With the rapid development of the Internet of Things and flexible electronic technologies, there is a growing demand for wireless, sustainable, multifunctional, and independently …
Z Leng, P Zhu, X Wang, Y Wang, P Li… - Advanced Functional …, 2023 - Wiley Online Library
As an on‐skin electronic device, artificial skin shows great potential in medical monitoring and personal electronics, which also holds promise to develop human‐machine merging …
C Fan, Y Zhang, Z Long, A Mensah… - Advanced Functional …, 2023 - Wiley Online Library
Incorporating zero‐energy‐input cooling technology into personal thermal management (PTM) systems is a promising solution for preventing heat‐related illnesses while reducing …
G Yang, K Zhu, W Guo, D Wu, X Quan… - Advanced Functional …, 2022 - Wiley Online Library
Traditional human emotion recognition is based on electroencephalogram (EEG) data collection technologies which rely on plenty of rigid electrodes and lack anti‐interference …
J Dong, X Tang, Y Peng, C Fan, L Li, C Zhang, F Lai… - Nano Energy, 2023 - Elsevier
The prosperity of wearable and healthcare electronics yearns for the compact integration of multi-functionalities including detectability for various electrophysiological signals …
A wearable textile that is engineered to reflect incoming sunlight and allow the transmission of mid-infrared radiation simultaneously would have a great impact on the human body's …
Natural plant fibers such as cotton have favorable performance in water and moisture management; however, they suffer from inferior processing ability due to limited diameter …
The development of wearable soft electronic skins requires the production of materials with high mechanical flexibility, an inherent self-healing mechanism, and high breathability …
S Nam, C Park, SH Sunwoo, M Kim, H Lee, M Lee… - Soft Science, 2023 - oaepublish.com
Soft conductive nanocomposites have introduced significant breakthroughs in bio-integrated electronics by mitigating the mechanical mismatch between the body and the device …