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Measuring the interface stress: SilverickeI interfaces

机译:测量界面压力:Silver / nickeI界面

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Interface stress is a surface thermodynamics quantity associated with the reversible work of elastically straining an internal solid interface. In a multilayered thin film, the combined effect of the interface stress of each interface results in an in-plane biaxial volume stress acting within the layers of the film that is inversely proportional to the bilayer thickness. We calculated the interface stress of an interface between (lll} textured Ag and Ni on the basis of direct measurements of the dependence of the in-plane elastic strains on the bilayer thickness. The strains were obtained using transmission x-ray diffraction. Unlike previous studies of this type, we used freestanding films so that there was no need to correct for intrinsic stresses resulting from forces applied by the substrate that can lead to large uncertainties of the calculated interface stress value. Based on the lattice parameters of the bulk, pure elements, an interface stress of -2.02 ± 0.26 N/m was calculated using the x-ray diffraction results from films with bilayer thicknesses greater than 5 nm. This value is somewhat smaller than previous measurements obtained from as-deposited films supported by substrates. For smaller bilayer thicknesses the apparent interface stress becomes smaller in magnitude, possibly due to a loss of layering in the specimens.
机译:界面应力是与内部固体界面弹性应变的可逆功相关的表面热力学量。在多层薄膜中,每个界面的界面应力的共同作用导致作用在薄膜各层中的面内双轴体积应力与双层厚度成反比。我们通过直接测量面内弹性应变对双层厚度的依赖性来计算(III)织构化的Ag和Ni之间的界面的界面应力,该应变是通过透射X射线衍射获得的。在这种类型的研究中,我们使用了独立式薄膜,因此无需校正因基体施加的力而导致的固有应力,该应力可能导致所计算的界面应力值存在较大的不确定性。元素,使用双层厚度大于5 nm的薄膜的X射线衍射结果计算得出的界面应力为-2.02±0.26 N / m,该值略小于先前由基板支撑的沉积薄膜获得的测量值。对于较小的双层厚度,表观界面应力的大小会变小,这可能是由于样品中的分层损失所致。

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