RELATIONSHIP OF THIN-FILM STABILITY AND MORPHOLOGY TO MACROSCOPIC PARAMETERS OF WETTING IN THE APOLAR AND POLAR SYSTEMS

被引:284
作者
SHARMA, A
机构
[1] Department of Chemical Engineering, Indian Institute of Technology at Kanpur
关键词
D O I
10.1021/la00027a042
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The total free energy of a thin fluid film, sandwiched between a substrate and a fluid phase, is derived from the apolar (Lifshitz-van der Waals) and the polar (acid-base) interactions. While the instability and rupture of the thin film engendered by the apolar forces have been extensively studied, the polar interactions cannot be neglected unless the film fluid and at least one of the bounding media are completely apolar. For polar systems (e.g., water films), the total free energy of the film and its second derivative (force per unit volume) are shown to be related to the macroscopic parameters of wetting (i.e., the apolar and polar spreading coefficients and contact angle of macrodrops). Threshold of the film instability is derived from the Young-Laplace equation modified by intermolecular pressure, and the growth rate of instability is obtained from Navier-Stokes equations. Regions of the film stability/instability are determined from characterization of all possible variations of intermolecular forces with the film thickness, with components of spreading coefficients and macroscopic contact angle. For systems that are completely apolar, completely polar, or when components of spreading coefficients are of the same sign, the film rupture is guaranteed whenever the macroscopic drop displays a finite contact angle. Interesting possibilities occur when the apolar and polar spreading coefficients are of opposite signs: (a) the thin film may be unstable even though the corresponding macroscopic drop shows complete wetting; (b) the film may be stable despite a finite contact angle. Conditions under which growth of instability leads to the film breakup, or to spatially nonhomogeneous films, are discussed. Implications of result in rupture of macroscopic films, heterogeneous nucleation, and the equilibrium film pressure are indicated.
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页码:861 / 869
页数:9
相关论文
共 45 条
[11]   CONTACT ANGLES AND THE EQUILIBRIUM SPREADING PRESSURES OF LIQUIDS ON HYDROPHOBIC SOLIDS [J].
FOWKES, FM ;
MCCARTHY, DC ;
MOSTAFA, MA .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1980, 78 (01) :200-206
[12]   INTERFACIAL INSTABILITY AT CELL-MEMBRANES [J].
GALLEZ, D ;
COAKLEY, WT .
PROGRESS IN BIOPHYSICS & MOLECULAR BIOLOGY, 1986, 48 (03) :155-199
[13]  
Golubitsky M. S., 1985, SINGULARITIES GROUPS
[14]   A THEORY FOR ESTIMATION OF SURFACE AND INTERFACIAL ENERGIES .3. ESTIMATION OF SURFACE ENERGIES OF SOLIDS FROM CONTACT ANGLE DATA [J].
GOOD, RJ ;
GIRIFALCO, LA .
JOURNAL OF PHYSICAL CHEMISTRY, 1960, 64 (05) :561-565
[15]   STABILITY OF THIN AQUEOUS FILMS ON SOLID-SURFACES .2. A MODEL FOR AQUEOUS FILMS BOUNDED BY DISSIMILAR CHARGE REGULATING SURFACES [J].
GUPTA, A ;
SHARMA, MM .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1992, 149 (02) :407-424
[16]   ADSORPTION AND CONTACT-ANGLE STUDIES .2. WATER AND ORGANIC-SUBSTANCES ON POLISHED POLYTETRAFLUOROETHYLENE [J].
HU, P ;
ADAMSON, AW .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1977, 59 (03) :605-614
[17]   HYDRODYNAMIC MODEL OF STEADY MOVEMENT OF A SOLID/LIQUID/FLUID CONTACT LINE [J].
HUH, C ;
SCRIVEN, LE .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1971, 35 (01) :85-&
[18]  
Israelachvili J.N., 1985, INTERMOLECULAR SURFA
[19]   MEASUREMENT OF FORCES BETWEEN 2 MICA SURFACES IN AQUEOUS-ELECTROLYTE SOLUTIONS IN RANGE 0-100 NM [J].
ISRAELACHVILI, JN ;
ADAMS, GE .
JOURNAL OF THE CHEMICAL SOCIETY-FARADAY TRANSACTIONS I, 1978, 74 :975-&
[20]   STABILITY OF STAGNANT VISCOUS FILMS ON A SOLID-SURFACE [J].
JAIN, RK ;
RUCKENSTEIN, E .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1976, 54 (01) :108-116