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PMID: 15117263 Published · ppublish English Journal Article Review

Single-molecule optics.

Annual review of physical chemistry ·Vol. 55 ·2004-00-00 ·Pages 585-611

Kulzer F, Orrit M

Abstract

We review recent developments in single-molecule spectroscopy and microscopy. New optical methods provide access to the absorption, emission, or excitation spectra of single nano-objects and can determine either the positions of these objects with subwavelength accuracy or the full three-dimensional orientation of their transition dipole moments. Recent work aims at using single molecules as nanoparts or nanoelements in a variety of molecular-scale devices, from triggered sources of single photons to single-molecular switches. A prominent new direction explores the various interactions between molecules within individual multichromophoric systems obtained by chemical synthesis. These systems are the models for natural self-assembled systems such as the light-harvesting proteins of bacteria and green plants, which are currently studied on a single-molecule basis. Another important class of multichromophoric systems are conjugated polymers. The combination of microscopy with time- and frequency-resolved spectroscopy is opening a wide field of new and exciting applications to individual nano-objects.

MeSH Terms
Crystallography, X-Ray Fluorescence Fluorescence Resonance Energy Transfer Microscopy/methods Nanotechnology Optics and Photonics Photochemistry/methods Photosynthetic Reaction Center Complex Proteins/chemistry Polymers/chemistry Rhodopseudomonas/chemistry Spectrum Analysis/methods
Chemicals
Photosynthetic Reaction Center Complex Proteins Polymers
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Kulzer Florian
Molecular Nano-Optics and Spins (MoNOS), Huygens Laboratory, University of Leiden, 2333 CA Leiden, The Netherlands.
Orrit Michel
Article Info
Journal
Annual review of physical chemistry
Abbr.
Annu Rev Phys Chem
ISSN
0066-426X
Published
2004-00-00
Pages
585-611
Language
English
Region
United States
NLM ID
15040080R
Subset
IM
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