Colloidal Dispersions Under Slit-Pore Confinement

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Last edited by ImportBot
October 6, 2021 | History

Colloidal Dispersions Under Slit-Pore Confinement

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This dissertation contributes to the understanding of fundamental issues in the highly interdisciplinary field of colloidal science. Beyond colloid science, the system also serves as a model for studying interactions in biological matter. This work quantitatively investigated the scaling laws of the characteristic lengths of the structuring of colloidal dispersions and tested the generality of these laws, thereby explaining and resolving some long-standing contradictions in the literature.

It revealed the effect of confinement on the structuring, independently of specific properties of the confining interfaces. In addition, it resolved the influence of roughness and charge of the confining interfaces on the structuring, as well as providing a method to measure the effect of surface deformability on colloidal structuring.

Publish Date
Language
English
Pages
121

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Previews available in: English

Edition Availability
Cover of: Colloidal Dispersions Under Slit-Pore Confinement
Colloidal Dispersions Under Slit-Pore Confinement
Jan 28, 2015, Springer
paperback
Cover of: Colloidal Dispersions under Slit-Pore Confinement
Colloidal Dispersions under Slit-Pore Confinement
2013, Springer
in English
Cover of: Colloidal Dispersions Under Slit-Pore Confinement
Colloidal Dispersions Under Slit-Pore Confinement
2012, Springer Berlin Heidelberg, Imprint: Springer
electronic resource / in English

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Book Details


Table of Contents

Scientific background
Experimental Section
Structuring of nanoparticle suspensions confined between two smooth solid surfaces
Structuring of nanoparticles between modified solid surfaces
Structuring of nanoparticles confined between a silica microsphere and an air bubble
Structuring of nonionic surfactant micelles.

Edition Notes

Published in
Berlin, Heidelberg
Series
Springer Theses, Recognizing Outstanding Ph.D. Research

Classifications

Dewey Decimal Class
530.41
Library of Congress
QC176.8.A44, QC718.5.D84 Z46 2012, QC173.458.S62

The Physical Object

Format
[electronic resource] /
Pagination
XIX, 121 p. 62 illus., 14 illus. in color.
Number of pages
121

ID Numbers

Open Library
OL27024973M
Internet Archive
colloidaldispers00zeng
ISBN 13
9783642349911
LCCN
2012953252

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History

Download catalog record: RDF / JSON
October 6, 2021 Edited by ImportBot import existing book
November 13, 2020 Edited by MARC Bot import existing book
June 29, 2019 Created by MARC Bot import new book