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Smartphone Case-Based Gas Sensing Platform for On-site Acetone Tracking.

Cuili XueYuna ZhangBin LiuShan GaoHao YangPeng LiNguyen Duc HoaYuli XuZhenghu ZhangJiaqi NiuXinmei LiaoDa-Xiang CuiHan Jin
Published in: ACS sensors (2022)
Gas sensor-embedded smartphones would offer the opportunity of on-site tracking of gas molecules for various applications, for example, harmful air pollutant alarms or noninvasive assessment of health status. Nevertheless, high power consumption and difficulty in replacing malfunctioned sensors as well as limited space in the smartphone to host the sensor restrain the relevant advancements. In this article, we create a smartphone case-based sensing platform by integrating the functional units into a smartphone case, which performs a low detection limit of 117 ppb to acetone and high specificity. Particularly, dimming glass-regulated light fidelity (Li-Fi) communication is successfully developed, allowing the sensing platform to operate with relatively low power consumption (around 217 mW). Experimental proof on harmful gas sensing and potential clinic application is implemented with the sensing platform, demonstrating satisfactory sensing performance and acceptable health risk pre-warning accuracy (87%). Thus, the developed smartphone case-based sensing platform would be a good candidate for realizing harmful gas alarms and noninvasive assessment of health status.
Keyphrases
  • high throughput
  • room temperature
  • health risk
  • primary care
  • carbon dioxide
  • heavy metals
  • risk assessment
  • drinking water
  • human health
  • loop mediated isothermal amplification
  • ionic liquid