Fr. 135.00

Fluorescence in Bio-inspired Nanotechnology - First as Probe, Then as Function

Inglese · Copertina rigida

Spedizione di solito entro 6 a 7 settimane

Descrizione

Ulteriori informazioni

In his thesis Fluorescence in Bio-inspired Nanotechnology, Jonas Hannestad describes the evolving field of DNA nanotechnology in a lucid and easily accessible way. A central theme in the thesis is how biological structures and mechanisms constitute a basis for the design of novel technologies. Hannestad discusses how self-assembled, nanometer-scale DNA constructs can be functionalized using fluorescent labeling. In particular, he highlights how applications are based on fluorescence resonance energy transfer (FRET). Another important contribution is the development of a lipid monolayer platform for the step-by-step assembly of DNA nanoconstructs. The work in the thesis is based on five peer-reviewed papers published in high-profile journals, all of which involve major contributions from the author.

Sommario

Introduction.- Being Bioinspired.- DNA: molecular recognition and information storage.- Photophysics.- Nanoscale photonic devices.- Lipids: soft, dynamic containers.- Methodology.- Summary of five papers.- Concluding remarks.

Riassunto

In his thesis Fluorescence in Bio-inspired Nanotechnology, Jonas Hannestad describes the evolving field of DNA nanotechnology in a lucid and easily accessible way. A central theme in the thesis is how biological structures and mechanisms constitute a basis for the design of novel technologies. Hannestad discusses how self-assembled, nanometer-scale DNA constructs can be functionalized using fluorescent labeling. In particular, he highlights how applications are based on fluorescence resonance energy transfer (FRET). Another important contribution is the development of a lipid monolayer platform for the step-by-step assembly of DNA nanoconstructs. The work in the thesis is based on five peer-reviewed papers published in high-profile journals, all of which involve major contributions from the author.

Dettagli sul prodotto

Autori Jonas Hannestad
Editore Springer, Berlin
 
Lingue Inglese
Formato Copertina rigida
Pubblicazione 01.11.2013
 
EAN 9783319010670
ISBN 978-3-31-901067-0
Pagine 119
Dimensioni 162 mm x 14 mm x 239 mm
Peso 315 g
Illustrazioni XII, 119 p.
Serie Springer Theses
Springer Theses
Categorie Scienze naturali, medicina, informatica, tecnica > Chimica > Chimica fisica

Physikalische Chemie, B, Nanowissenschaften, Chemistry and Materials Science, Nanotechnology, Nanochemistry, Physical Chemistry, Nanosciences, self-assembly, Single-molecule Fluorescence Spectroscopy, Resonance Energy Transfer (FRET)

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