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Flexible Copper-Based Thermistors Fabricated by Laser Direct Writing for Low-Temperature Sensing.

Zilong PengWei GuoTong LiuXuewei WangDaozhi ShenYing ZhuXingwen ZhouJianfeng YanHongqiang Zhang
Published in: ACS applied materials & interfaces (2024)
With the flexibilization tendency of traditional electronics, developing sensing devices for the low-temperature field is demanding. Here, we fabricated a flexible copper-based thermistor by a laser direct writing process with Cu ion precursors. The copper-based thermistor performs with excellent temperature sensing ability and high stability under different environments. We discussed the effect of laser power on the temperature sensitivity of the copper-based thermistor, explained the sensing mechanism of the as-written copper-based films, and fabricated a temperature sensor array for realizing temperature management in a specific zone. All of the investigations have demonstrated that such copper-based thermistors can be used as candidate devices for low-temperature sensing fields.
Keyphrases
  • oxide nanoparticles
  • high speed
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