D)角度信息。已经发现,通过对单个TIRS图像中的取向编码强度分布模式进行解密,可以通过使用p偏振TIRS照明来轻松阐明各个GNR的3D取向信息。与先前报告的策略相比,此方法不需要复杂的焦平面校正,从而提供了一种通用的途径来以高通量的方式跟踪靠近界面的旋转动力学。因此,此处介绍的方法论证明了一种有前途的方法,可以应用于流体膜,包括具有聚合物,结合蛋白等的膜。

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