Attogram Detection Limit for Aqueous Dye Samples by Laser-Induced Fluorescence
Norman J. Dovic̀hi, John C. Martin, James H. Jett, Richard A. Keller
Abstract
Norman J. Dovic̀hi, John C. Martin, James H. Jett, Richard A. Keller
Abstract
A modified flow cytometer has been used to detect attogram quantities of aqueous rhodamine 6G by laser-induced fluorescence analysis. A detection limit of 28 attograms (35,000 molecules) was obtained, nearly two orders of magnitude better than earlier measurements. The detection limit in concentration units was 1.4 x 10(-13) mole per liter. During the 1-second measurement period, the total volume sampled was 0.42 microliter. On average, only half a rhodamine 6G molecule was present in the 6-picoliter probed volume.
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A modified flow cytometer has been used to detect attogram quantities of aqueous rhodamine 6G by laser-induced fluorescence analysis. A detection limit of 28 attograms (35,000 molecules) was obtained, nearly two orders of magnitude better than earlier measurements. The detection limit in concentration units was 1.4 x 10(-13) mole per liter. During the 1-second measurement period, the total volume sampled was 0.42 microliter. On average, only half a rhodamine 6G molecule was present in the 6-picoliter probed volume.
Key concepts: Rhodamine 6G, Detection limit, Aqueous solution, Fluorescence, Analytical Chemistry (journal), Chemistry, Volume (thermodynamics), Laser-induced fluorescence