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2018 | OriginalPaper | Chapter

Amorphous Silicon Temperature Sensors Integrated with Thin Film Heaters for Thermal Treatments of Biomolecules

Authors : Nicola Lovecchio, Domenico Caputo, Giulia Petrucci, Augusto Nascetti, Marco Nardecchia, Francesca Costantini, Giampiero de Cesare

Published in: Sensors

Publisher: Springer International Publishing

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Abstract

This work combines a lab-on-chip device with an electronic system for the achievement of a small-scale and low-cost thermal treatment of biomolecules. The lab-on-chip is a 1.2 mm-thick glass substrate hosting thin film resistor acting as heater and, on the other glass side, amorphous silicon diodes acting as temperature sensors. The electronic system controls the lab-on-chip temperature through a Proportional-Integral-Derivative algorithm. In particular, an electronic board infers the temperature measuring the voltage across the amorphous silicon diodes, which are biased with a constant forward current of 50 nA, and drives the heater to achieve the set-point temperature. The characterization of the whole system has been carried out implementing the thermal cycles necessary in the polymerase chain reaction technique for amplification of DNA. To this purpose, the lab-on-chip has been thermally coupled with another glass hosting a microfluidic network made in polydimethilsiloxane, and the time evolution of temperature has been carefully monitored. The measured performances in terms of heating rate, cooling rate and settling time demonstrate that the proposed system completely fulfills the requirements of the investigated biological application.

