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Atomistic mechanical testing of nanostructures - seeing the invisible and brid ging theory and experiments

机译:纳米结构的原子机械测试 - 看看隐形和钢筋的理论和实验

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Recently there has been a major thrust to develop novel nanomaterials exhibiting unique properties. These nanostructures are envisioned as building blocks for the next generation of electronic and energy harvesting systems. In this context, identification of their size-dependent properties is essential, but due to challenges in nanoscale experimentation, unambiguous characterization of mechanical and electromechanical behavior has been elusive. However, in the past few years, in-situ experimentation has emerged as a powerful technique to overcome these challenges. Furthermore, the coupling of such experimental findings to atomistic simulations has shown to have the potential to reveal mechanistic insights, essential for the deep understanding of nanoscale behavior. Here, we present a summary of a few significant results obtained by our group using this approach. Specifically, we discuss size effects that influence the mechanical and electromechanical properties of metallic and semiconducting nanowires.
机译:最近,培养了表现出独特性质的新型纳米材料的主要推力。这些纳米结构被设想为用于下一代电子和能量收集系统的构建块。在这种情况下,鉴定其规模依赖性属性至关重要,而是由于纳米级实验的挑战,机电行为的明确表征已经难以捉摸。然而,在过去的几年里,原位实验已经成为克服这些挑战的强大技术。此外,这种实验结果对原子模拟的耦合已经显示出有可能揭示机械洞察力的潜力,这对于对纳米级行为的深刻理解至关重要。在这里,我们概述了我们使用这种方法获得的一些重要结果。具体而言,我们讨论影响金属和半导体纳米线的机械和机电性能的尺寸效果。

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