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Abstract:Experiments reveal that capillary condensation of water at the atomic scale follows the Kelvin Equation.
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Key words:
- Kelvin Equation/
- capillary condensation/
- atomic scale
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[1] 杨卫, 马新玲, 王宏涛, 洪伟. 2002. 纳米力学进展. 力学进展, 32:161(Yang W, Ma X L, Wang H T, Hong W. 2002. Advances in nanomechanics.Advances in Mechanics, 32:161). [2] 赵亚溥. 2012. 表面与界面物理力学. 北京: 科学出版社(Zhao Y P. 2012. Physical Mechanics of Surfaces and Interfaces. Beijing: Science Press). [3] 赵亚溥. 2014. 纳米与介观力学. 北京: 科学出版社(Zhao Y P. 2014. Nano-and Meso-Mechanics. Beijing: Science Press). [4] Fisher L R, Gamble R A, Middlehurst J. 1981. The Kelvin equation and the capillary condensation of water.Nature, 290:575-576. [5] Kim S, Kim D, Kim J, et al. 2018. Direct evidence for curvature-dependent surface tension in capillary condensation: Kelvin equation at molecular scale.Phys. Rev. X, 8:41046. [6] Thomson W. 1972. On the equilibrium of vapour at a curved surface of liquid.Proc. R. Soc. Edinb., 7:63-68. [7] van Honschoten J W, Brunets N, Tas N R. 2010. Capillarity at the nanoscale.Chem. Soc. Rev., 39:1096-1114. [8] Wang F C, Yang F Q, Zhao Y P. 2011. Size effect on the coalescence-induced self-propelled droplet.Appl. Phys. Lett., 98:053112. [9] Wang J, Qian J, Gao H. 2009. Effects of capillary condensation in adhesion between rough surfaces.Langmuir, 25:11727. [10] Wei Z, Zhao Y P. 2007. Growth of liquid bridge in AFM.J. Phys. D: Appl. Phys., 40:4368-4375. [11] Yang Q, Sun P Z, Fumagalli L, et al. 2020. Capillary condensation under atomic-scale confinement.Nature, 588:250-253. [12] Yin J, Zhou J, Fang S, et al. 2020. Hydrovoltaic energy on the way.Joule, 4:1852. [13] Zhang Z, Li X, Yin J, et al. 2018. Emerging hydrovoltaic technology.Nat. Nanotechnol., 13:1109-1119.
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