Bridging scales between solid mechanics and surface chemistry

被引:0
作者
Fabien Amiot
机构
[1] FEMTO-ST Institute,
[2] CNRS-UMR 6174/UBFC,undefined
来源
Scientific Reports | / 12卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
A continuum mechanics framework is used herein to model the strains induced in a micromechanical structure by surface phenomena such as adsorption. The resulting picture significantly differs from those of a liquid under surface tension. Considering a solid isotropic elastic material, it is shown that a sphere undergoes a non uniform deformation under surface adsorption. The direction of the surface’s displacement is additionally shown to depend on both the material and the sphere’s radius. It is also shown that modeling surface effects with an elastic membrane surrounding a Cauchy elastic material, the elastic energy is usually misestimated. The reported results also reveal that the overall response of a mechanical structure to surface adsorption strongly depends, at a given scaling, of the higher-grade elastic behavior of the material.
引用
收藏
相关论文
共 98 条
  • [1] Bonnemay M(1965)Nouvelle méthode de tracé des courbes électrocapillaires sur les métaux solides C.R. Acad. Sci. Paris 260 5262-5265
  • [2] Bronoël G(1969)“Electrocapillary curves” of solid metals measured by extensometer instrument J. Phys. Chem. 73 466-468
  • [3] Jonville P(1971)Differential surface tension measurements at thin solid metal electrodes Surf. Sci. 25 261-264
  • [4] Levart E(1974)An electrocapillary study of the gold-perchloric acid solution interface Surf. Sci. 46 641-652
  • [5] Beck TR(1990)Direct measurement of crystal surface stress Phys. Rev. Lett. 64 1035-1038
  • [6] Fredlein RA(1991)Experimental determination of adsorbate-induced surface stress: Oxygen on Si(111) and Si(100) Phys. Rev. B 43 4263-4267
  • [7] Damjanovic A(1983)Three-dimensional structuring of silicon for sensor applications Sens. Actuators 4 455-463
  • [8] Bockris JOM(1992)Atomic force microscopy Progr. Surf. Sci. 41 3-49
  • [9] Fredlein RA(1995)Measuring electrochemically induced surface stress with an atomic force microscope J. Phys. Chem. 99 15728-15732
  • [10] Bockris JOM(1995)Adsorbate-induced surface stress at the solid electrolyte interface measured with an STM J. Electroanal. Chem. 386 267-270