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Books > Science & Mathematics > Physics > States of matter > Condensed matter physics (liquids & solids)

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Orthogonal Supramolecular Interaction Motifs for Functional Monolayer Architectures (Hardcover, 2012 ed.) Loot Price: R3,001
Discovery Miles 30 010
Orthogonal Supramolecular Interaction Motifs for Functional Monolayer Architectures (Hardcover, 2012 ed.): Mahmut Deniz Yilmaz

Orthogonal Supramolecular Interaction Motifs for Functional Monolayer Architectures (Hardcover, 2012 ed.)

Mahmut Deniz Yilmaz

Series: Springer Theses

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Loot Price R3,001 Discovery Miles 30 010 | Repayment Terms: R281 pm x 12*

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Deniz Yilmaz' thesis describes a combination of orthogonal supramolecular interactions for the design of functional monolayer architectures on surfaces, that can be used as chemical and biosensors in a wide range of applications. The term "orthogonal supramolecular interactions" refers to non-covalent interactions that do not influence each other's assembly properties. Orthogonal self-assembly thus allows extended control over the self-assembly process and promotes new materials properties. The first part of the thesis employs orthogonal host-guest and lanthanide-ligand coordination interaction motifs to create supramolecular luminescent monolayers. The second part of the thesis describes the fabrication of functional monolayers on silicon and gold substrates for applications in electronics. The results illustrate the power of weak supramolecular interactions to direct the immobilization of functional systems on surfaces. The combination of host-guest and lanthanide-ligand coordination interaction motifs on surfaces demonstrates that hybrid, multifunctional supramolecular monolayers can be fabricated by integrating different non-covalent interactions in the same system. This combination opens up new avenues for the fabrication of complex hybrid organic-inorganic materials and stimuli-responsive surfaces. Their utility is demonstrated through applications of the functional interfaces to biosensing and nanotechnology.

General

Imprint: Springer-Verlag
Country of origin: Germany
Series: Springer Theses
Release date: June 2012
First published: 2012
Authors: Mahmut Deniz Yilmaz
Dimensions: 235 x 155 x 13mm (L x W x T)
Format: Hardcover
Pages: 101
Edition: 2012 ed.
ISBN-13: 978-3-642-30256-5
Categories: Books > Professional & Technical > Technology: general issues > Nanotechnology
Books > Science & Mathematics > Physics > States of matter > Condensed matter physics (liquids & solids)
Books > Professional & Technical > Mechanical engineering & materials > Materials science > General
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LSN: 3-642-30256-4
Barcode: 9783642302565

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