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Effect of dielectric coating on the electron work function and the surface stress of a metal

机译:介电涂层对电子功函数和金属表面应力的影响

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The electron work function, contact potential difference, and surface stress of the elastically deformed faces of the metal covered by a dielectric are calculated by using the Kohn-Sham method and stabilized jellium model. Our calculations demonstrate the opposite deformation dependencies of the work function and contact potential difference. Dielectric coating leads to a negative change in the work function and a positive change in the contact potential difference. It is shown that the measurements of the contact potential difference of a deformed face by the Kelvin method give only the change in the value of the one-electron effective potential in the plane of a virtual image behind the surface, rather than the value of the electron work function. The obtained values of the electron work function and surface stress for Al, Au, Cu, and Zn are in agreement with the results of experiments for polycrystals.
机译:通过使用Kohn-Sham方法和稳定的Jelium模型来计算被电介质覆盖的金属的电子功函数,接触电势差和弹性变形面的表面应力。我们的计算证明了功函数和接触电势差的相反变形依赖性。介电涂层导致功函数的负变化和接触电势差的正变化。结果表明,通过开尔文方法对变形面的接触电势差的测量仅给出了表面后虚像平面中单电子有效电势的值的变化,而不是表面电势的值。电子功函数。 Al,Au,Cu和Zn的电子功函数和表面应力的获得值与多晶的实验结果一致。

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