305 - 318 |
Use of the liquid-liquid interface for generating ultrathin nanocrystalline films of metals, chalcogenides, and oxides Rao CNR, Kulkarni GU, Agrawal VV, Gautam UK, Ghosh M, Tumkurkar U |
319 - 327 |
Surface complexation of condensed phosphate to aluminum hydroxide: An ATR-FTIR spectroscopic investigation Guan XH, Liu Q, Chen GH, Shang C |
328 - 332 |
Removal of p-aminophenol and p-nitrophenol from aqueous solution through adsorption on antimony, cadmium, and zirconium ferrocyanides Tewari BB, Boodhoo M |
333 - 338 |
Adsorption of ethyl violet dye in aqueous solution by regenerated spent bleaching earth Tsai WT, Chang YM, Lai CW, Lo CC |
339 - 346 |
Phosphorus fractions and phosphate sorption characteristics in relation to the sediment compositions of shallow lakes in the middle and lower reaches of Yangtze River region, China Wang SG, Jin XC, Pang Y, Zhao HC, Zhou XN, Wu FC |
347 - 351 |
Hydrogen and methane sorption in dry and water-loaded multiwall carbon nanotubes Zhou L, Sun Y, Yang ZG, Zhou Y |
352 - 358 |
Biosorption of cadmium by the protonated macroalga Sargassum muticum: Binding analysis with a nonideal, competitive, and thermodynamically consistent adsorption (NICCA) model Lodeiro P, Rey-Castro C, Barriada JL, de Vicente MES, Herrero R |
359 - 370 |
Micellar copolymerization of associative polymers: Study of the effect of acrylamide on sodium dodecyl sulfate-poly(propylene oxide) methacrylate mixed micelles Bastiat G, Grassl B, Francois J |
371 - 378 |
Dielectric properties of Bauhinia monandra and concanavalin A lectin monolayers, part I Andrade CAS, Baszkin A, Santos-Magalhaes NS, Coelho LCBB, de Melo CP |
379 - 385 |
Mixed monolayers of Bauhinia monandra and Concanavalin A lectins with phospholipids, part II Andrade CAS, Baszkin A, Santos-Magalhaes NS, Coelho LCBB, de Melo CP |
386 - 393 |
Fast exopolysaccharide secretion of Pseudomonas aeruginosa on polar polymer surfaces Carnazza S, Satriano C, Guglielmino S, Marletta G |
394 - 401 |
Solvent-induced lysozyme gels: Rheology, fractal analysis, and sol-gel kinetics da Silva MA, Areas EPG |
402 - 409 |
Solvent-induced shape evolution of PVP protected spherical silver nanoparticles into triangular nanoplates and nanorods Deivaraj TC, Lala NL, Lee JY |
410 - 418 |
The effect of block copolymer EPE1100 on the colloidal stability of Mg-A1 LDH dispersions Wang XJ, Sun DJ, Liu SY, Wang R |
419 - 426 |
Preparation and colloidal stability of monodisperse magnetic polymer particles Gu SC, Onishi JY, Kobayashi Y, Nagao D, Konno M |
427 - 445 |
Morphology and surface properties of fumed silicas Gun'ko VM, Mironyuk IF, Zarko VI, Voronin EF, Turov VV, Pakhlov EM, Goncharuk EV, Nychiporuk YM, Vlasova NN, Gorbik PP, Mishchuk OA, Mishchuk OA, Chuiko AA, Kulik TV, Palyanytsya BB, Pakhovchishin SV, Skubiszewska-Zieba J, Janusz W, Turov AV, Leboda R |
446 - 454 |
An electrochemical quartz crystal impedance study on anti-human immunoglobulin G immobilization in the polymer grown during dopamine oxidation at an Au electrode He H, Xie QJ, Yao SZ |
455 - 465 |
Free radical generation upon plasma treatment of cotton fibers and their initiation efficiency in surface-graft polymerization Andreozzi L, Castelvetro V, Ciardelli G, Corsi L, Faetti M, Fatarella E, Zulli F |
466 - 471 |
Vanadia-catalyzed solar photooxidation of aniline Karunakaran C, Senthilvelan S |
472 - 478 |
Self-assembly prismatic aggregates formed during the calcination of ZnO powders: In situ monitoring by ETA technique and their photocatalytic properties Li D, Balek V, Ohashi N, Mitsuhashi T, Hishita S, Haneda H |
479 - 487 |
Influence of various monovalent cations and calcium ion on the colloidal fouling potential Song LF, Singh G |
488 - 497 |
Self-assembling structures and thin-film microscopic morphologies of amphiphilic rod-coil block oligomers Li HB, Liu QT, Qin LD, Xu M, Lin XK, Yin SY, Wu LX, Su ZM, Shen JC |
498 - 503 |
Hydrogen ion titration of alkyldimethylamine oxides by C-13 and H-1 NMR and conventional methods Kakehashi R, Shizuma M, Yamamura S, Maeda H |
504 - 511 |
Preparation and characterization of new hybrid organic/inorganic systems derived from calcium (alpha-aminoalkyl)-phosphonates and -phosphonocarboxylates Al-Ali F, Lebugle A, Rico-Lattes I, Etemad-Moghadam G |
512 - 520 |
The importance of lipophobicity in surfactants: Methods for measuring lipophobicity and its effect on the properties of two types of nonionic surfactant Fukuda M |
521 - 529 |
Mixed micelles of alkylamines and cetyltrimethylammonium chloride Garcia-Rio L, Leis JR, Lopez-Fontan JL, Mejuto JC, Mosquera V, Rodriguez-Dafonte P |
530 - 541 |
Physicochemical studies on microemulsions 9. Conductance percolation of AOT-derived W/O microemulsion with aliphatic and aromatic hydrocarbon oils Chakraborty I, Moulik SP |
542 - 550 |
Surface modification of liposomes by saccharides: Vesicle size and stability of lactosyl liposomes studied by photon correlation spectroscopy Zhu JM, Yan F, Guo ZW, Marchant RE |
551 - 559 |
Mixed micelles of series of monomeric and dimeric cationic, zwitterionic, and unequal twin-tail cationic surfactants with sugar surfactants: A fluorescence study Bakshi MS, Kaur G |
560 - 565 |
Area per surfactant molecule values of gemini surfactants at the liquid-hydrophobic solid interface Pisarik M, Rosen MJ, Polakovicova M, Devinsky F, Lacko L |
566 - 573 |
Surfactant tail length-dependent lipase activity profile in cationic water-in-oil microemulsions Dasgupta A, Das D, Mitra RN, Das PK |
574 - 580 |
Example of an organic reaction in a Langmuir film: Reduction of an amphiphilic ketone by NaBH4 Gascon I, Patrascu C, Marty JD, Mingotaud C |
581 - 587 |
Adsorption and micellar properties of a mixed system of nonionic-nonionic surfactants Islam MN, Kato T |
588 - 591 |
Single-crystalline CuO nanobelts fabricated by a convenient route Song XY, Yu HY, Sun SX |
592 - 596 |
Electrokinetic and adsorption studies of alumina suspensions using Darvan C as dispersant Singh BR, Bhattacharjee S, Besra L, Sengupta DK |
597 - 599 |
Pioneer studies on HC1 and silylation treatments of chrysotile Mendelovici E, Frost RL |
600 - 603 |
Dispersion of components in transport processes: Velocity dispersion model Pivovarov S |