Progress in TENG technology—A journey from energy harvesting to nanoenergy and nanosystem
Triboelectric nanogenerator (TENG) technology is a promising research field for energy
harvesting and nanoenergy and nanosystem (NENS) in the aspect of mechanical, electrical …
harvesting and nanoenergy and nanosystem (NENS) in the aspect of mechanical, electrical …
Soft human–machine interface sensing displays: materials and devices
The development of human‐interactive sensing displays (HISDs) that simultaneously detect
and visualize stimuli is important for numerous cutting‐edge human–machine interface …
and visualize stimuli is important for numerous cutting‐edge human–machine interface …
Flexible and stretchable triboelectric nanogenerator fabric for biomechanical energy harvesting and self-powered dual-mode human motion monitoring
Simultaneous monitoring of human motion and collecting ambient energy are important for
the development of personal healthcare monitoring and artificial intelligence. Here, a flexible …
the development of personal healthcare monitoring and artificial intelligence. Here, a flexible …
Self-powered visualized tactile-acoustic sensor for accurate artificial perception with high brightness and record-low detection limit
L Su, S Kuang, Y Zhao, J Li, G Zhao, ZL Wang, Y Zi - Science Advances, 2024 - science.org
The growth of the Internet of Things has focused attention on visualized sensors as a key
technology. However, it remains challenging to achieve high sensing accuracy and self …
technology. However, it remains challenging to achieve high sensing accuracy and self …
High‐brightness, high‐resolution, and flexible triboelectrification‐induced electroluminescence skin for real‐time imaging and human–machine information interaction
C Jia, Y Xia, Y Zhu, M Wu, S Zhu… - Advanced Functional …, 2022 - Wiley Online Library
With perceiving and converting mechanical stimuli into electrical and visual readouts
simultaneously, electronic skin endows a safe and effective interaction between human and …
simultaneously, electronic skin endows a safe and effective interaction between human and …
Unveiling innovative design of customizable adhesive flexible devices from self-healing ionogels with robust adhesion and sustainability
Y Zheng, T Cui, J Wang, H Ge, Z Gui - Chemical Engineering Journal, 2023 - Elsevier
Self-adhesive intelligent flexible devices have opened a plethora of innovative possibilities
for interfacial flexible electronics, including specific applications such as bioelectronic …
for interfacial flexible electronics, including specific applications such as bioelectronic …
High-performance triboelectric nanogenerator powered flexible electroluminescence devices based on patterned laser-induced copper electrodes for visualized …
S Zhu, Y Xia, Y Zhu, M Wu, C Jia, X Wang - Nano Energy, 2022 - Elsevier
Flexible electroluminescence (EL) devices with self-powered features are of significant
interest in information interaction, wearable electronics, and artificial intelligence. However …
interest in information interaction, wearable electronics, and artificial intelligence. However …
A flexible organic mechanoluminophore device
Q Zhang, M Xu, L Zhou, S Liu, W Wang, L Zhang… - Nature …, 2023 - nature.com
A flexible mechanoluminophore device that is capable of converting mechanical energy into
visualizable patterns through light-emission holds great promise in many applications, such …
visualizable patterns through light-emission holds great promise in many applications, such …
Self-powered, ultrasensitive, and high-resolution visualized flexible pressure sensor based on color-tunable triboelectrification-induced electroluminescence
With the capability of mapping local pressure information and converting it into human-
readable visual optical signals simultaneously, self-powered visualized flexible pressure …
readable visual optical signals simultaneously, self-powered visualized flexible pressure …
Photoactive materials and devices for energy-efficient soft wearable optoelectronic systems
Advances in conventional inorganic photoactive materials, such as silicon and III–V
compound semiconductors, enabled the development of high-performance and energy …
compound semiconductors, enabled the development of high-performance and energy …