A new methodology for measuring solid/liquid interfacial energy

被引:13
|
作者
Sarkar, Sreya [1 ]
Gukeh, Mohamad Jafari [1 ]
Roy, Tamal [2 ]
Gaikwad, Harshad [1 ]
Bellussi, Francesco Maria [1 ,3 ]
Moitra, Shashwata [1 ]
Megaridis, Constantine M. [1 ]
机构
[1] Univ Illinois, Dept Mech & Ind Engn, Chicago, IL 60607 USA
[2] Swiss Fed Inst Technol, Dept Mech & Proc Engn, Lab Thermodynam Emerging Technol, CH-8092 Zurich, Switzerland
[3] Politecn Torino, DOE, Turin, Italy
关键词
Wettability; Solid; liquid interfacial energy; Frictional resistance force; Contact angle; Surface roughness; CAPTIVE-BUBBLE METHODS; CONTACT-ANGLE; SURFACE-TENSION; SOLID-SURFACES; DROP SIZE; WETTABILITY; ABSORPTION;
D O I
10.1016/j.jcis.2022.10.101
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Hypothesis: The interfacial energy csl between a solid and a liquid designates the affinity between these two phases, and in turn, the macroscopic wettability of the surface by the fluid. This property is needed for precise control of fluid-transport phenomena that affect the operation/quality of commercial devices/ products. Although several indirect or theoretical approaches can quantify the solid/liquid interfacial energy, no direct experimental procedure exists to measure this property for realistic (i.e. rough) surfaces. Makkonen hypothesized that the frictional resistance force per unit contact-line length is equal to the interfacial energy on smooth surfaces, which, however, are rarely found in practice. Consequently, the hypothesis that Makkonen's assumption may also hold for rough surfaces (which are far more common in practice) arises naturally. If so, a reliable and simple experimental methodology of obtaining csl for rough surfaces can be put forth. This is accomplished by performing dynamic contact-angle experiments on rough surfaces that quantify the relationship between the frictional resistance force per unit contact -line length acting on an advancing liquid (Fp;a) and the surface roughness in wetting configurations.Experiment: We perform static and advancing contact-line experiments with aqueous and organic liquids on different hydrophilic surfaces (Al, Cu, Si) with varying Wenzel roughnesses in the range 1-2. These parameters are combined with the liquid's known surface tension to determine Fp,a.Findings: Fp,a rises linearly with the surface roughness. Analysis based on existing theories of wetting and contact-angle hysteresis reveals that the slope of Fp,a vs. Wenzel roughness is equal to the solid/liquid interfacial energy, which is thus determined experimentally with the present measurements. Interfacial energies obtained with this experimental approach are within 12% of theoretically predicted values for several solid/liquid pairs, thereby validating this methodology.CO 2022 Published by Elsevier Inc.
引用
收藏
页码:800 / 807
页数:8
相关论文
共 50 条
  • [41] The solid-liquid interfacial energy of metals: calculations versus measurements
    Jones, H
    MATERIALS LETTERS, 2002, 53 (4-5) : 364 - 366
  • [42] Effect of high gravity on the solid-liquid interfacial free energy
    Patuelli, C
    Tognato, R
    PROCESSING BY CENTRIFUGATION, 2001, : 361 - 366
  • [43] Patterned Surface Energy for Modulating Solid-Liquid Interfacial Properties
    Liu, Wanling
    Li, Kaixuan
    Song, Yanlin
    Li, Huizeng
    ACS NANO, 2025, 19 (11) : 10755 - 10765
  • [44] Measurement of Solid-Liquid Interfacial Energy and Its Anisotropy of Succinonitrile
    Wang, Lilin
    Lin, Xin
    Wang, Meng
    Huang, Weidong
    3RD INTERNATIONAL CONFERENCE ON ADVANCES IN SOLIDIFICATION PROCESSES, 2012, 27
  • [45] Experimental determination of solid-liquid interfacial energy for solid Cd in Bi-Cd liquid solutions
    Maraşli, N. (marasli@erciyes.edu.tr), 1600, Elsevier Ltd (385): : 1 - 2
  • [46] Solid-liquid interfacial energy of solid succinonitrile solution in equilibrium with succinonitrile-neopentylglycol eutectic liquid
    Karadag, Saadet B.
    Altintas, Yemliha
    Ozturk, Esra
    Aksoz, Sezen
    Keslioglu, Kazim
    Marasli, Necmettin
    JOURNAL OF CRYSTAL GROWTH, 2013, 380 : 209 - 217
  • [47] Solid–liquid interfacial energy of solid succinonitrile in equilibrium with succinonitrile-1,4-diiodobenzene eutectic liquid
    Ş. B. Ersoy
    Y. Altıntas
    S. B. Karadağ
    S. Aksöz
    K. Keşlioğlu
    N. Maraşlı
    Journal of Thermal Analysis and Calorimetry, 2015, 119 : 1867 - 1874
  • [48] Solid-Liquid Interfacial Energy of Solid Neopentylglycol Solution in Equilibrium with Neopentylglycol-Aminomethylpropanediol Eutectic Liquid
    Bayram, Umit
    Ozer, Alaaddin
    Aksoz, Sezen
    Marasli, Necmettin
    METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 2013, 44A (09): : 4042 - 4050
  • [49] Solid-liquid interfacial energy of neopentylglycol solid solution in equilibrium with succinonitrile-neopentylglycol-aminomethylpropanediol liquid
    Ozer, A.
    Bayram, U.
    Aksoz, S.
    Marasli, N.
    JOURNAL OF CRYSTAL GROWTH, 2013, 364 : 34 - 39
  • [50] Experimental determination of solid-liquid interfacial energy for solid Cd in Bi-Cd liquid solutions
    Keslioglu, K
    Erol, M
    Marasli, N
    Gündüz, M
    JOURNAL OF ALLOYS AND COMPOUNDS, 2004, 385 (1-2) : 207 - 213