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

Englisch · Taschenbuch

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Beschreibung

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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.

Inhaltsverzeichnis

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

Zusammenfassung

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.

Produktdetails

Autoren Jonas Hannestad
Verlag Springer, Berlin
 
Sprache Englisch
Produktform Taschenbuch
Erschienen 01.01.2015
 
EAN 9783319033587
ISBN 978-3-31-903358-7
Seiten 119
Abmessung 155 mm x 238 mm x 8 mm
Gewicht 213 g
Illustration XII, 119 p.
Serien Springer Theses
Springer Theses
Themen Naturwissenschaften, Medizin, Informatik, Technik > Chemie > Physikalische Chemie

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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