Khalili Sina, Majidi Mohsen, Bahrami Morteza, Roshanaei Majid, Madrakian Tayyebeh, Afkhami Abbas
Research Center for Health Management in Mass Gathering, Red Crescent Society of the Islamic Republic of Iran, Tehran, Iran.
Faculty of Chemistry and Petroleum Sciences, Bu-Ali Sina University, Hamedan, 6517838695, Iran.
Sci Rep. 2024 Jun 12;14(1):13594. doi: 10.1038/s41598-024-64534-2.
This research presents a compact portable electronic gas sensor that can be monitored through a smartphone application. The smart sensor utilizes three state-of-the-art sensors. The sensors integrate an ESP8266 microcontroller within the same device. This facilitates their integration with the electronics and enhances their performance. Herein, primarily focuses on utilizing the sensor to detect carbon monoxide. This article outlines the fabrication process of a gas sensor utilizing a P-N heterojunction, eliminating the need for a binder. The sensor consists of CuO/copper foam nanowires and hierarchical InO. In order to verify the system's functionality, it underwent testing with various levels of CO concentrations (10-900 ppm), including particular tests designed to examine the device's performance in different humidity and temperature circumstances. A mobile application for the provision of monitoring services has been developed at last. To process the information obtained from the gas sensor, an algorithm has been constructed, trained, and integrated into a smartphone for this purpose. This research demonstrated that a smartphone-coupled gas sensor is a viable system for real-time monitoring and the detection of CO gas.
本研究展示了一种紧凑的便携式电子气体传感器,可通过智能手机应用程序进行监测。该智能传感器采用了三种先进的传感器。这些传感器在同一设备内集成了一个ESP8266微控制器。这便于它们与电子设备集成并提高其性能。在此,主要致力于利用该传感器检测一氧化碳。本文概述了一种利用P-N异质结制造气体传感器的过程,无需使用粘合剂。该传感器由CuO/泡沫铜纳米线和分级InO组成。为了验证系统的功能,它在各种CO浓度水平(10 - 900 ppm)下进行了测试,包括旨在检查该设备在不同湿度和温度环境下性能的特定测试。最后开发了一个用于提供监测服务的移动应用程序。为了处理从气体传感器获得的信息,构建、训练了一种算法,并为此将其集成到智能手机中。这项研究表明,与智能手机结合的气体传感器是用于实时监测和检测CO气体的可行系统。