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Literature
1.
go back to reference C.H. Ahn, J.W. Choi, G. Beaucage, J.H. Nevin, J.B. Lee, A. Puntambekar, J.Y. Lee, Disposable smart lab on a chip for point-of-care clinical diagnostics. Proc. IEEE 92(1), 154–173 (2004)CrossRef C.H. Ahn, J.W. Choi, G. Beaucage, J.H. Nevin, J.B. Lee, A. Puntambekar, J.Y. Lee, Disposable smart lab on a chip for point-of-care clinical diagnostics. Proc. IEEE 92(1), 154–173 (2004)CrossRef
2.
go back to reference S.C. Jakeway, A.J. de Mello, E.L. Russell, Miniaturized total analysis systems for biological analysis. Fresenius’ journal of analytical chemistry 366(6–7), 525–539 (2000)CrossRef S.C. Jakeway, A.J. de Mello, E.L. Russell, Miniaturized total analysis systems for biological analysis. Fresenius’ journal of analytical chemistry 366(6–7), 525–539 (2000)CrossRef
3.
go back to reference D. Caputo, M. Ceccarelli, G. de Cesare, A. Nascetti, R. Scipinotti, Lab-on-glass system for DNA analysis using thin and thick film technologies, in Proceedings of Material Research Symposium, vol. 1191, 2009, OO06-01 D. Caputo, M. Ceccarelli, G. de Cesare, A. Nascetti, R. Scipinotti, Lab-on-glass system for DNA analysis using thin and thick film technologies, in Proceedings of Material Research Symposium, vol. 1191, 2009, OO06-01
4.
go back to reference D. Caputo, A. de Angelis, N. Lovecchio, A. Nascetti, R. Scipinotti, G. de Cesare, Amorphous silicon photosensors integrated in microfluidic structures as a technological demonstrator of a “true” lab-on-chip system. Sens. Bio-Sens. Res. 3, 98–104 (2015)CrossRef D. Caputo, A. de Angelis, N. Lovecchio, A. Nascetti, R. Scipinotti, G. de Cesare, Amorphous silicon photosensors integrated in microfluidic structures as a technological demonstrator of a “true” lab-on-chip system. Sens. Bio-Sens. Res. 3, 98–104 (2015)CrossRef
5.
go back to reference P. Abgrall, A.M. Gue, lab-on-chip technologies: making a microfluidic network and coupling it into a complete microsystem—a review. J. Micromech. Microeng. 17(5), R15 (2007)CrossRef P. Abgrall, A.M. Gue, lab-on-chip technologies: making a microfluidic network and coupling it into a complete microsystem—a review. J. Micromech. Microeng. 17(5), R15 (2007)CrossRef
6.
go back to reference J.W. Hong, S.R. Quake, Integrated nanoliter systems. Nat. Biotechnol. 21(10), 1179–1183 (2003)CrossRef J.W. Hong, S.R. Quake, Integrated nanoliter systems. Nat. Biotechnol. 21(10), 1179–1183 (2003)CrossRef
7.
go back to reference V. Miralles, A. Huerre, F. Malloggi, M.C. Jullien, A review of heating and temperature control in microfluidic systems: techniques and applications. Diagnostics 3(1), 33–67 (2013)CrossRef V. Miralles, A. Huerre, F. Malloggi, M.C. Jullien, A review of heating and temperature control in microfluidic systems: techniques and applications. Diagnostics 3(1), 33–67 (2013)CrossRef
8.
go back to reference A.I. Lao, T.M. Lee, I.M. Hsing, N.Y. Ip, Precise temperature control of microfluidic chamber for gas and liquid phase reactions. Sens. Actuators A 84(1), 11–17 (2000)CrossRef A.I. Lao, T.M. Lee, I.M. Hsing, N.Y. Ip, Precise temperature control of microfluidic chamber for gas and liquid phase reactions. Sens. Actuators A 84(1), 11–17 (2000)CrossRef
9.
go back to reference T.M. Hsieh, C.H. Luo, F.C. Huang, J.H. Wang, L.J. Chien, G.B. Lee, Enhancement of thermal uniformity for a microthermal cycler and its application for polymerase chain reaction. Sens. Actuators B Chem. 130(2), 848–856 (2008)CrossRef T.M. Hsieh, C.H. Luo, F.C. Huang, J.H. Wang, L.J. Chien, G.B. Lee, Enhancement of thermal uniformity for a microthermal cycler and its application for polymerase chain reaction. Sens. Actuators B Chem. 130(2), 848–856 (2008)CrossRef
10.
go back to reference K. Tsutsumi, A. Yamashita, H. Ohji, The experimental study of high TCR Pt thin films for thermal sensors, in Sensors, 2002. Proceedings of IEEE, vol. 2. IEEE, pp. 1002–1005 K. Tsutsumi, A. Yamashita, H. Ohji, The experimental study of high TCR Pt thin films for thermal sensors, in Sensors, 2002. Proceedings of IEEE, vol. 2. IEEE, pp. 1002–1005
11.
go back to reference D. Caputo, G. de Cesare, M. Nardini, A. Nascetti, R. Scipinotti, Monitoring of temperature distribution in a thin film heater by an array of a-Si: H temperature sensors. IEEE Sens. J. 12(5), 1209–1213 (2012)CrossRef D. Caputo, G. de Cesare, M. Nardini, A. Nascetti, R. Scipinotti, Monitoring of temperature distribution in a thin film heater by an array of a-Si: H temperature sensors. IEEE Sens. J. 12(5), 1209–1213 (2012)CrossRef
12.
go back to reference G. de Cesare, A. Nascetti, D. Caputo, Amorphous silicon pin structure acting as light and temperature sensor. Sensors 15(6), 12260–12272 (2015)CrossRef G. de Cesare, A. Nascetti, D. Caputo, Amorphous silicon pin structure acting as light and temperature sensor. Sensors 15(6), 12260–12272 (2015)CrossRef
13.
go back to reference G. Petrucci, D. Caputo, A. Nascetti, N. Lovecchio, E. Parisi, S. Alameddine, A. Zahra, G. de Cesare, Thermal characterization of thin film heater for lab-on-chip application, in Proceedings of the 18th AISEM Annual Conference, AISEM 2015. Art. no. 7066835 G. Petrucci, D. Caputo, A. Nascetti, N. Lovecchio, E. Parisi, S. Alameddine, A. Zahra, G. de Cesare, Thermal characterization of thin film heater for lab-on-chip application, in Proceedings of the 18th AISEM Annual Conference, AISEM 2015. Art. no. 7066835
14.
go back to reference N. Lovecchio, G. Petrucci, D. Caputo, S. Alameddine, M. Carpentiero, L. Martini, E. Parisi, G. de Cesare, A. Nascetti, Thermal control system based on thin film heaters and amorphous silicon diodes, in 6th IEEE International Workshop on Advances in Sensors and Interfaces, IWASI 2015. Art. no. 7184977, pp. 277–282 N. Lovecchio, G. Petrucci, D. Caputo, S. Alameddine, M. Carpentiero, L. Martini, E. Parisi, G. de Cesare, A. Nascetti, Thermal control system based on thin film heaters and amorphous silicon diodes, in 6th IEEE International Workshop on Advances in Sensors and Interfaces, IWASI 2015. Art. no. 7184977, pp. 277–282
Metadata
Title
Amorphous Silicon Temperature Sensors Integrated with Thin Film Heaters for Thermal Treatments of Biomolecules
Authors
Nicola Lovecchio
Domenico Caputo
Giulia Petrucci
Augusto Nascetti
Marco Nardecchia
Francesca Costantini
Giampiero de Cesare
Copyright Year
2018
DOI
https://doi.org/10.1007/978-3-319-55077-0_25