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Optical Sensing and Imaging of Trace Oxygen with Record Response
Ultratrace quantities of oxygen can be determined at single spots as well as spatially resolved, and over a temperature range of more than 100 K, by exploiting the extremely efficient quenching of the delayed fluorescence of the fullerene C70 incorporated into matrices of organosilica or ethyl cellu...
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Published in: | Angewandte Chemie International Edition 2007-01, Vol.46 (13), p.2317-2319 |
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container_issue | 13 |
container_start_page | 2317 |
container_title | Angewandte Chemie International Edition |
container_volume | 46 |
creator | Nagl, Stefan Baleizão, Carlos Borisov, Sergey M. Schäferling, Michael Berberan-Santos, Mário N. Wolfbeis, Otto S. |
description | Ultratrace quantities of oxygen can be determined at single spots as well as spatially resolved, and over a temperature range of more than 100 K, by exploiting the extremely efficient quenching of the delayed fluorescence of the fullerene C70 incorporated into matrices of organosilica or ethyl cellulose. |
doi_str_mv | 10.1002/anie.200603754 |
format | article |
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language | eng |
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source | Wiley-Blackwell Read & Publish Collection |
subjects | fullerenes imaging oxygen sensors polymers time-resolved fluorescence |
title | Optical Sensing and Imaging of Trace Oxygen with Record Response |
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