Fr. 134.00

Crystallization of Nanoscaled Colloids

English · Hardback

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Description

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This thesis deals with the processes that create ordered assemblies from disordered nanoparticles. Ordered packings of nanoscale particles can exhibit unusual properties. This work investigates the self-assembly of such particles, a process widely employed for the generation of ordered structures, but not yet well understood. In situ methods are used to observe the assembly of sub-micron polymer lattices and sub-10 nm gold particles into crystalline monolayers and aggregates. On the basis of these results, the book develops new models that describe the competition between different influences, such as thermal agitation and directional forces. It suggests necessary criteria that lead to the emergence of order.

List of contents

Large-Area Convective Assembly.- Convective Crystallization.- Temperature-Induced Agglomeration.- Temperature-Induced Crystallization.

Summary

This thesis deals with the processes that create ordered assemblies from disordered nanoparticles. Ordered packings of nanoscale particles can exhibit unusual properties. This work investigates the self-assembly of such particles, a process widely employed for the generation of ordered structures, but not yet well understood. In situ methods are used to observe the assembly of sub-micron polymer lattices and sub-10 nm gold particles into crystalline monolayers and aggregates. On the basis of these results, the book develops new models that describe the competition between different influences, such as thermal agitation and directional forces. It suggests necessary criteria that lead to the emergence of order.

Product details

Authors Philip Born, Philip G Born, Philip G. Born
Publisher Springer, Berlin
 
Languages English
Product format Hardback
Released 27.02.2013
 
EAN 9783319002293
ISBN 978-3-31-900229-3
No. of pages 130
Dimensions 158 mm x 15 mm x 243 mm
Weight 364 g
Illustrations XVII, 130 p.
Series Springer Theses
Springer Theses
Subject Natural sciences, medicine, IT, technology > Chemistry > Physical chemistry

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