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一种用于通过原子力显微镜提高聚合物材料弹性模量测量精度的新型纳米球形探针。

A Novel Nano-Spherical Tip for Improving Precision in Elastic Modulus Measurements of Polymer Materials via Atomic Force Microscopy.

作者信息

Fu Tianyu, Uzoma Paul C, Ding Xiaolei, Wu Pengyuan, Penkov Oleksiy, Hu Huan

机构信息

ZJU-UIUC Institute, International Campus, Zhejiang University, Haining 314400, China.

State Key Laboratory of Fluid Power & Mechatronic Systems, Zhejiang University, Hangzhou 310027, China.

出版信息

Micromachines (Basel). 2024 Sep 22;15(9):1175. doi: 10.3390/mi15091175.

Abstract

Micro-nano-scale mechanical properties are vital for engineering and biological materials. The elastic modulus is generally measured by processing the force-indentation curves obtained by atomic force microscopy (AFM). However, the measurement precision is largely affected by tip shape, tip wear, sample morphology, and the contact model. In such research, it has been found that the radius of the sharp tip increases due to wear during contact scanning, affecting elastic modulus calculations. For flat-ended tips, it is difficult to identify the contact condition, leading to inaccurate results. Our research team has invented a nano-spherical tip, obtained by implanting focused helium ions into a silicon microcantilever, causing it to expand into a silicon nanosphere. This nano-spherical tip has the advantages of sub-micro size and a smooth spherical surface. Comparative tests of the elastic modulus measurement were conducted on polytetrafluoroethylene (PTFE) and polypropylene (PP) using these three tips. Overall, the experimental results show that our nano-spherical tip with a consistent tip radius, symmetrical geometric shape, and resistance to wear and contamination can improve precision in elastic modulus measurements of polymer materials.

摘要

微纳尺度的力学性能对工程材料和生物材料至关重要。弹性模量通常通过处理原子力显微镜(AFM)获得的力-压痕曲线来测量。然而,测量精度在很大程度上受到针尖形状、针尖磨损、样品形态和接触模型的影响。在这类研究中,已经发现尖锐针尖在接触扫描过程中会因磨损而使半径增大,从而影响弹性模量的计算。对于平头针尖,难以确定接触状态,导致结果不准确。我们的研究团队发明了一种纳米球形针尖,它是通过将聚焦氦离子注入硅微悬臂梁中,使其膨胀成硅纳米球而获得的。这种纳米球形针尖具有亚微米尺寸和光滑球形表面的优点。使用这三种针尖对聚四氟乙烯(PTFE)和聚丙烯(PP)进行了弹性模量测量的对比试验。总体而言,实验结果表明,我们的纳米球形针尖具有一致的针尖半径、对称的几何形状以及抗磨损和抗污染的特性,能够提高聚合物材料弹性模量测量的精度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc61/11434511/07fd9c46acae/micromachines-15-01175-g001.jpg

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