Influence of atomic force microscope (AFM) probe shape on adhesion force measured in humidity environment

被引:0
|
作者
Li Yang
Yu-song Tu
Hui-li Tan
机构
[1] Guangxi Normal University,College of Physics Science and Technology
[2] Shanghai University,Institute of Systems Biology
来源
关键词
capillary force; van derWaals force; adhesion force; curvatures probe shape; O343; 74M10;
D O I
暂无
中图分类号
学科分类号
摘要
In micro-manipulation, the adhesion force has very important influence on behaviors of micro-objects. Here, a theoretical study on the effects of humidity on the adhesion force is presented between atomic force microscope (AFM) tips and substrate. The analysis shows that the precise tip geometry plays a critical role on humidity dependence of the adhesion force, which is the dominant factor in manipulating micro-objects in AFM experiments. For a blunt (paraboloid) tip, the adhesion force versus humidity curves tends to the apparent contrast (peak-to-valley corrugation) with a broad range. This paper demonstrates that the abrupt change of the adhesion force has high correlation with probe curvatures, which is mediated by coordinates of solid-liquid-vapor contact lines (triple point) on the probe profiles. The study provides insights for further understanding nanoscale adhesion forces and the way to choose probe shapes in manipulating micro-objects in AFM experiments.
引用
收藏
页码:567 / 574
页数:7
相关论文
共 50 条
  • [41] CHARACTERIZATION OF PILLARED MONTMORILLONITES WITH THE ATOMIC-FORCE MICROSCOPE (AFM)
    OCCELLI, ML
    DRAKE, B
    GOULD, SAC
    JOURNAL OF CATALYSIS, 1993, 142 (02) : 337 - 348
  • [42] Development of Defocus Atomic Force Microscope (DeF-AFM)
    Cheng, Chung-Hsiang
    Wang, Wei-Min
    Huang, Kuang-Yuh
    SMART SCIENCE, 2023, 11 (01) : 226 - 233
  • [43] THE EVALUATION OF TOPOGRAPHY BORRELIA BURGDORFERI BY ATOMIC FORCE MICROSCOPE (AFM)
    Tokarska-Rodak, Malgorzata
    Koziol-Montewka, Maria
    HEALTH PROBLEMS OF CIVILIZATION, 2015, 9 (03) : 12 - 15
  • [44] Maximum allowable load of atomic force microscope (AFM) nanorobot
    M. H. Korayem
    A. K. Hoshiar
    N. Ebrahimi
    The International Journal of Advanced Manufacturing Technology, 2009, 43 : 690 - 700
  • [45] ATOMIC-FORCE MICROSCOPE COMBINED WITH SCANNING TUNNELING MICROSCOPE [AFM/STM]
    MORITA, S
    SUGAWARA, Y
    FUKANO, Y
    JAPANESE JOURNAL OF APPLIED PHYSICS PART 1-REGULAR PAPERS SHORT NOTES & REVIEW PAPERS, 1993, 32 (6B): : 2983 - 2988
  • [46] Influence of microstructure-confined fluids on the atomic force microscope probe dynamics
    Chen, Yuhang
    Niu, Dun
    Huang, Wenhao
    MICRO & NANO LETTERS, 2011, 6 (11): : 914 - 917
  • [47] Viscoelastic properties of demineralized human dentin measured in water with atomic force microscope (AFM)-based indentation
    Balooch, M
    Wu-Magidi, IC
    Balazs, A
    Lundkvist, AS
    Marshall, SJ
    Marshall, GW
    Siekhaus, WJ
    Kinney, JH
    JOURNAL OF BIOMEDICAL MATERIALS RESEARCH, 1998, 40 (04): : 539 - 544
  • [48] Cellular Shear Adhesion Force Measurement and Simultaneous Imaging by Atomic Force Microscope
    Hou, Yu
    Wang, Zuobin
    Li, Dayou
    Qiu, Renxi
    Li, Yan
    Jiang, Jinlan
    JOURNAL OF MEDICAL AND BIOLOGICAL ENGINEERING, 2017, 37 (01) : 102 - 111
  • [49] Cellular Shear Adhesion Force Measurement and Simultaneous Imaging by Atomic Force Microscope
    Yu Hou
    Zuobin Wang
    Dayou Li
    Renxi Qiu
    Yan Li
    Jinlan Jiang
    Journal of Medical and Biological Engineering, 2017, 37 : 102 - 111
  • [50] A NEW TOOL FOR ADHESION SCIENCE - THE ATOMIC FORCE MICROSCOPE
    CREUZET, F
    RYSCHENKOW, G
    ARRIBART, H
    JOURNAL OF ADHESION, 1992, 40 (01): : 15 - 25