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力反馈高速原子力显微镜中的成像稳定性。

Imaging stability in force-feedback high-speed atomic force microscopy.

机构信息

Department of Physics, Boise State University, 1910 University Drive Boise, ID 83725-1570, United States of America.

出版信息

Ultramicroscopy. 2013 Feb;125:29-34. doi: 10.1016/j.ultramic.2012.09.012. Epub 2012 Oct 9.

Abstract

We studied the stability of force-feedback high-speed atomic force microscopy (HSAFM) by imaging soft, hard, and biological sample surfaces at various applied forces. The HSAFM images showed sudden topographic variations of streaky fringes with a negative applied force when collected on a soft hydrocarbon film grown on a grating sample, whereas they showed stable topographic features with positive applied forces. The instability of HSAFM images with the negative applied force was explained by the transition between contact and noncontact regimes in the force-distance curve. When the grating surface was cleaned, and thus hydrophilic by removing the hydrocarbon film, enhanced imaging stability was observed at both positive and negative applied forces. The higher adhesive interaction between the tip and the surface explains the improved imaging stability. The effects of imaging rate on the imaging stability were tested on an even softer adhesive Escherichia coli biofilm deposited onto the grating structure. The biofilm and planktonic cell structures in HSAFM images were reproducible within the force deviation less than ∼0.5 nN at the imaging rate up to 0.2s per frame, suggesting that the force-feedback HSAFM was stable for various imaging speeds in imaging softer adhesive biological samples.

摘要

我们通过在不同作用力下对软质、硬质和生物样品表面进行成像,研究了力反馈高速原子力显微镜(HSAFM)的稳定性。在收集生长在光栅样品上的烃膜软质层的图像时,HSAFM 图像显示出带有负作用力的条纹状条纹的突然形貌变化,而在正作用力下则显示出稳定的形貌特征。负作用力下 HSAFM 图像的不稳定性可以通过力-距离曲线上接触和非接触区域之间的转变来解释。当光栅表面被清洁,从而通过去除烃膜而亲水时,在正、负作用力下都观察到增强的成像稳定性。由于尖端与表面之间的更高的粘附相互作用,解释了改进的成像稳定性。我们还在更软质的粘性大肠杆菌生物膜沉积到光栅结构上的情况下,测试了成像速率对成像稳定性的影响。在高达 0.2 秒/帧的成像速率下,HSAFM 图像中的生物膜和浮游细胞结构在力偏差小于约 0.5 nN 的范围内具有可重复性,这表明力反馈 HSAFM 对于成像更软质粘性生物样品的各种成像速度是稳定的。

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