,

From Colloids to Nanotechnology

Gebonden Engels 2004 2004e druk 9783540406587
Verwachte levertijd ongeveer 9 werkdagen

Samenvatting

This volume contains a selection of the papers presented at the 8th Conference on Colloid Chemistry. It was hosted by the Hungarian Chemical Society and organized by Budapest University of Technology and Economics and was held in Keszthely, Hungary in September 2002. A colloidal approach to nano science was one of the main topics of the meeting. It was revealed that the colloid science provides a strong background of the modern material science and nanotechnology. This volume is intended for professionals doing fundamental research or development of industrial applications, who encounter colloid particles, colloid structures, and interface phenomena during their work.

Specificaties

ISBN13:9783540406587
Taal:Engels
Bindwijze:gebonden
Aantal pagina's:225
Uitgever:Springer Berlin Heidelberg
Druk:2004

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Inhoudsopgave

<P>Advanced Materials</P>
<P></P>
<P>Bica D, Vékás L, Avdeev M V, Balasoiu M, Marinica O, Stoian F D, Susan-Resiga D: Magnetizable Colloids on Strongly Polar Carriers- Preparation and Manifold Characterization</P>
<P></P>
<P>Hegyi J, Horváth O: Photocatalytic Reduction of Mercury(II) and Simultaneous Oxidative Degradation of Surfactants in Titanium Dioxide Suspension</P>
<P></P>
<P>Horváth O, Marosvölgyi T, Vörös J: Microenvironmental Effects on Equilibrium and Photoredox Chemistry of Bromo Complexes in Reverse Micelles</P>
<P></P>
<P>Kislyuk V V, Osipyonok M M, Strilchuk G M, Lytvyn P M, Lozovski V Z: Influence of Particle Size on Their Luminescence</P>
<P></P>
<P>Korösi L, Mogyorósi K, Kun R, Németh J, Dékány I: Preparation and Photooxidation Properties of Metal Oxide Semiconductors Incorporated in Layer Silicates</P>
<P></P>
<P>Simiyu J, Aduda B O, Mwabora J M: Anthocyanin Sensitized Nanoporous TIO<SUB>2</SUB> PEC Solar Cells Preparated by Sol-Gel Process</P>
<P></P>
<P>Suzuki M: Actomyosin Motor Mechanism: Affinity Gradient Surface Force Model</P>
<P></P>
<P>Szabó-Bárdos E, Czili H, Megyeri-Balogh K, Horváth A: Photocatalytic Oxidation of Oxalic Acid Enhanced by Silver and Copper Deposition on TiO<SUB>2</SUB> Surface</P>
<P></P>
<P>Zimehl R, Textor T, Bahners T, Schollmexer E: Smart Textiles – When Colloid Chemistry Bear a Challenge</P>
<P></P>
<P>Nanoparticles, Nanostructures and Nanocomposites</P>
<P></P>
<P>Agod A, Tolnai Gy, Esmail N, Hórvölgyi Z: compression of Nanoparticulate Arrays in a Film Balance: Computer Simulations </P>
<P></P>
<P>Hild E, Seszták T, Völgyes D, Hórvölgyi Z: Characterisation of Silica Nanoparticulate Layers with Scanning Angle Reflectometry</P>
<P></P>
<P>Hochepied J-F, de Oliveira A P A: Controlled Precipitation of Zinc Oxide Particles</P>
<P></P>
<P>Joó P: Porosity and Permeability of Clay Films: an Electrochemical Survey</P>
<P></P>
<P>László K, Marthi K, Tombácz E, Geissler E: Morphology and Acid-Base Properties of Porous Carbon Derived from Polyethyleneterephthalate by Nitric acid Treatment</P>
<P></P>
