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  4. (Invited) Point-of-Care Diagnostics with Inkjet-Printed Microchips
 
conference paper

(Invited) Point-of-Care Diagnostics with Inkjet-Printed Microchips

Lesch, Andreas  
•
Jovic, Milica  
•
Baudoz, Marie Camille Isabelle  
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2017
ECS Transactions

Multi-layer inkjet printing is applied to prepare microchips that consist of up to eight three-electrode sensors comprising a carbon nanotube (CNT) working electrode, a silver/silver chloride quasireference electrode and a CNT counter electrode. Optionally, the sensors contain micro-wells to measure sample volumes as small as 50 μL. The implementation of inkjet printing allows the flexible design and highly reproducible fabrication of batches of various electrode shapes and dimensions. The usage of CNTs as standalone working electrodes results in electroanalytical sensors with reliable and superior electrochemical response compared to tested commercial carbon paste electrodes. The sensors can be used at least up to 20 times, e.g., based on an immunoassay based strategy, or in a disposable way, e.g., when measuring in complex matrices such as blood. A gold ink is applied as alternative working electrode material. The printed sensors can be used with compact multichannel potentiostats that are suitable for point-of-care diagnostics.

  • Details
  • Metrics
Type
conference paper
DOI
10.1149/07707.0073ecst
Author(s)
Lesch, Andreas  
Jovic, Milica  
Baudoz, Marie Camille Isabelle  
Zhu, Yingdi  
Tacchini, Philippe
Gumy, Frédéric  
Girault, Hubert  
Date Issued

2017

Publisher

Electrochemical Society

Published in
ECS Transactions
Volume

77

Issue

7

Start page

73

End page

81

Subjects

Inkjet Printing

•

Carbon Nanotubes

•

Gold

•

Electroanalysis

•

Antioxidants

•

Blood

Editorial or Peer reviewed

NON-REVIEWED

Written at

EPFL

EPFL units
LEPA  
Available on Infoscience
May 21, 2017
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/137469
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