Scalable, stretchable and washable triboelectric fibers for self-powering human-machine interaction and cardiopulmonary resuscitation training. (November 2022)
- Record Type:
- Journal Article
- Title:
- Scalable, stretchable and washable triboelectric fibers for self-powering human-machine interaction and cardiopulmonary resuscitation training. (November 2022)
- Main Title:
- Scalable, stretchable and washable triboelectric fibers for self-powering human-machine interaction and cardiopulmonary resuscitation training
- Authors:
- Lan, Binxu
Wu, Fei
Cheng, Yin
Zhou, Yi
Hossain, Gaffar
Grabher, Günter
Shi, Liangjing
Wang, Ranran
Sun, Jing - Abstract:
- Abstract: Flexible and stretchable fiber-shaped triboelectric nanogenerators (FTENGs) have been extensively investigated in wearable electronics due to their ability to harvest human-body mechanical energy and serve as self-powered sensing systems. However, developing a facial and scalable fabrication method for highly flexible and comfortable FTENGs remains a formidable challenge. Here, a scalable, flexible and washable coaxially structured FTENGs is developed, which possess excellent mechanical stretchability, weave-ability and electrical output performance. The instantaneous power density of FTENG fabrics with an effective area of 32 cm 2 can reach as high as 0.957 W m -2 under an external load resistance of 10 MΩ, which is superior to the vast majority of reported work. As self-powered sensors, FTENGs can harvest human motion energy for the detection of body physiological signals and human-machine interactions. Importantly, a wearable cardiopulmonary resuscitation training system is developed based on the FTENGs, which can evaluate the quality of chest compressions, including compression rate, depth, chest compression leaning and chest recoil condition. All these advantages of FTENGs are expected to broadly benefit the development of medical assistance training. Graphical Abstract: ga1 Highlights: The stretchable FTENGs enable fabricate continuously by self-designed coating equipment. The FTENGs fabrics with a size of 8 × 4 cm 2 achieves high instantaneous output powerAbstract: Flexible and stretchable fiber-shaped triboelectric nanogenerators (FTENGs) have been extensively investigated in wearable electronics due to their ability to harvest human-body mechanical energy and serve as self-powered sensing systems. However, developing a facial and scalable fabrication method for highly flexible and comfortable FTENGs remains a formidable challenge. Here, a scalable, flexible and washable coaxially structured FTENGs is developed, which possess excellent mechanical stretchability, weave-ability and electrical output performance. The instantaneous power density of FTENG fabrics with an effective area of 32 cm 2 can reach as high as 0.957 W m -2 under an external load resistance of 10 MΩ, which is superior to the vast majority of reported work. As self-powered sensors, FTENGs can harvest human motion energy for the detection of body physiological signals and human-machine interactions. Importantly, a wearable cardiopulmonary resuscitation training system is developed based on the FTENGs, which can evaluate the quality of chest compressions, including compression rate, depth, chest compression leaning and chest recoil condition. All these advantages of FTENGs are expected to broadly benefit the development of medical assistance training. Graphical Abstract: ga1 Highlights: The stretchable FTENGs enable fabricate continuously by self-designed coating equipment. The FTENGs fabrics with a size of 8 × 4 cm 2 achieves high instantaneous output power density of 0.957 W m -2 . The FTENGs enable human-motion detection and human-machine interaction applications. The FTENGs allow convenient integration into gloves for cardiopulmonary resuscitation training. … (more)
- Is Part Of:
- Nano energy. Volume 102(2022)
- Journal:
- Nano energy
- Issue:
- Volume 102(2022)
- Issue Display:
- Volume 102, Issue 2022 (2022)
- Year:
- 2022
- Volume:
- 102
- Issue:
- 2022
- Issue Sort Value:
- 2022-0102-2022-0000
- Page Start:
- Page End:
- Publication Date:
- 2022-11
- Subjects:
- Fiber-shaped triboelectric nanogenerators -- Motion detection -- Human-machine interaction -- Cardiopulmonary resuscitation -- Self-powering
Nanoscience -- Periodicals
Nanotechnology -- Periodicals
Nanostructured materials -- Periodicals
Power resources -- Technological innovations -- Periodicals
Nanoscience
Nanostructured materials
Nanotechnology
Power resources -- Technological innovations
Periodicals
621.042 - Journal URLs:
- http://www.sciencedirect.com/science/journal/22112855 ↗
http://www.sciencedirect.com/ ↗ - DOI:
- 10.1016/j.nanoen.2022.107737 ↗
- Languages:
- English
- ISSNs:
- 2211-2855
- Deposit Type:
- Legaldeposit
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