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 …

Understanding nanocellulose–water interactions: Turning a detriment into an asset

L Solhi, V Guccini, K Heise, I Solala… - Chemical …, 2023 - ACS Publications
Modern technology has enabled the isolation of nanocellulose from plant-based fibers, and
the current trend focuses on utilizing nanocellulose in a broad range of sustainable …

Nanochitin: chemistry, structure, assembly, and applications

L Bai, L Liu, M Esquivel, BL Tardy, S Huan… - Chemical …, 2022 - ACS Publications
Chitin, a fascinating biopolymer found in living organisms, fulfills current demands of
availability, sustainability, biocompatibility, biodegradability, functionality, and renewability …

Advanced nanocellulose‐based composites for flexible functional energy storage devices

T Xu, H Du, H Liu, W Liu, X Zhang, C Si… - Advanced …, 2021 - Wiley Online Library
With the increasing demand for wearable electronics (such as smartwatch equipment,
wearable health monitoring systems, and human–robot interface units), flexible energy …

Sustainable cellulose and its derivatives for promising biomedical applications

W Cheng, Y Zhu, G Jiang, K Cao, S Zeng… - Progress in Materials …, 2023 - Elsevier
Novel biomedical materials provide a new horizon for the diagnosis/treatment of diseases
and tissue repair. Cellulose, mainly found in trees and other biomass, is one of the most …

Nanocellulose for sustainable water purification

R Das, T Lindstrom, PR Sharma, K Chi… - Chemical …, 2022 - ACS Publications
Nanocelluloses (NC) are nature-based sustainable biomaterials, which not only possess
cellulosic properties but also have the important hallmarks of nanomaterials, such as large …