Issue 20, 2011

Temperature imaging of water in a microchannel using thermal sensitivity of near-infrared absorption

Abstract

This paper presents a remote and preparation-free method of temperature imaging of aqueous solutions in microchannels of microfluidic chips. The principle of this method is based on the temperature dependency of the near-infrared (NIR) absorption band (ν2 + ν3 band) of water. Temperature images were constructed from absorbances in a narrow wavelength range including 1908 nm, the most sensitive to temperature in the band, measured by using an NIR camera and an optical narrow-bandpass filter. Calculation and calibration results demonstrated a linear relationship between the absorption coefficient and temperature with a temperature coefficient of 1.5 × 10−2 K−1 mm−1. Temperature images of 50 μm thick water in a Y-shaped PDMS microchannel locally heated by a neighboring hot wire were obtained, in which thermal diffusion processes in the microchip were visualized. Temperature resolution was estimated to be approximately 0.2 K according to the temperature coefficient and noise level.

Graphical abstract: Temperature imaging of water in a microchannel using thermal sensitivity of near-infrared absorption

Supplementary files

Article information

Article type
Paper
Submitted
28 Mar 2011
Accepted
19 Jul 2011
First published
25 Aug 2011

Lab Chip, 2011,11, 3479-3486

Temperature imaging of water in a microchannel using thermal sensitivity of near-infrared absorption

N. Kakuta, Y. Fukuhara, K. Kondo, H. Arimoto and Y. Yamada, Lab Chip, 2011, 11, 3479 DOI: 10.1039/C1LC20261H

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