Thin-film polymer light emitting diodes as integrated excitation sources for microscale capillary electrophoresis

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Abstract

We report the use of a thin-film polymer light emitting diode as an integrated excitation source for microfabricated capillary electrophoresis. The polyfluorene-based diode has a peak emission wavelength of 488 nm, an active area of 40 μm × 1000 μm and a thickness of ∼2 mm. The simple layer-by-layer deposition procedures used to fabricate the polymer component allow facile integration with planar chip-based systems. To demonstrate the efficacy of the approach, the polyfluorene diode is used as an excitation source for the detection of fluorescent dyes separated on-chip by electrophoresis. Using a conventional confocal detection system the integrated pLED is successfully used to detect fluorescein and 5-carboxyfluorescein at concentrations as low as 10-6 M with a mass detection limit of 50 femtomoles. The drive voltages required to generate sufficient emission from the polymer diode device are as low as 3.7 V.

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Edel, J. B., Beard, N. P., Hofmann, O., DeMello, J. C., Bradley, D. D. C., & DeMello, A. J. (2004). Thin-film polymer light emitting diodes as integrated excitation sources for microscale capillary electrophoresis. Lab on a Chip, 4(2), 136–140. https://doi.org/10.1039/b313503a

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