Crystallization and Growth of Colloidal Nanocrystals

Since the size, shape, and microstructure of nanocrystalline materials strongly impact physical and chemical properties, the development of new synthetic routes to  nanocrystals with controlled composition and morphology is a key objective of the nanomaterials community. This objective is dependent...

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Auteurs principaux: Leite, Edson Roberto, 19..-, Ribeiro, Caue (Auteur)
פורמט: Livre numérique
שפה:Anglais
יצא לאור: New York, NY : Springer New York [20..].
Cham : Springer Nature
מהדורה:1st ed. 2012.
סדרה:SpringerBriefs in Materials
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גישה מקוונת:Accès sur la plateforme de l'éditeur
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הערה: L'impression du document génère 92 p.
Archives Springer e-books (Licence nationale)
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Edition sous un autre format:• Crystallization and growth of colloidal nanocrystals, Edson Roberto Leite, Caue Ribeiro, New York, N.Y., Springer, 2012, 1 vol. (VIII- 95 p.), SpringerBriefs in materials, 978-1-461-41307-3
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505 1 |a Preface Chapter 1. Introduction Chapter 2. Basic Principles: Thermodynamics and Colloidal Chemistry Chapter 3. Classical Crystallization model: Nucleation and Growth Chapter 4. Oriented Attachment and Mesocrystals Chapter 5. Oriented Attachment (OA) with solid-solid interface Chapter 6. Trends and Perspectives in Nanoparticles Synthesis 
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520 |a Since the size, shape, and microstructure of nanocrystalline materials strongly impact physical and chemical properties, the development of new synthetic routes to  nanocrystals with controlled composition and morphology is a key objective of the nanomaterials community. This objective is dependent on control of the nucleation and growth mechanisms that occur during the synthetic process, which in turn requires a fundamental understanding of both classical nucleation and growth and non-classical growth processes in nanostructured materials.  Recently, a novel growth process called Oriented Attachment (OA) was identified which appears to be a fundamental mechanism during the development of nanoscale  materials. OA is a special case of aggregation that provides an important route by which nanocrystals grow, defects are formed, and unique often symmetry-defying crystal morphologies can be produced. This growth mechanism involves reversible self-assembly of primary nanocrystals followed by reorientation of the assembled nanoparticles to achieve structural accord at the particle-particle interface, the removal of adsorbates and solvent molecules, and, finally, the irreversible formation of chemical bonds to produce new single crystals, twins, and intergrowths. Crystallization and Growth of Colloidal Nanocrystals provides a current understanding of the mechanisms related to nucleation and growth for use in controlling nanocrystal morphology and physical-chemical properties, and is essential reading for any chemist or materials scientist with an interest in using nanocrystals as building blocks for larger structures. This book provides a compendium for the expert reader as well as an excellent introduction for advanced undergraduate and graduate students seeking a gateway into this dynamic area of research. Describes basic principles of nucleation and growth in nanocrystal colloidal synthesis Presents non-classical crystallization and growth processes, including Oriented Attachment Provides a unified perspective on a key challenge in the development of nanostructured materials 
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650 |a Nanotechnologie 
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