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Self-Assembled Organic-Inorganic Nanostructures : Optics and Dynamics

By: Christian von Borczyskowski (Edited by) , Eduard Zenkevich (Edited by)

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Ksh 30,400.00

Format: Hardback or Cased Book

ISBN-10: 981474543X

ISBN-13: 9789814745437

Publisher: Pan Stanford Publishing Pte Ltd

Imprint: Pan Stanford Publishing Pte Ltd

Country of Manufacture: US

Country of Publication: GB

Publication Date: Oct 21st, 2016

Publication Status: Active

Product extent: 412 Pages

Weight: 762.00 grams

Product Classification / Subject(s): Physical chemistry
Nanotechnology
Materials science

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This book provides a comprehensive description of the morphology and main physico-chemical properties of self-assembled inorganic-dye nanostructures as well as some applications in the field of nanotechnology. It crosses disciplines to examine essential nanoassembly principles of QD interaction with organic molecules, excited state dynamics in nanoobjects, theoretical models, and methodologies.

The current state and perspectives in natural and life sciences are strongly linked to the development of novel complex organic-inorganic materials at various levels of organization, including semiconductor quantum dots (QDs) and QD-based nanostructures with unique optical and physico-chemical properties.
This book provides a comprehensive description of the morphology and main physico-chemical properties of self-assembled inorganic-dye nanostructures as well as some applications in the field of nanotechnology. It crosses disciplines to examine essential nanoassembly principles of QD interaction with organic molecules, excited state dynamics in nanoobjects, theoretical models, and methodologies. Based on ensemble and single-nanoobject detection, the book quantitatively shows (for the first time on a series of nanoassemblies) that surface-mediated processes (formation of trap states) dictate the probability of several of the most interesting and potentially useful photophysical phenomena (FRET- or non-FRET-induced quenching of QD photoluminescence) observed for colloidal QDs and QD–dye nanoassemblies. Further, nanostructures can be generated by nanolithography and thereafter selectively decorated with dye molecules. A similar approach applies to natural nanosized surface heterogeneities.


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