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Study of mechanical resonances of Sb_2O_3 micro- and nanorods

机译:Sb_2O_3纳米棒和纳米棒的机械共振研究

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摘要

Sb_2O_3 microrods with orthorhombic phase were grown by an evaporation-deposition method from a pure antimony source and substrate. The incorporation of Cr into the substrate has been found to enhance the growth of thinner rods with high crystalline quality, as is revealed by high resolution transmission electron microscopy (HRTEM). Electric field-induced mechanical resonances of Sb_2O_3 nanorods were studied by in situ measurements in a scanning electron microscope (SEM). Young's modulus of rods with different lengths and cross-sectional dimensions was calculated from the resonance frequency. The E values for the different rods were in the range of 16-48 GPa. For comparison, Young's moduli of several rods were also measured from the force-displacement curve recorded in an atomic force microscope (AFM). The slight difference between the E values obtained by the resonance and by the AFM techniques is within the accepted experimental error.
机译:通过蒸发沉积法从纯锑源和基质中生长出具有正交晶相的Sb_2O_3微棒。如高分辨率透射电子显微镜(HRTEM)所揭示的,已发现将Cr掺入基材中可增强具有高结晶质量的细棒的生长。 Sb_2O_3纳米棒的电场诱导的机械共振通过扫描电子显微镜(SEM)的原位测量进行了研究。由共振频率计算出具有不同长度和横截面尺寸的杆的杨氏模量。不同杆的E值在16-48 GPa的范围内。为了进行比较,还从原子力显微镜(AFM)中记录的力-位移曲线中测量了多个杆的杨氏模量。通过共振和AFM技术获得的E值之间的细微差异在公认的实验误差范围内。

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