Wireless Self-Powered High-Performance Integrated Nanostructured-Gas-Sensor Network for Future Smart Homes

无线传感器网络 无线 泄漏(经济) 嵌入式系统 材料科学 计算机科学 计算机网络 电信 经济 宏观经济学
作者
Zhilong Song,Wenhao Ye,Zhuo Chen,Zhesi Chen,Mutian Li,Wenying Tang,Chen Wang,Zhu’an Wan,Swapnadeep Poddar,Xiaolin Wen,Xiaofang Pan,Yuanjing Lin,Qingfeng Zhou,Zhiyong Fan
出处
期刊:ACS Nano [American Chemical Society]
卷期号:15 (4): 7659-7667 被引量:175
标识
DOI:10.1021/acsnano.1c01256
摘要

The accelerated evolution of communication platforms including Internet of Things (IoT) and the fifth generation (5G) wireless communication network makes it possible to build intelligent gas sensor networks for real-time monitoring chemical safety and personal health. However, this application scenario requires a challenging combination of characteristics of gas sensors including small formfactor, low cost, ultralow power consumption, superior sensitivity, and high intelligence. Herein, self-powered integrated nanostructured-gas-sensor (SINGOR) systems and a wirelessly connected SINGOR network are demonstrated here. The room-temperature operated SINGOR system can be self-driven by indoor light with a Si solar cell, and it features ultrahigh sensitivity to H2, formaldehyde, toluene, and acetone with the record low limits of detection (LOD) of 10, 2, 1, and 1 ppb, respectively. Each SINGOR consisting of an array of nanostructured sensors has the capability of gas pattern recognition and classification. Furthermore, multiple SINGOR systems are wirelessly connected as a sensor network, which has successfully demonstrated flammable gas leakage detection and alarm function. They can also achieve gas leakage localization with satisfactory precision when deployed in one single room. These successes promote the development of using nanostructured-gas-sensor network for wide range applications including smart home/building and future smart city.
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