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 …

2D heterostructures for ubiquitous electronics and optoelectronics: principles, opportunities, and challenges

PV Pham, SC Bodepudi, K Shehzad, Y Liu, Y Xu… - Chemical …, 2022 - ACS Publications
A grand family of two-dimensional (2D) materials and their heterostructures have been
discovered through the extensive experimental and theoretical efforts of chemists, material …

Topological supramolecular network enabled high-conductivity, stretchable organic bioelectronics

Y Jiang, Z Zhang, YX Wang, D Li, CT Coen, E Hwaun… - Science, 2022 - science.org
Intrinsically stretchable bioelectronic devices based on soft and conducting organic
materials have been regarded as the ideal interface for seamless and biocompatible …

Highly conductive tissue-like hydrogel interface through template-directed assembly

J Chong, C Sung, KS Nam, T Kang, H Kim… - Nature …, 2023 - nature.com
Over the past decade, conductive hydrogels have received great attention as tissue-
interfacing electrodes due to their soft and tissue-like mechanical properties. However, a …

Wafer-patterned, permeable, and stretchable liquid metal microelectrodes for implantable bioelectronics with chronic biocompatibility

Q Zhuang, K Yao, M Wu, Z Lei, F Chen, J Li, Q Mei… - Science …, 2023 - science.org
Implantable bioelectronics provide unprecedented opportunities for real-time and
continuous monitoring of physiological signals of living bodies. Most bioelectronics adopt …

Natural biopolymer-based biocompatible conductors for stretchable bioelectronics

C Wang, T Yokota, T Someya - Chemical Reviews, 2021 - ACS Publications
Biocompatible conductors are important components for soft and stretchable bioelectronics
for digital healthcare, which have attracted extensive research efforts. Natural biopolymers …

Electronic skins and machine learning for intelligent soft robots

B Shih, D Shah, J Li, TG Thuruthel, YL Park, F Iida… - Science Robotics, 2020 - science.org
Soft robots have garnered interest for real-world applications because of their intrinsic safety
embedded at the material level. These robots use deformable materials capable of shape …

Conformal in-ear bioelectronics for visual and auditory brain-computer interfaces

Z Wang, N Shi, Y Zhang, N Zheng, H Li, Y Jiao… - Nature …, 2023 - nature.com
Brain-computer interfaces (BCIs) have attracted considerable attention in motor and
language rehabilitation. Most devices use cap-based non-invasive, headband-based …

Wireless and battery-free technologies for neuroengineering

SM Won, L Cai, P Gutruf, JA Rogers - Nature Biomedical Engineering, 2023 - nature.com
Tethered and battery-powered devices that interface with neural tissues can restrict natural
motions and prevent social interactions in animal models, thereby limiting the utility of these …

Significance of flexible substrates for wearable and implantable devices: recent advances and perspectives

M Hassan, G Abbas, N Li, A Afzal… - Advanced Materials …, 2022 - Wiley Online Library
In the past decade, flexible electronics have attracted significant research attention due to
their distinct features and emerging applications in numerous fields such as, flexible …