Advances in dynamic AFM: From nanoscale energy dissipation to material properties in the nanoscale

Sergio Santos, K. Gadelrab, Chia-Yun Lai, Tuza A. Olukan, J. Font, V. Barcons, A. Verdaguer, M. Chiesa
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引用次数: 10

Abstract

Since the inception of the atomic force microscope AFM, dynamic methods have been very fruitful by establishing methods to quantify dissipative and conservative forces in the nanoscale and by providing a means to apply gentle forces to the samples with high resolution. Here we review developments that cover over a decade of our work on energy dissipation, phase contrast and the extraction of relevant material properties from observables. We describe the attempts to recover material properties via one dimensional amplitude and phase curves from force models and explore the evolution of these methods in terms of force reconstruction, fits of experimental measurements, and the more recent advances in multifrequency AFM.
动态AFM研究进展:从纳米尺度的能量耗散到纳米尺度的材料特性
自从原子力显微镜AFM诞生以来,动态方法通过建立量化纳米尺度上耗散力和保守力的方法,以及提供一种以高分辨率对样品施加温和力的方法,取得了非常富有成效的成果。在这里,我们回顾了十多年来我们在能量耗散、相对比和从可观测物中提取相关材料特性方面的工作进展。我们描述了通过一维振幅和相位曲线从力模型中恢复材料特性的尝试,并探讨了这些方法在力重建、实验测量的拟合以及多频AFM的最新进展方面的演变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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