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Colloids and Surfaces: A 2000: Vol 164 Index PDF

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COLLOIDS AND Colloids and Surfaces SURFACES \: Physicochemical and Engineering Aspects 164 (2000) 339 www.elsevier.nl/locate/colsurfa Author Index Abarzhi, I.1., 105 Harata, A., 155 Rynda, Y., 85 Akari, S., 175 Hegewald, H., 279 Akashi, M., 237 Herzog Cardoso, A., 217 Santhiya, D., 143 Akhter, M.S., 247 Schmitt, F.-J., 121 Al-Alawi, S.M., 247 Ikushima, Y., 30 Sekiguchi, T., 183 Aserin, A., 27 Inoue, T., 155 Seppanen, R., 131 Auch, M., 39 Ishikawa, T., 297 Sergeeva, I.P., 121] Ismail, H.M., 227 Serizawa, T., 237 Bergstrom, L., Itoh, H., 183 Shapiro, Y.E., 71 Braga, M., 217 Shervani, Z., 307 Briganti, G., 19 Jacobasch, H.-J., 121 Shiba, F., 183, 205 Jovtchev, S., 95 Sirota, E.B., 55 Chang, C.-H., 287 Slyadnev, M.N., 155 Chuang, T.-K., 287 Kamimura, S., 237 Sobolev, V.D., 121 Churaev, N.V., 12] Kandori, K., 297 Stoeff, S., 95 Clifton, B.J., 163 Khan, A.A., 115 Stoylov, S., 95 Cosgrove, T., 163 Strom, G., 131 > Lamparska, E., 9 Subramanian, S., 14 = 3 D’Arrigo, G., 19 Lopez Cabarcos, E., 47 Sugimoto, T., | 83. 205 Deutsch, M., 55 Szelag, H., 63 Dilsiz, N., 325 Maccarini, M., 19 Djenev, I., 95 Malghan, S.G., 143 Terreros, A., 47 do Carmo Vasconcelos Medeiros da Matsuoka, M., 3 Tertykh, L., 85 Silva, M., 217 Medrzycka, K.B., 9 Tseng, S.-C., 287 Mekhemer, G.A.H., 2 Elftonson, J., 131 Meurk, A., 3 Varshney, K.G., 115 Miller, R., 267 Vreugdenhil, A.J., 257 Fainerman, V.B., 267 Mohwald, H., 39 Falcon, L., 19 Miller, A., 47 Wakamura, M., 297 Fanun, M., 27 Warne, M.R., 163 Finch, J.A., 257 Natarajan, K.A., 143 Weidenhammer, P., 12] Fischer, B., 39 Niwas, R., 115 Wightman, J.P., 325 Wolff, T., 279 Galembeck, F., 217 Ocko, B.M., 5: Wiistneck, N., 267 Galera Gomez, P.A., 47 Ogawa, T., 155 Wiistneck, R., 267 Gang, O., 55 Wu, X.Z., 55 Garti, N., 27 Papastavrou, G., 175 Gélinas, S., 257 Pison, U., 267 Zhmud, B.V., 3 Gupta, U., 115 Profir, V.M., 315 Zwierzykowski, W., 63 PII: S0927-7757(99)00536-1 COLLOIDS AND A SURFACES 4 Colloids and Surfaces ELSEVIER \: Physicochemical and Engineering Aspects 164 (2000) 341 www.elsevier.nl/locate/colsurfa Subject Index Acid—base, 325 Differential thermal analysis, 227 Activation energy, 71 DL-Threonine, 315 Adsorption, 115, 143 Dodecyltrimethylammonium bromide, 9 Adsorption kinetics, 105 Dreiding II, 163 Air/liquid interface, 287 Dynamic adsorption behavior, 287 A\ir/solution interface, 9 Dynamic surface tension, 287 Alcohols, 247 4-Alumina. 143 Electrodeposition, 85 Ammonium poly(methacrylate) (APMA), 143 Electrokinetics, 143 Anionic—cationic adsorption films. 