Toward sustainable wearable electronic textiles

M Dulal, S Afroj, J Ahn, Y Cho, C Carr, ID Kim… - ACS nano, 2022 - ACS Publications
Smart wearable electronic textiles (e-textiles) that can detect and differentiate multiple
stimuli, while also collecting and storing the diverse array of data signals using highly …

Current state and future prospects of sensors for evaluating polymer biodegradability and sensors made from biodegradable polymers: A review

LM Koh, SM Khor - Analytica Chimica Acta, 2022 - Elsevier
Since the invention of fully synthetic plastic in the 1900s, plastics have been extensively
applied in various fields and represent a significant market due to their satisfactory …

A biodegradable and recyclable piezoelectric sensor based on a molecular ferroelectric embedded in a bacterial cellulose hydrogel

J Lu, S Hu, W Li, X Wang, X Mo, X Gong, H Liu, W Luo… - ACS …, 2022 - ACS Publications
Currently, various electronic devices make our life more and more safe, healthy, and
comfortable, but at the same time, they produce a large amount of nondegradable and …

[HTML][HTML] Silk fibroin/polyacrylamide-based tough 3D printing scaffold with strain sensing ability and chondrogenic activity

Y Geng, T Liu, M Zhao, H Wei, X Yao… - Composites Part B …, 2024 - Elsevier
Cartilage tissue plays an important role in our life activities. The poor self-repair capacity
makes cartilage tissue engineering an urgent clinical demand. Among them, the …

Bioresorbable nanostructured chemical sensor for monitoring of pH level in vivo

M Corsi, A Paghi, S Mariani, G Golinelli… - Advanced …, 2022 - Wiley Online Library
Here, the authors report on the manufacturing and in vivo assessment of a bioresorbable
nanostructured pH sensor. The sensor consists of a micrometer‐thick porous silica …

Cellulose based flexible and wearable sensors for health monitoring

G Dandegaonkar, A Ahmed, L Sun, B Adak… - Materials …, 2022 - pubs.rsc.org
Recently, with the advancement of materials science and manufacturing methods,
researchers have introduced many new and advanced materials for wearable sensors. In …

Biodegradable polymeric materials for flexible and degradable electronics

Z Zhai, X Du, Y Long, H Zheng - Frontiers in Electronics, 2022 - frontiersin.org
Biodegradable electronics have great potential to reduce the environmental footprint of
electronic devices and to avoid secondary removal of implantable health monitors and …

[HTML][HTML] Beyond Tissue replacement: The Emerging role of smart implants in healthcare

E Abyzova, E Dogadina, RD Rodriguez, I Petrov… - Materials Today Bio, 2023 - Elsevier
Smart implants are increasingly used to treat various diseases, track patient status, and
restore tissue and organ function. These devices support internal organs, actively stimulate …

Incorporation of controlled release systems improves the functionality of biodegradable 3D printed cardiovascular implants

F Kabirian, M Mozafari, P Mela… - … Biomaterials Science & …, 2023 - ACS Publications
New horizons in cardiovascular research are opened by using 3D printing for biodegradable
implants. This additive manufacturing approach allows the design and fabrication of …

Recent trends in supercapacitor research: sustainability in energy and materials

DV Chernysheva, NV Smirnova… - ChemSusChem, 2024 - Wiley Online Library
Supercapacitors (SCs) have emerged as critical components in applications ranging from
transport to wearable electronics due to their rapid charge‐discharge cycles, high power …