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Broad modulus range nanomechanical mapping by magnetic-drive soft probes

机译:磁驱动软探针在宽模量范围内进行纳米力学标测

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摘要

Stiffness matching between the probe and deformed portion of the sample in piezo-drive peak force modulation atomic force microscopy (AFM) limits the modulus measurement range of single probes. Here we develop a magnetic drive peak force modulation AFM to broaden the dynamic range of the probe with direct cantilever excitation. This approach not only successfully drives the softest commercial probe (6?pN?nm?1) for mapping extremely soft samples in liquid but also provides an indentation force of hundreds of nanonewtons for stiff samples with a soft probe. Features of direct measurements of the indentation force and depth can unify the elastic modulus range up to four orders of magnitude, from 1?kPa to 10?MPa (in liquid) and 1?MPa to 20?GPa (in air or liquid) using a single probe. This approach can be particularly useful for analysing heterogeneous samples with large elastic modulus variations in multi-environments.
机译:压电驱动峰值力调制原子力显微镜(AFM)中,探针与样品变形部分之间的刚度匹配限制了单个探针的模量测量范围。在这里,我们开发了磁驱动峰值力调制AFM,以通过直接悬臂激励来拓宽探头的动态范围。这种方法不仅成功地驱动了最柔软的商品探针(6?pN?nm?1)以绘制液体中的极软样品,而且还为使用软探针的硬质样品提供了数百纳牛顿的压入力。直接测量压入力和深度的功能可将弹性模量范围统一到四个数量级,范围从1?kPa到10?MPa(在液体中)和1?MPa到20?GPa(在空气或液体中)一个探针。该方法对于分析多环境中弹性模量变化较大的异质样品特别有用。

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