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- W4220756281 abstract "Young's modulus of Sb 2 O 3 nanowires with nominal diameters of 51–170 nm is measured by using a laser‐Doppler vibrometry within the temperature range of 300–650 K. The Young's modulus is found to decrease linearly with the elevated temperature ranging from 300 to ≈475 K. The temperature coefficient of Young's modulus (TCE) is ≈−170 ppm K −1 when nanowire diameter is above ≈100 nm, below which the coefficient decreases to ≈−310 ppm K −1 with the diameters down to ≈50 nm. This strong size‐dependent TCE is attributed to the synergistic reaction of temperature and size/surface effects. Nanowires would sublimate or even melt starting from their tips at elevated temperatures, even though the temperature is far below the melting point of the bulk counterpart. The observed thermomechanical behavior of nanowires provides the basis and reference for the optimal design and operation of high‐temperature nanodevices using nanowires as building blocks." @default.
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- W4220756281 date "2022-03-30" @default.
- W4220756281 modified "2023-10-02" @default.
- W4220756281 title "Young's Modulus and Thermal Stability of Individual Sb <sub>2</sub> O <sub>3</sub> Nanowires at Elevated Temperatures" @default.
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- W4220756281 doi "https://doi.org/10.1002/pssr.202200039" @default.
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