Triboelectric Nanogenerator with Dynamic Electrode for Geological Disaster and Fall‐Down Self‐Powered Alarm System

Author:

Zhou Qitao12,Deng Shujun1,Gao Along1,Wang Boyou1,Lai Jianxin1,Pan Jing1,Huang Lei34,Pan Caofeng2ORCID,Meng Guowen5,Xia Fan1

Affiliation:

1. State Key Laboratory of Biogeology and Environmental Geology Engineering Research Center of Nano‐Geomaterials of the Ministry of Education Faculty of Materials Science and Chemistry China University of Geosciences Wuhan 430074 China

2. Beijing Institute of Nanoenergy and Nanosystems Chinese Academy of Sciences yangyan east rd 8 Beijing 101400 China

3. Engineering Research Center of Rock‐Soil Drilling & Excavation and Protection Ministry of Education China University of Geosciences Wuhan 430074 China

4. Badong National Observation and Research Station of Geohazards China University of, Geosciences Wuhan 430074 China

5. Key Laboratory of Materials Physics and Anhui Key Laboratory of Nanomaterials and Nanotechnology Institute of Solid State Physics HFIPS Chinese Academy of Sciences Hefei 230031 China

Abstract

AbstractAmong numerous sensors and alarm systems for the Internet of Things (IoTs), an alarm system for geological disasters or falls directly relates to the safety of people's lives and property. However, the energy supply and complex signal processing limit their wide application and reliability. As an emerging new energy technology, triboelectric nanogenerators (TENGs) can be used as a sensor power supply or even an active self‐powered sensor. Unfortunately, for the existing alarm systems based on TENGs, the signal intensity change caused by the occurrence of danger is still limited, making the method of simply judging whether the signal strength exceeds the threshold to alarm not so reliable. Herein, a dynamic electrode for switching high and low output voltage is demonstrated. By introducing short‐circuit and air breakdown effects through the novel dynamic electrode, the output voltage of this kind of device in the trigger state is nearly three orders of magnitude higher than that in the normal state. Based on the dynamic electrodes, a series of portable and wearable alarm systems are developed and applied to the fall‐down alarm system and rockfall alarm system. Therefore, this work offers a new strategy to improve the reliability of alarm systems for geological disasters or falls and exhibit immense potential in the field of protecting people's lives and property.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Electrochemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

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