A Flexible and Stretchable Self-Powered Nanogenerator in Basketball Passing Technology Monitoring
The rapid development of the fifth generation technology poses more challenges in the human motion inspection field. In this study, a nanogenerator, made by PVDF, ionic hydrogel, and PDMS, is used. Furthermore, a transparent, stretchable, and biocompatible PENG (TSB-PENG) is presented, which can be...
Guardado en:
| Autores principales: | , , , , , , |
|---|---|
| Formato: | article |
| Lenguaje: | EN |
| Publicado: |
MDPI AG
2021
|
| Materias: | |
| Acceso en línea: | https://doaj.org/article/caee865964bd403fa3ddbc881bcd5afe |
| Etiquetas: |
Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
|
| id |
oai:doaj.org-article:caee865964bd403fa3ddbc881bcd5afe |
|---|---|
| record_format |
dspace |
| spelling |
oai:doaj.org-article:caee865964bd403fa3ddbc881bcd5afe2021-11-11T15:37:07ZA Flexible and Stretchable Self-Powered Nanogenerator in Basketball Passing Technology Monitoring10.3390/electronics102125842079-9292https://doaj.org/article/caee865964bd403fa3ddbc881bcd5afe2021-10-01T00:00:00Zhttps://www.mdpi.com/2079-9292/10/21/2584https://doaj.org/toc/2079-9292The rapid development of the fifth generation technology poses more challenges in the human motion inspection field. In this study, a nanogenerator, made by PVDF, ionic hydrogel, and PDMS, is used. Furthermore, a transparent, stretchable, and biocompatible PENG (TSB-PENG) is presented, which can be used as a self-powered sensor attached to the athlete’s joints, which helps to monitor the training and improve the subject’s performance. This device shows the ability to maintain a relatively stable output, under various external environments (e.g., inorganic salt, organic matter and temperature). Additionally, TSB-PENG can supply power to small-scale electronic equipment, such as Bluetooth transmitting motion data in real time. This study can provide a new approach to designing lossless, real-time, portable, and durable self-powered sensors in the sports motoring field.Changjun JiaYongsheng ZhuFengxin SunTianming ZhaoRongda XingYupeng MaoChongle ZhaoMDPI AGarticleflexibleself-poweredsport monitoringbasketball passElectronicsTK7800-8360ENElectronics, Vol 10, Iss 2584, p 2584 (2021) |
| institution |
DOAJ |
| collection |
DOAJ |
| language |
EN |
| topic |
flexible self-powered sport monitoring basketball pass Electronics TK7800-8360 |
| spellingShingle |
flexible self-powered sport monitoring basketball pass Electronics TK7800-8360 Changjun Jia Yongsheng Zhu Fengxin Sun Tianming Zhao Rongda Xing Yupeng Mao Chongle Zhao A Flexible and Stretchable Self-Powered Nanogenerator in Basketball Passing Technology Monitoring |
| description |
The rapid development of the fifth generation technology poses more challenges in the human motion inspection field. In this study, a nanogenerator, made by PVDF, ionic hydrogel, and PDMS, is used. Furthermore, a transparent, stretchable, and biocompatible PENG (TSB-PENG) is presented, which can be used as a self-powered sensor attached to the athlete’s joints, which helps to monitor the training and improve the subject’s performance. This device shows the ability to maintain a relatively stable output, under various external environments (e.g., inorganic salt, organic matter and temperature). Additionally, TSB-PENG can supply power to small-scale electronic equipment, such as Bluetooth transmitting motion data in real time. This study can provide a new approach to designing lossless, real-time, portable, and durable self-powered sensors in the sports motoring field. |
| format |
article |
| author |
Changjun Jia Yongsheng Zhu Fengxin Sun Tianming Zhao Rongda Xing Yupeng Mao Chongle Zhao |
| author_facet |
Changjun Jia Yongsheng Zhu Fengxin Sun Tianming Zhao Rongda Xing Yupeng Mao Chongle Zhao |
| author_sort |
Changjun Jia |
| title |
A Flexible and Stretchable Self-Powered Nanogenerator in Basketball Passing Technology Monitoring |
| title_short |
A Flexible and Stretchable Self-Powered Nanogenerator in Basketball Passing Technology Monitoring |
| title_full |
A Flexible and Stretchable Self-Powered Nanogenerator in Basketball Passing Technology Monitoring |
| title_fullStr |
A Flexible and Stretchable Self-Powered Nanogenerator in Basketball Passing Technology Monitoring |
| title_full_unstemmed |
A Flexible and Stretchable Self-Powered Nanogenerator in Basketball Passing Technology Monitoring |
| title_sort |
flexible and stretchable self-powered nanogenerator in basketball passing technology monitoring |
| publisher |
MDPI AG |
| publishDate |
2021 |
| url |
https://doaj.org/article/caee865964bd403fa3ddbc881bcd5afe |
| work_keys_str_mv |
AT changjunjia aflexibleandstretchableselfpowerednanogeneratorinbasketballpassingtechnologymonitoring AT yongshengzhu aflexibleandstretchableselfpowerednanogeneratorinbasketballpassingtechnologymonitoring AT fengxinsun aflexibleandstretchableselfpowerednanogeneratorinbasketballpassingtechnologymonitoring AT tianmingzhao aflexibleandstretchableselfpowerednanogeneratorinbasketballpassingtechnologymonitoring AT rongdaxing aflexibleandstretchableselfpowerednanogeneratorinbasketballpassingtechnologymonitoring AT yupengmao aflexibleandstretchableselfpowerednanogeneratorinbasketballpassingtechnologymonitoring AT chonglezhao aflexibleandstretchableselfpowerednanogeneratorinbasketballpassingtechnologymonitoring AT changjunjia flexibleandstretchableselfpowerednanogeneratorinbasketballpassingtechnologymonitoring AT yongshengzhu flexibleandstretchableselfpowerednanogeneratorinbasketballpassingtechnologymonitoring AT fengxinsun flexibleandstretchableselfpowerednanogeneratorinbasketballpassingtechnologymonitoring AT tianmingzhao flexibleandstretchableselfpowerednanogeneratorinbasketballpassingtechnologymonitoring AT rongdaxing flexibleandstretchableselfpowerednanogeneratorinbasketballpassingtechnologymonitoring AT yupengmao flexibleandstretchableselfpowerednanogeneratorinbasketballpassingtechnologymonitoring AT chonglezhao flexibleandstretchableselfpowerednanogeneratorinbasketballpassingtechnologymonitoring |
| _version_ |
1718435013886738432 |