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Wireless Real-Time Temperature Monitoring of Blood Packages: Silver Nanowire-Embedded Flexible Temperature Sensors

  • Doo Young Youn
  • , Uihyun Jung
  • , Muhammad Naqi
  • , Seon Jin Choi
  • , Min Goo Lee
  • , Sungho Lee
  • , Hi Joon Park
  • , Il Doo Kim
  • , Sunkook Kim

Research output: Contribution to journalArticlepeer-review

86 Citations (Scopus)

Abstract

Real-time temperature monitoring of individual blood packages capable of wireless data transmission to ensure the safety of blood samples and minimize wastes has become a critical issue in recent years. In this work, we propose flexible temperature sensors using silver nanowires (NWs) and a flexible colorless polyimide (CPI) film integrated with a wireless data transmission circuit. The unique design of the temperature sensors was achieved by patterning Ag NWs using a three-dimensional printed mold and embedding the patterned Ag NWs in the CPI film (p-Ag NWs/CPI), which resulted in a flexible temperature sensor with electrical, mechanical, and temperature stability for applications in blood temperature monitoring. Indeed, a reliable resistance change of the p-Ag NWs/CPI was observed in the temperature range of -20 to 20 °C with a robust bending stability of up to 5000 cycles at 5 mm bending radius. Real-time and wireless temperature monitoring using the p-Ag NWs/CPI was demonstrated with the packages of rat blood. The result revealed that the stable and consistent temperature monitoring of individual blood packages could be achieved in a blood box, which was mainly attributed to the conformal attachment of the p-Ag NWs/CPI to different packages in a blood container.

Original languageEnglish
Pages (from-to)44678-44685
Number of pages8
JournalACS applied materials & interfaces
Volume10
Issue number51
DOIs
Publication statusPublished - 26 Dec 2018

Bibliographical note

Publisher Copyright:
© 2018 American Chemical Society.

Keywords

  • 3D printer
  • blood temperature
  • flexible sensor
  • silver nanowire
  • temperature sensor

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