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Young’s Modulus of Wurtzite and Zinc Blende InP Nanowires

机译:杨氏模量和锌·闪烁InP纳米线

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The Young’s modulus of thin conical InP nanowires with either wurtzite or mixed “zinc blende/wurtzite” structures was measured. It has been shown that the value of Young’s modulus obtained for wurtzite InP nanowires (E[0001] = 130 ± 30 GPa) was similar to the theoretically predicted value for the wurtzite InP material (E[0001] = 120 ± 10 GPa). The Young’s modulus of mixed “zinc blende/wurtzite” InP nanowires (E[111] = 65 ± 10 GPa) appeared to be 40% less than the theoretically predicted value for the zinc blende InP material (E[111] = 110 GPa). An advanced method for measuring the Young’s modulus of thin and flexible nanostructures is proposed. It consists of measuring the flexibility (the inverse of stiffness) profiles 1/k(x) by the scanning probe microscopy with precise control of loading force in nanonewton range followed by simulations.]]>
机译:<![cdata [ src ='http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/nefd/2017/nalefd.2017.17.issue-6/acs.nanolett.7b00312/ 20170608 / Images / Medium / NL-2017-003124_0004.gif“>测量了具有紫零或混合的”锌闪烁/翼形岩“结构的薄锥INP纳米线的杨氏模量。已经表明,对于紫立岩岩INP纳米线获得的杨氏模量( e [0001] = 130±30 gpa)类似于Wurtzite的理论上预测值INP材料( e [0001] = 120±10 gpa)。混合的“锌爆发/紫立茨”InP纳米线的杨氏模量( e [111] = 65±10 gpa)似乎比理论上预测值小40%锌融合INP材料( e [111] = 110gPa)。提出了一种测量薄型和柔性纳米结构的杨氏模量的先进方法。它包括测量通过扫描探针显微镜通过扫描探针显微镜测量柔性(刚度)曲线1 / k / k / i>(x ( x -i>),其精确控制纳尼瓦顿范围内的装载力,然后是模拟。]]>

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