Geddes / Lakowicz | Radiative Decay Engineering | E-Book | www.sack.de
E-Book

E-Book, Englisch, Band 8, 458 Seiten

Reihe: Topics in Fluorescence Spectroscopy

Geddes / Lakowicz Radiative Decay Engineering


1. Auflage 2007
ISBN: 978-0-387-27617-5
Verlag: Springer US
Format: PDF
Kopierschutz: 1 - PDF Watermark

E-Book, Englisch, Band 8, 458 Seiten

Reihe: Topics in Fluorescence Spectroscopy

ISBN: 978-0-387-27617-5
Verlag: Springer US
Format: PDF
Kopierschutz: 1 - PDF Watermark



During recent years our enthusiasm for this field has continually increased. This book presents expert contributions describing the fundamental principles for the widespread use of radiative decay engineering in the biological sciences and nanotechnology.

Chris D. Geddes Ph.D., is an assistant professor, and Director of the Institute of Fluorescence, at the University of Maryland Biotechnology Institute, Medical Biotechnology Center, in Baltimore. He has a B.Sc. from Lancaster University in England and a Ph.D. in physical chemistry (fluorescence spectroscopy) from the University of Wales Swansea. He is the editor of the Journal of Fluorescence, Who's Who in Fluorescence, and Annual Reviews in Fluorescence. He is also executive director of the Society of Fluorescence. Dr Geddes has published numerous papers, review articles and book chapters etc, on the Principles and Applications of Fluorescence. Dr. Joseph R. Lakowicz is Professor of Biochemistry at the University of Maryland School of Medicine and Director of the Center for Fluorescence Spectroscopy. Dr. Lakowicz has published over 400 scientific articles, has edited numerous books, holds 16 issued patents, and is the sole author of the widely used text, Principles of Fluorescence Spectroscopy, also published by Kluwer Academic/Plenum Publishers, now in its 2nd Edition.

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Weitere Infos & Material


1;Contributors;6
2;Preface;9
3;Contents;11
4;PREPARATION OF NOBLE METAL COLLOIDS AND SELECTED STRUCTURES;19
5;NEAR- FIELD SCANNING OPTICAL MICROSCOPY: ALTERNATIVE MODES OF USE FOR NSOM PROBES;43
6;NANOPARTICLES WITH TUNABLE LOCALIZED SURFACE PLASMON RESONANCES;65
7;COLLOID SURFACE CHEMISTRY;118
8;BIOANALYTICAL SENSING USING NOBLE METAL COLLOIDS;151
9;THEORY OF FLUOROPHORE- METALLIC SURFACE INTERACTIONS;214
10;SURFACE- ENHANCEMENT OF FLUORESCENCE NEAR NOBLE METAL NANOSTRUCTURES;239
11;TIME RESOLVED FLUORESCENCE MEASUREMENTS OF FLUOROPHORES CLOSE TO METAL NANOPARTICLES;264
12;COPPER- COATED SELF-ASSEMBLED MONOLAYERS: ALKANETHIOLS AND PROSPECTIVE MOLECULAR WIRES;289
13;PRINCIPLES AND APPLICATIONS OF SURFACE PLASMONFIELD-ENHANCED FLUORESCENCE TECHNIQUES;318
14;OPTICALLY DETECTABLE COLLOIDAL METAL LABELS: PROPERTIES, METHODS, AND BIOMEDICAL APPLICATIONS;346
15;NOBLE METAL NANOPARTICLE BIOSENSORS;365
16;SURFACE PLASMON- COUPLED EMISSION: A NEW METHOD FOR SENSITIVE FLUORESCENCE DETECTION;393
17;RADIATIVE DECAY ENGINEERING ( RDE);416
18;INDEX;468



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