Cellulose-based ionic conductor: An emerging material toward sustainable devices

Y Ye, L Yu, E Lizundia, Y Zhu, C Chen… - Chemical …, 2023 - ACS Publications
Ionic conductors (ICs) find widespread applications across different fields, such as smart
electronic, ionotronic, sensor, biomedical, and energy harvesting/storage devices, and …

Recent advances in green technology and Industrial Revolution 4.0 for a sustainable future

P Bradu, A Biswas, C Nair… - Environmental …, 2022 - pmc.ncbi.nlm.nih.gov
This review gives concise information on green technology (GT) and Industrial Revolution
4.0 (IR 4.0). Climate change has begun showing its impacts on the environment, and the …

Molecular imprinting: green perspectives and strategies

M Arabi, A Ostovan, J Li, X Wang, Z Zhang… - Advanced …, 2021 - Wiley Online Library
Advances in revolutionary technologies pose new challenges for human life; in response to
them, global responsibility is pushing modern technologies toward greener pathways …

Advances in biodegradable electronic skin: Material progress and recent applications in sensing, robotics, and human–machine interfaces

M Zarei, G Lee, SG Lee, K Cho - Advanced Materials, 2023 - Wiley Online Library
The rapid growth of the electronics industry and proliferation of electronic materials and
telecommunications technologies has led to the release of a massive amount of untreated …

[HTML][HTML] A global perspective on e-waste recycling

K Liu, Q Tan, J Yu, M Wang - Circular Economy, 2023 - Elsevier
Electronic waste (e-waste) is one of the relatively fast-growing solid waste streams, with an
annual growth rate of 3%–5%. Although international policies have been formulated to …

Opportunities for biocompatible and safe zinc-based batteries

S Lei, Z Liu, C Liu, J Li, B Lu, S Liang… - Energy & Environmental …, 2022 - pubs.rsc.org
Biocompatible electronics have received extensive attention in the modern world and
medical field due to the rapid development of electronic industries. However, consequent …

Sweat‐permeable, biodegradable, transparent and self‐powered chitosan‐based electronic skin with ultrathin elastic gold nanofibers

X Peng, K Dong, Y Zhang, L Wang… - Advanced Functional …, 2022 - Wiley Online Library
The simultaneous achievement of multiple functional attributes, such as flexibility,
stretchability, transparency, comfortability, biodegradability, and self‐powered ability into …

The green solvent: A critical perspective

N Winterton - Clean technologies and environmental policy, 2021 - Springer
Solvents are important in most industrial and domestic applications. The impact of solvent
losses and emissions drives efforts to minimise them or to avoid them completely. Since the …

Advances in bioresorbable triboelectric nanogenerators

M Kang, DM Lee, I Hyun, N Rubab, SH Kim… - Chemical …, 2023 - ACS Publications
With the growing demand for next-generation health care, the integration of electronic
components into implantable medical devices (IMDs) has become a vital factor in achieving …

Biodegradable materials for sustainable health monitoring devices

ES Hosseini, S Dervin, P Ganguly… - ACS applied bio …, 2020 - ACS Publications
The recent advent of biodegradable materials has offered huge opportunity to transform
healthcare technologies by enabling sensors that degrade naturally after use. The …