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液体中运动金纳米粒子的视频扫描透射电子显微镜观察

Video-frequency scanning transmission electron microscopy of moving gold nanoparticles in liquid.

机构信息

Vanderbilt University School of Medicine, Department of Molecular Physiology and Biophysics, Nashville, TN 37232-0615, USA.

出版信息

Micron. 2012 Nov;43(11):1078-84. doi: 10.1016/j.micron.2012.01.010. Epub 2012 Feb 10.

Abstract

Immobilized gold nanoparticles were imaged in a liquid containing water and 50% glycerol with scanning transmission electron microscopy (STEM). The specimen was enclosed in a liquid compartment formed by two silicon microchips with electron transparent windows. A series of images was recorded at video frequency with a spatial resolution of 1.5nm. The nanoparticles detached from their support after imaging them for several seconds at a magnification of 250,000. Their movement was found to be much different than the movement of nanoparticles moving freely in liquid as described by Brownian Motion. The direction of motion was not random-the nanoparticles moved either in a preferred direction, or radially outwards from the center of the image. The displacement of the gold nanoparticles over time was three orders of magnitude smaller than expected on the basis of Brownian Motion. This finding implies that nanoscale objects of flexible structure or freely floating, including nanoparticles and biological objects, can be imaged with nanoscale resolution, as long as they are in close proximity to a solid support structure.

摘要

采用扫描透射电子显微镜(STEM)在含有水和 50%甘油的液体中对固定化的金纳米粒子进行成像。将样品封闭在由两个带有电子透明窗的硅微芯片形成的液体隔室中。使用空间分辨率为 1.5nm 的视频频率记录一系列图像。在放大倍数为 250,000 倍的情况下对纳米粒子进行几秒钟的成像后,它们从其支撑物上脱落。发现它们的运动与布朗运动所描述的在液体中自由移动的纳米粒子的运动有很大的不同。运动方向不是随机的-纳米粒子要么沿优选方向移动,要么从图像中心向外呈放射状移动。根据布朗运动,金纳米粒子随时间的位移小了三个数量级。这一发现表明,只要靠近固体支撑结构,具有柔性结构或自由漂浮的纳米级物体,包括纳米粒子和生物物体,都可以以纳米级分辨率成像。

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