9 Electrostatic and chemical interaction, 143 RAYE reverse eaicelies 307 Enthalpy of vaporisation, 163 Atomic force microscopy, 3 Filaments, 71 Biomaterials, 267 Film-forming substance, 85 Biporous media, 105 Floc size, 131 BSA. 71 Floc strength, 131] nll additives. $5 Fluorescence polarization, 32 07 ‘ c eS, - FRAP, 39 Free space modelling, 163 Calcium hydroxyapatite, 297 DEE. ee 2 ; : FT-PGSE NMR, 71 Carboxylates, 63 Carboxy-terminated particles, 257 . : Heteroflocculation, 131 Cationic polymers, 131 i ihe Hydrocarbon chain length, 4 Cationic surfactant solutions, 121 : 3 a & Hydrocarbons, 267 Cell deformability, 95 : Hydrodynamic radius, 307 Cethyltrimethylammonium bromide, 121 ; . Channels. 71 Hydrogen bonding, 143 1annels, 71 Charge generation, 163 . 46 Stati “age ae Interaction forces, 175 Charge regulation model, 3 a Interfacial properties, 19 c.m.c, 247 Interfacial shear strength, 325 Coagulation by alcohols, 217 Interfacial tension, 63 Compartmented system, 71 lon-exchange, 297 Concentration, 19 lon exchange, 115 Conductivity, 247, 279 Contact angles, 325 Kaolin. 131 Coprecipitation, 297 Critical micelle concentration, 63, 85 LaMer diagram, 183, 205 we — Cryogel, 71 Lateral diffusion, 39 Ligand, 257 Decane/water interface, 9 Dextran-induced aggregation, 95 Maghemite, 257 Diethylenetriamine, 257 Magnetic particles, 257 / PII: S0927-7757(99)00537-: 342 Subject Index Membrane surface charge, 95 q-Space imaging, 71 Micelle, 247 Quartz surfaces, 121 Microemulsion, 279 Microflocs, 131 Red blood cell, 95 Mixed surfactants, 287 Models of cell aggregation, 95 Scanning force microscopy, 175 Modified emulsifiers, 63 Silver halide, 183, 205 Molecular packing, 71 Single fiber fragmentation test, 325 Monoacylglycerols, 63 Size control, 183, 205 Monodispersed particles, 183, 205 Sodium octyl sulfonate, 9 Monolayer~—bilayer surface phase transition, 5: Sodium polyacrylate, 131 Monolavers, 267 Solubilization, 85 Morphology, 71 Solvent, 163 Multicomponent restricted self-diffusion, 71 Solvent-induced coagulation, 217 Styrene supported zirconium (IV) tungstophosphate, n-alkylammonium chlorides, 47 115 Near-critical propane, 307 Sucrose esters, 2 Nitrogen adsorption, 227 Surface characterization, 297 N,N-Dimethyl acetamide, 247 Surface freezing, 55 Nonionic micellar aggregates, 19 Surface ionization parameters, 3 Nonionic surfactants, 5 Surface modification, 297 Nucleation, 183, 205, |“= 15 Surface morphology, 315 Surface pressure, 267 OH-groups, 175 Surface tension, 247 Optical resolution, 315 Surface thermodynamics, 267 Surfactant inactivation, 287 Percolation, 279 Syneresis, 71 3,4,9,10-perylene sodium tetracarboxylate, 307 Phase diagrams, 27 Temperature, 19 Phase transition, 47 Temporal nonlocality, 105 Phosphated zirconia, 227 Thermodynamics, 115 Phospholipids, 39 Thermogravimetry, 227 Photocyclization, 279 Photodimerization, 279 Water solubilization, 27 Polyelectrolyte, 85 Wave mechanism of mass transfer, 105 Polyelectrolytes, 39 W/O microemulsions, 27 Pores, 71 PS latex stability, 217 X-ray diffractometry, 227 Pure alcohol melts, 55 X-ray photoelectron spectroscopy, : Purity decrease, 315 PVA, 71 Zirconia, 227

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