Flexible brain–computer interfaces

X Tang, H Shen, S Zhao, N Li, J Liu - Nature Electronics, 2023 - nature.com
Brain–computer interfaces—which allow direct communication between the brain and
external computers—have potential applications in neuroscience, medicine and virtual …

Functional fiber materials to smart fiber devices

C Chen, J Feng, J Li, Y Guo, X Shi, H Peng - Chemical Reviews, 2022 - ACS Publications
The development of fiber materials has accompanied the evolution of human civilization for
centuries. Recent advances in materials science and chemistry offered fibers new …

Solution-processable, soft, self-adhesive, and conductive polymer composites for soft electronics

P Tan, H Wang, F ** of thousands of neurons in rodents
Z Zhao, H Zhu, X Li, L Sun, F He, JE Chung… - Nature biomedical …, 2023 - nature.com
Penetrating flexible electrode arrays can simultaneously record thousands of individual
neurons in the brains of live animals. However, it has been challenging to spatially map and …

3D printing of conducting polymers

H Yuk, B Lu, S Lin, K Qu, J Xu, J Luo, X Zhao - Nature communications, 2020 - nature.com
Conducting polymers are promising material candidates in diverse applications including
energy storage, flexible electronics, and bioelectronics. However, the fabrication of …

Electronic skin: recent progress and future prospects for skin‐attachable devices for health monitoring, robotics, and prosthetics

JC Yang, J Mun, SY Kwon, S Park, Z Bao… - Advanced …, 2019 - Wiley Online Library
Recent progress in electronic skin or e‐skin research is broadly reviewed, focusing on
technologies needed in three main applications: skin‐attachable electronics, robotics, and …

Antifouling Strategies for Selective In Vitro and In Vivo Sensing

C Jiang, G Wang, R Hein, N Liu, X Luo… - Chemical …, 2020 - ACS Publications
The ability to fabricate sensory systems capable of highly selective operation in complex
fluid will undoubtedly underpin key future developments in healthcare. However, the …