Wearable electronics provides an opportunity for everyone to own personal healthcare systems. Convenience, versatility and energy conservation are vital elements to extend the functions of wearable electronics. Here we present a self-powered smart patch with wireless transmission ability based on triboelectric effect and electrostatic induction to monitor the temperature and motion status of individuals. Spontaneous friction charges are utilized to make the system self-powered. The energy and signal are wirelessly transmitted to the receiver through electrostatic induction. The wireless transmission efficiency achieved 26.6% with a 16 cm(2) receiver while the distance is 1 cm, which shows remarkable capability of near-field wireless transmi...
The parallel evolution of wearable electronics, artificial intelligence, and fifth-generation wirele...
Wearable sensing is a rapidly expanding research area with significant future potential and impact, ...
The parallel evolution of wearable electronics, artificial intelligence, and fifth-generation wirele...
In the coming years preventive medicine and medical treatment will strongly rely on wearable and imp...
Wearable integrated systems that rely on liquid metal commonly require an extremely complicated, hig...
Body-worn sensing is becoming increasingly important for patient monitoring, particularly the elderl...
The components in traditional human–machine interaction (HMI) systems are relatively independent, di...
A self-powered portable triboelectric nanogenerator (TENG) is used to collect biomechanical energy a...
Wearable bioelectronics enable the changes in the current reactive and disease-centric healthcare sy...
As it is urgently needed to address the energy consumption and health care problems caused by popula...
The progress of smart skin technology presents unprecedented opportunities for artificial intelligen...
This paper presents a button-like wearable wireless non-contact system (NCMB-Button) for long-term m...
In recent years, the field of wearable electronics has evolved at a rapid pace, requiring continued ...
Future Smart and Connected Communities (SCC) will utilize distributed sensors and embedded computing...
Epidermal and wearable electronic sensor technologies have gained extensive interest in recent years...
The parallel evolution of wearable electronics, artificial intelligence, and fifth-generation wirele...
Wearable sensing is a rapidly expanding research area with significant future potential and impact, ...
The parallel evolution of wearable electronics, artificial intelligence, and fifth-generation wirele...
In the coming years preventive medicine and medical treatment will strongly rely on wearable and imp...
Wearable integrated systems that rely on liquid metal commonly require an extremely complicated, hig...
Body-worn sensing is becoming increasingly important for patient monitoring, particularly the elderl...
The components in traditional human–machine interaction (HMI) systems are relatively independent, di...
A self-powered portable triboelectric nanogenerator (TENG) is used to collect biomechanical energy a...
Wearable bioelectronics enable the changes in the current reactive and disease-centric healthcare sy...
As it is urgently needed to address the energy consumption and health care problems caused by popula...
The progress of smart skin technology presents unprecedented opportunities for artificial intelligen...
This paper presents a button-like wearable wireless non-contact system (NCMB-Button) for long-term m...
In recent years, the field of wearable electronics has evolved at a rapid pace, requiring continued ...
Future Smart and Connected Communities (SCC) will utilize distributed sensors and embedded computing...
Epidermal and wearable electronic sensor technologies have gained extensive interest in recent years...
The parallel evolution of wearable electronics, artificial intelligence, and fifth-generation wirele...
Wearable sensing is a rapidly expanding research area with significant future potential and impact, ...
The parallel evolution of wearable electronics, artificial intelligence, and fifth-generation wirele...