As an important way of converting mechanical energy into electric energy, a piezoelectric nanogenerator (PENG) has been widely applied in energy harvesting as well as self-powered sensors in recent years. However, its robustness and durability are still severely challenged by frequent and inevitable mechanical impacts in real application environments. Herein, a fully self-healing PENG (FS-PENG) as a self-powered pressure sensing electronic skin is reported. The self-healing piezoelectric composite and self-healing Ag NW electrode fabricated through mixing piezoelectric PZT particles and conductive Ag NWs into self-healing polydimethylsiloxane (H-PDMS) are assembled into the sandwich structure FS-PENG. The FS-PENG could not only effectively ...
Self-powered biocompatible electronic devices to detect vital physiological signals of the human bod...
Wearable and implantable electronics (WIEs) are more and more important and attractive to the public...
With the development of technology, electronic devices are becoming more miniaturized and multifunct...
Flexible piezoresistive pressure sensors obtain global research interest owing to their potential ap...
Energy crisis and internet of things have attracted long term interests due to rapid development of ...
Electronic skin (e-skin) with skin-like flexibility and tactile sensation will promote the great adv...
We report human skin based triboelectric nanogenerators (TENG) that can either harvest biomechanical...
Remarkable progress has been made recently in the development of soft materials and devices for huma...
AbstractTwo new fields are introduced to the sensor community: strained induced piezotronics for sma...
Skin-inspired materials facilitate the design and fabrication of various biomedical devices capable ...
With the rapid development of wearable electronics like artificial e-skins and smart patch, harvesti...
International audiencePiezoelectric nanocomposites based nanogenerators (NGs) are gaining extensive ...
Smart, self-powered, and wearable e-skin that mimics the pressure sensing property of the human skin...
This work presents a triboelectric nanogenerators (TENG) based wide-range, self-powered flexible pre...
There is an increasing interest to develop a next generation of touch pads that require stretchabili...
Self-powered biocompatible electronic devices to detect vital physiological signals of the human bod...
Wearable and implantable electronics (WIEs) are more and more important and attractive to the public...
With the development of technology, electronic devices are becoming more miniaturized and multifunct...
Flexible piezoresistive pressure sensors obtain global research interest owing to their potential ap...
Energy crisis and internet of things have attracted long term interests due to rapid development of ...
Electronic skin (e-skin) with skin-like flexibility and tactile sensation will promote the great adv...
We report human skin based triboelectric nanogenerators (TENG) that can either harvest biomechanical...
Remarkable progress has been made recently in the development of soft materials and devices for huma...
AbstractTwo new fields are introduced to the sensor community: strained induced piezotronics for sma...
Skin-inspired materials facilitate the design and fabrication of various biomedical devices capable ...
With the rapid development of wearable electronics like artificial e-skins and smart patch, harvesti...
International audiencePiezoelectric nanocomposites based nanogenerators (NGs) are gaining extensive ...
Smart, self-powered, and wearable e-skin that mimics the pressure sensing property of the human skin...
This work presents a triboelectric nanogenerators (TENG) based wide-range, self-powered flexible pre...
There is an increasing interest to develop a next generation of touch pads that require stretchabili...
Self-powered biocompatible electronic devices to detect vital physiological signals of the human bod...
Wearable and implantable electronics (WIEs) are more and more important and attractive to the public...
With the development of technology, electronic devices are becoming more miniaturized and multifunct...