Molecularly Functionalized Biomass Hydrogels for Sustainable Atmospheric Water Harvesting

W Weixin Guan (Materials Science and Engineering Program, The University of Texas at Austin) Y Yaxuan Zhao (Materials Science and Engineering Program, The University of Texas at Austin) C Chuxin Lei (Materials Science and Engineering Program, The University of Texas at Austin) Y Yuyang Wang (State Key Laboratory of Low-Dimensional Quantum Physics, Department of Physics, Tsinghua University) K Kai Wu (BNLMS, College of Chemistry and Molecular Engineering) G Guihua Yu (Materials Science and Engineering Program and Walker Department of Mechanical Engineering)

Abstract

Abstract Atmospheric water harvesting (AWH) offers a promising pathway to alleviate global water scarcity, highlighting the need for environmentally responsible sorbent materials. In this context, this research introduces a universal strategy for transforming natural polysaccharides into effective hydrogel sorbents, demonstrated with cellulose, starch, and chitosan. The methodology unites alkylation to graft thermoresponsive groups, thereby enhancing water processability and enabling energy‐efficient water release at lower temperatures, with the integration of zwitterionic groups to ensure stable and effective water sorption. The molecularly functionalized cellulose hydrogel, exemplifying our approach, shows favorable water uptake of 0.86–1.32 g g −1 at 15–30% relative humidity (RH), along with efficient desorption, releasing 95% of captured water at 60 °C. Outdoor tests highlight the water production rate of up to 14.19 kg kg −1 day −1 by electrical heating. The proposed molecular engineering methodology, which expands the range of raw materials by leveraging abundant biomass feedstock, has the potential to advance sorbent production and scalable AWH technologies, contributing to sustainable solutions.

Article Details

Volume / Issue Vol. 37, Issue 22
Published June 01, 2025
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (6)

W

Weixin Guan

Materials Science and Engineering Program, The University of Texas at Austin

Y

Yaxuan Zhao

Materials Science and Engineering Program, The University of Texas at Austin

C

Chuxin Lei

Materials Science and Engineering Program, The University of Texas at Austin

Y

Yuyang Wang

State Key Laboratory of Low-Dimensional Quantum Physics, Department of Physics, Tsinghua University

K

Kai Wu

BNLMS, College of Chemistry and Molecular Engineering

G

Guihua Yu

Materials Science and Engineering Program and Walker Department of Mechanical Engineering