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首页> 外文期刊>Micron: The international research and review journal for microscopy >Increased imaging speed and force sensitivity for bio-applications with small cantilevers using a conventional AFM setup
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Increased imaging speed and force sensitivity for bio-applications with small cantilevers using a conventional AFM setup

机译:使用传统的AFM设置可提高具有小悬臂的生物应用的成像速度和力敏感度

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摘要

In this study, we demonstrate the increased performance in speed and sensitivity achieved by the use of small AFM cantilevers on a standard AFM system. For this, small rectangular silicon oxynitride cantilevers were utilized to arrive at faster atomic force microscopy (AFM) imaging times and more sensitive molecular recognition force spectroscopy (MRFS) experiments. The cantilevers we used had lengths between 13 and 46 μm, a width of about 11 μm, and a thickness between 150 and 600 nm. They were coated with chromium and gold on the backside for a better laser reflection. We characterized these small cantilevers through their frequency spectrum and with electron microscopy. Due to their small size and high resonance frequency we were able to increase the imaging speed by a factor of 10 without any loss in resolution for images from several μm scansize down to the nanometer scale. This was shown on bacterial surface layers (s-layer) with tapping mode under aqueous, near physiological conditions and on nuclear membranes in contact mode in ambient environment. In addition, we showed that single molecular forces can be measured with an up to 5 times higher force sensitivity in comparison to conventional cantilevers with similar spring constants.
机译:在这项研究中,我们证明了在标准AFM系统上使用小型AFM悬臂可以提高速度和灵敏度。为此,利用小型矩形氮氧化硅悬臂梁来实现更快的原子力显微镜(AFM)成像时间和更灵敏的分子识别力谱(MRFS)实验。我们使用的悬臂的长度在13到46μm之间,宽度在11μm左右,厚度在150到600 nm之间。它们的背面镀有铬和金,以实现更好的激光反射。我们通过频谱和电子显微镜对这些小悬臂进行了表征。由于它们的尺寸小和共振频率高,我们能够将成像速度提高10倍,而从几微米扫描尺寸到纳米级的图像分辨率却没有任何损失。这在含水,接近生理条件下以拍打模式显示在细菌表面层(s层)上,在环境中以接触模式显示在核膜上。此外,我们表明,与具有相似弹簧常数的传统悬臂相比,可以测量高达5倍的力敏感度的单分子力。

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