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Thermodynamic analysis of liquid bridge for fixed volume in atomic force microscope
by
WEI Zheng HE MengFu ZHAO WenBin LI Yang
in
Astronomy
/ Atomic force microscopes
/ Classical and Continuum Physics
/ Film thickness
/ Liquid bridges
/ Observations and Techniques
/ Physics
/ Physics and Astronomy
/ Relative humidity
/ Thermodynamics
/ Water film
/ 体积
/ 原子力显微镜
/ 挥发性液体
/ 接触时间
/ 水膜厚度
/ 热力学分析
/ 热力学理论
/ 相对湿度
2013
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Thermodynamic analysis of liquid bridge for fixed volume in atomic force microscope
by
WEI Zheng HE MengFu ZHAO WenBin LI Yang
in
Astronomy
/ Atomic force microscopes
/ Classical and Continuum Physics
/ Film thickness
/ Liquid bridges
/ Observations and Techniques
/ Physics
/ Physics and Astronomy
/ Relative humidity
/ Thermodynamics
/ Water film
/ 体积
/ 原子力显微镜
/ 挥发性液体
/ 接触时间
/ 水膜厚度
/ 热力学分析
/ 热力学理论
/ 相对湿度
2013
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Thermodynamic analysis of liquid bridge for fixed volume in atomic force microscope
by
WEI Zheng HE MengFu ZHAO WenBin LI Yang
in
Astronomy
/ Atomic force microscopes
/ Classical and Continuum Physics
/ Film thickness
/ Liquid bridges
/ Observations and Techniques
/ Physics
/ Physics and Astronomy
/ Relative humidity
/ Thermodynamics
/ Water film
/ 体积
/ 原子力显微镜
/ 挥发性液体
/ 接触时间
/ 水膜厚度
/ 热力学分析
/ 热力学理论
/ 相对湿度
2013
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Thermodynamic analysis of liquid bridge for fixed volume in atomic force microscope
Journal Article
Thermodynamic analysis of liquid bridge for fixed volume in atomic force microscope
2013
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Overview
In ambient condition, capillary forces are the major contributors to the adhesive forces between the tip of an atomic force mi- croscope (AFM) and the sample. In general, capillary forces are thought to be related to water film thickness, contact time and relative humidity and so on. In this paper, an original analysis regarding the liquid bridge, based on the surface and interface thermodynamic theory, is proposed. The cases covered in the study include the capillary forces and temperature of liquid bridge for quickly drawn liquid bridge, and for nonvolatile liquid bridge. The study results show that variation in temperature may occur in the liquid bridge when it is stretched.
Publisher
Springer Berlin Heidelberg,Springer Nature B.V
Subject
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