Luminescence thermometry for: In situ temperature measurements in microfluidic devices

Publication date

2019-02-25

Authors

Geitenbeek, R.G.ISNI 0000000493258640
Vollenbroek, J. C.
Weijgertze, Hannah M.H.
Tregouet, Corentin B.M.
Nieuwelink, A. E.ISNI 0000000493299303
Kennedy, Chris L.ISNI 0000000506013969
Weckhuysen, B.M.ORCID 0000-0001-5245-1426ISNI 0000000110540180
Lohse, Detlef
van Blaaderen, AlfonsISNI 0000000388251965
Van Den Berg, Albert

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Article
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cc_by_nc

Abstract

Temperature control for lab-on-a-chip devices has resulted in the broad applicability of microfluidics to, e.g., polymerase chain reaction (PCR), temperature gradient focusing for electrophoresis, and colloidal particle synthesis. However, currently temperature sensors on microfluidic chips either probe temperatures outside the channel (resistance temperature detector, RTD) or are limited in both the temperature range and sensitivity in the case of organic dyes. In this work, we introduce ratiometric bandshape luminescence thermometry in which thermally coupled levels of Er 3+ in NaYF 4 nanoparticles are used as a promising method for in situ temperature mapping in microfluidic systems. The results, obtained with three types of microfluidic devices, demonstrate that temperature can be monitored inside a microfluidic channel accurately (0.34 °C) up to at least 120 °C with a spot size of ca. 1 mm using simple fiber optics. Higher spatial resolution can be realized by combining luminescence thermometry with confocal microscopy, resulting in a spot size of ca. 9 μm. Further improvement is anticipated to enhance the spatial resolution and allow for 3D temperature profiling.

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Citation

Geitenbeek, R G, Vollenbroek, J C, Weijgertze, H M H, Tregouet, C B M, Nieuwelink, A E, Kennedy, C L, Weckhuysen, B M, Lohse, D, Van Blaaderen, A, Van Den Berg, A, Odijk, M & Meijerink, A 2019, 'Luminescence thermometry for: In situ temperature measurements in microfluidic devices', Lab on a Chip, vol. 19, no. 7, pp. 1236-1246. https://doi.org/10.1039/c8lc01292j