Self-Powered Multifunctional Monitoring and Analysis System Based on Dual-Triboelectric Nanogenerator and Chitosan/Activated Carbon Film Humidity Sensor

Nano Energy ◽  
2021 ◽  
pp. 106881
Author(s):  
Zhenyuan Xu ◽  
Dongzhi Zhang ◽  
Xiaohua Liu ◽  
Yan Yang ◽  
Xingwei Wang ◽  
...  
Author(s):  
Yuanjie Su ◽  
Guangzhong Xie ◽  
Si Wang ◽  
Huiling Tai ◽  
Qiuping Zhang ◽  
...  

Nanomaterials ◽  
2021 ◽  
Vol 11 (10) ◽  
pp. 2657
Author(s):  
Zhuyu Ding ◽  
Ming Zou ◽  
Peng Yao ◽  
Zhiyuan Zhu ◽  
Li Fan

Recently, the research of distributed sensor networks based on triboelectric technology has attracted extensive attention. Here, we reported a new triboelectric nanogenerator based on sodium chloride powder (S-TENG) to obtain mechanical energy. The polytetrafluoroethylene (PTFE) film and sodium chloride powder layer serve as the triboelectric pair. After testing and calculation, the internal resistance of S-TENG is 30 MΩ, and the output power of S-TENG (size: 6 cm × 6 cm) can arrive at the maximum value (about 403.3 µW). Furthermore, the S-TENG can achieve the open circuit voltage (Voc) of 198 V and short-circuit current (Isc) of 6.66 µA, respectively. Moreover, owing to the moisture absorption of sodium chloride powder, the S-TENG device also has the function of the humidity sensor. This work proposed a functional TENG device, and it can promote the advancement of self-powered sensors based on the TENG devices.


2020 ◽  
Vol 174 ◽  
pp. 107920
Author(s):  
Hongye Liu ◽  
Hao Wang ◽  
Yanping Fan ◽  
Yan Lyu ◽  
Zenghua Liu

2019 ◽  
Vol 66 (6) ◽  
pp. 2741-2745 ◽  
Author(s):  
Kequan Xia ◽  
Zhiyuan Zhu ◽  
Jiangming Fu ◽  
Yue Chi ◽  
Zhiwei Xu

Nano Energy ◽  
2021 ◽  
Vol 84 ◽  
pp. 105887
Author(s):  
Yuankai Zhou ◽  
Maoliang Shen ◽  
Xin Cui ◽  
Yicheng Shao ◽  
Lijie Li ◽  
...  

2021 ◽  
Vol 12 (1) ◽  
Author(s):  
Mengxiao Chen ◽  
Zhe Wang ◽  
Qichong Zhang ◽  
Zhixun Wang ◽  
Wei Liu ◽  
...  

AbstractThe well-developed preform-to-fiber thermal drawing technique owns the benefit to maintain the cross-section architecture and obtain an individual micro-scale strand of fiber with the extended length up to thousand meters. In this work, we propose and demonstrate a two-step soluble-core fabrication method by combining such an inherently scalable manufacturing method with simple post-draw processing to explore the low viscosity polymer fibers and the potential of soft fiber electronics. As a result, an ultra-stretchable conductive fiber is achieved, which maintains excellent conductivity even under 1900% strain or 1.5 kg load/impact freefalling from 0.8-m height. Moreover, by combining with triboelectric nanogenerator technique, this fiber acts as a self-powered self-adapting multi-dimensional sensor attached on sports gears to monitor sports performance while bearing sudden impacts. Next, owing to its remarkable waterproof and easy packaging properties, this fiber detector can sense different ion movements in various solutions, revealing the promising applications for large-area undersea detection.


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