基于纳米组装平台的大直径纳米线弹性模量测量

N. K. R. Palapati, A. Muth, Yujie Zhu, Chunsheng Wang, A. Subramanian
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引用次数: 5

摘要

本文介绍了在纳米组装平台内半径为150 ~ 300 nm的大直径纳米线的原子力光谱(AFM)结果。该纳米机械平台是通过对金纳米电极使用电泳术组装单个纳米纳米波而构建的,并在组装电极之间包含一个短的悬浮纳米波片段(在空气中)。原子力显微镜(AFM)力谱测量是通过在悬浮段内压痕NW获得的,并导致NW变形,包括弯曲和纳米压痕模式的组合。本文演示了以磷酸铁锂NWs为模型系统的测量技术,并提出了从纳米力学数据中提取杨氏模量的有限元模型。该材料是下一代锂离子电池的电极材料系统,其杨氏模量的估计与直径有关,其范围在100 MPa到575 MPa之间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Elastic Modulus Measurements on Large Diameter Nanowires Using a Nano-Assembled Platform
This paper presents atomic force spectroscopy (AFM) results from large diameter nanowires (NWs), which range in radius from 150 nm to 300 nm, within a nano-assembled platform. The nanomechanical platform is constructed by assembling single NWs across pairs of gold nano-electrodes using dielectrophoresis and contains a short, suspended segment of the NW (in air) between the assembly electrodes. Atomic force microscope (AFM) force spectroscopy measurements are obtained by indenting the NW within this suspended segment and result in deformation of the NW involving a combination of both, bending and nano-indentation modes. This paper demonstrates the measurement technique using lithium iron phosphate NWs as a model system and presents a finite element model to extract the Young's modulus from nanomechanical data. The estimated Young's modulus of this material, which is an electrode material system of interest for next-generation lithium-ion batteries, was found to be diameter dependent and was observed to range in values between 100 MPa and 575 MPa.
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