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 …

A new frontier of printed electronics: flexible hybrid electronics

Y Khan, A Thielens, S Muin, J Ting… - Advanced …, 2020 - Wiley Online Library
The performance and integration density of silicon integrated circuits (ICs) have progressed
at an unprecedented pace in the past 60 years. While silicon ICs thrive at low‐power high …

Abaxial leaf surface-mounted multimodal wearable sensor for continuous plant physiology monitoring

G Lee, O Hossain, S Jamalzadegan, Y Liu, H Wang… - Science …, 2023 - science.org
Wearable plant sensors hold tremendous potential for smart agriculture. We report a lower
leaf surface-attached multimodal wearable sensor for continuous monitoring of plant …

Artificial skin perception

M Wang, Y Luo, T Wang, C Wan, L Pan… - Advanced …, 2021 - Wiley Online Library
Skin is the largest organ, with the functionalities of protection, regulation, and sensation. The
emulation of human skin via flexible and stretchable electronics gives rise to electronic skin …

Muscle-inspired self-healing hydrogels for strain and temperature sensor

G Ge, Y Lu, X Qu, W Zhao, Y Ren, W Wang, Q Wang… - ACS …, 2019 - ACS Publications
Recently, self-healing hydrogel bioelectronic devices have raised enormous interest for their
tissue-like mechanical compliance, desirable biocompatibility, and tunable adhesiveness on …

On-skin ultrathin and stretchable multifunctional sensor for smart healthcare wearables

S Zhang, A Chhetry, MA Zahed, S Sharma… - npj Flexible …, 2022 - nature.com
The flexible and stretchable multifunctional sensors for the precise monitoring of the human
physiological health indicators is an emerging requirement of next-generation electronics …

Flexible plasmonic biosensors for healthcare monitoring: Progress and prospects

L Song, J Chen, BB Xu, Y Huang - ACS nano, 2021 - ACS Publications
The noble metal nanoparticle has been widely utilized as a plasmonic unit to enhance
biosensors, by leveraging its electric and/or optical properties. Integrated with the “flexible” …

A biomimetic laminated strategy enabled strain-interference free and durable flexible thermistor electronics

S Hao, Q Fu, L Meng, F Xu, J Yang - Nature Communications, 2022 - nature.com
The development of flexible thermistor epidermal electronics (FTEE) to satisfy high
temperature resolution without strain induced signal distortion is of great significance but still …

Conductive polymer nanocomposites for stretchable electronics: material selection, design, and applications

S Peng, Y Yu, S Wu, CH Wang - ACS Applied Materials & …, 2021 - ACS Publications
Stretchable electronics that can elongate elastically as well as flex are crucial to a wide
range of emerging technologies, such as wearable medical devices, electronic skin, and soft …

A smart patch with on‐demand detachable adhesion for bioelectronics

X Shi, P Wu - Small, 2021 - Wiley Online Library
A smart ionic skin patch with on‐demand detachable adhesion has been developed as
human–machine interface for physiological signal monitoring. In spite of the multifunctions …