Advanced Inorganic Nanoarchitectures from Oriented Self‐Assembly

Advanced Inorganic Nanoarchitectures from Oriented Self‐Assembly Complex and well‐defined nanostructures are promising for emerging properties with broad applications. Self‐assembly processes driven by diverse interactions generate varied nanostructures by using versatile nanocrystals as building blocks, while oriented attachment growth allows individual nanocrystals to be integrated and fused into highly anisotropic structures. By a combination of self‐assembly technique and oriented attachment growth, many advanced nanostructures can be made. Such approaches can be viewed as an architecture of the nanoscale counterparts in the microworld, named as nanoarchitectures. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Advanced Materials Wiley

Advanced Inorganic Nanoarchitectures from Oriented Self‐Assembly

Advanced Materials, Volume 28 (6) – Feb 1, 2016

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Publisher
Wiley
Copyright
Copyright © 2016 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim
ISSN
0935-9648
eISSN
1521-4095
D.O.I.
10.1002/adma.201502869
Publisher site
See Article on Publisher Site

Abstract

Complex and well‐defined nanostructures are promising for emerging properties with broad applications. Self‐assembly processes driven by diverse interactions generate varied nanostructures by using versatile nanocrystals as building blocks, while oriented attachment growth allows individual nanocrystals to be integrated and fused into highly anisotropic structures. By a combination of self‐assembly technique and oriented attachment growth, many advanced nanostructures can be made. Such approaches can be viewed as an architecture of the nanoscale counterparts in the microworld, named as nanoarchitectures.

Journal

Advanced MaterialsWiley

Published: Feb 1, 2016

Keywords: ; ; ; ;

References

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