<P>Papp Sz, Patakfalvi R, Dékány I: Synthesis and Characterization of Noble Metal Nanoparticles /Kaolinite Composites</P>
<P></P>
<P>Rácz L, Pukánszky B Jr, Pozsgay A, Pukánszky B: PA6/Montmorillonite Nanocomposites: Effect of Interaction on Structure and Properties</P>
<P></P>
<P>Sinkó K, Neményi A: Effect of Al- and Si-Containing Precursors on the Structures Formed by Sol-Gel Method</P>
<P></P>
<P>Interfaces, Adsorption</P>
<P></P>
<P>Dredán J, Csóka G, Antal I, Rácz I, Marton S: Interfacial Behaviour of Pharmaceutical Excipients</P>
<P></P>
<P>Földényi R, Czinkota I, Ertli T: Presentation of Multi-step Isotherms Formed at the Adsorption of Herbicides</P>
<P></P>
<P>Horányi G, Joó P: Distinction between Electrostatic and Specific Adsorption of Anions on (Hydr)Oxide/Electrolyte Interfaces by Application of Radiotracer Technique</P>
<P></P>
<P>Kiss É, Szalma J, Keresztes Zs, Kálmán E, Mohai M, Bertóti I: Adhesional Stability of Cadmium-arachidate Langmuir-Blodgett Layers</P>
<P></P>
<P>Móczó J, Fekete E, Pukánszky B: Adsorption of Surfactants on CaCO<SUB>3</SUB> and its Effect on Surface Free Energy</P>
<P></P>
<P>Pászli I, László K: State Equation of the Boundary Layer</P>
<P></P>
<P>Pászli I, László K: The Extended Capillary Theory</P>
<P></P>
<P>Varga I, Gilányi T, Mészáros R: Experimental Investigation of Counterion Dependence of Alkali Decyl Sulfate Adsorption at the Air/Solution Interface</P>
<P></P>
<P>Polymers and Macromolecular Solutions</P>
<P></P>
<P>Halász L, Vincze Á, Vorster O: Relaxation Spectrum Calculation Methods and Their Use to Determine the Molecular Mass Distribution of Propylene, Ethylene and Alpha Olefin Random Copolymers</P>
<P></P>
<P>Kónya M, Bohus P, Paglino L, Csóka I, Csányi E, Eros I: Coherent Emulsions Containing Alkylpolyglucoside Esters as Emulsifiers</P>
<P></P>
<P>Lakatos I, Lakatos-Szabó J: Diffusionof H<SUP>+</SUP> Ions in Polymer/Silicate Gels</P>
<P></P>
<P>Nohara A, Kageyama M, Kuroki S, Ando I: A Study of Structure and Dynamics of Water and Lysozyme Protein in Aqueous Solution by Pulse High Field-Gradient Spin-Echo <SUP>1</SUP>H NMR and <SUP>17</SUP>O NMR Methods</P>
<P></P>
<P>Surfactants</P>
<P></P>
<P>Gilányi T, Varga I, Mészáros R: Molecular Interaction Model of Polymer-surfactant Complex Formation</P>
<P></P>
<P>Kharitonova T, Rudnev A, Ivanova N: Capillary Zone Electrophoresis for Surfactant Analysis in Aqueous Media</P>
<P></P>
<P>Marosi Gy, Márton A, Csontos I, Matkó Sz, Szép A, Anna P, Bertalan Gy, Kiss É: Reactive Surfactants – New Type of Additives for Multicomponent Polymer Systems</P>
<P></P>
<P>Petrovic L, Sovilj V, Dokic P, Schäffer I: Formation of Proanthocyanidins –Loaded Liposomes under Various Conditions</P>
<P></P>
<P>Aggregation and Growth</P>
<P></P>
<P>Kilian H-G, Kemkemer R, Gruler H: Relaxation Processes during Cell Growth</P>
<P></P>
<P>Tombácz E, Nyilas T, Libor Zs, Csanaki Cs: Surface Charge Heterogeneity and Aggregation of Clay Lamellae in Aqueous Suspensions</P>
<P></P>
<P>Vörös M, Agod A, Basa P, Zrínyi M, Hórvölgyi Z: Analysis of the Cluster Size Distribution of 2D Aggregates in Terms of Polydispersity</P>

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