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Statistical approach to quantifying the elastic deformation of nanomaterials

机译:量化纳米材料弹性变形的统计方法

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摘要

Quantifying the mechanical properties of nanomaterials is challenged by its small size, difficulty of manipulation, lack of reliable measurement techniques, and grossly varying measurement conditions and environment. A recently proposed approach is to estimate the elastic modulus from a force-deflection physical model based on the continuous bridged-deformation of a nano-beltanowire using an atomic force microscope tip under different contact forces. However, the nanobelt may have some initial bending, surface roughness and imperfect physical boundary conditions during measurement, leading to large systematic errors and uncertainty in data quantification. In this article, a statistical modeling technique, sequential profile adjustment by regression (SPAR), is proposed to account for and eliminate the various experimental errors and artifacts. SPAR can automatically detect and remove the systematic errors and therefore gives more precise estimation of the elastic modulus. This research presents an innovative approach that can potentially have a broad impact in quantitative nanomechanics and nanoelectronics.
机译:纳米材料的小尺寸,难以操作,缺乏可靠的测量技术以及变化很大的测量条件和环境,对量化纳米材料的机械性能提出了挑战。最近提出的方法是使用原子力显微镜尖端在不同的接触力下,基于纳米带/纳米线的连续桥接变形,根据力挠度物理模型估算弹性模量。但是,纳米带在测量过程中可能会有一些初始弯曲,表面粗糙度和不完善的物理边界条件,从而导致较大的系统误差和数据定量的不确定性。在本文中,提出了一种统计建模技术,即通过回归进行的顺序轮廓调整(SPAR),以解决并消除各种实验误差和伪像。 SPAR可以自动检测并消除系统误差,因此可以更精确地估算弹性模量。这项研究提出了一种创新的方法,该方法可能会对定量纳米力学和纳米电子学产生广泛的影响。

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