Butterfly‐Shaped Folding Synthons for Designing Superselective and Ultrapermeable Artificial Water Channels

J Jie Shen Y Yongqi Zhang (College of Chemistry Fuzhou University Fuzhou 350116 China) Y Yingxue Jin (College of Chemistry Fuzhou University Fuzhou Fujian 350116 China) Z Zhao‐Xi Zhou (College of Chemistry Fuzhou University Fuzhou 350116 China) Y Ying Xu W Wenju Chang (College of Chemistry) J Jinyu Li (Fujian Provincial Key Laboratory of Advanced Inorganic Oxygenated-Materials, College of Chemistry) Z Zian Lin (College of Chemistry Fuzhou University Fuzhou Fujian 350116 China) H Huaqiang Zeng

Abstract

AbstractWater transport across biological membranes is essential for life, facilitated by water channel proteins like aquaporins (AQPs). Drawing inspiration from these natural systems, artificial water channels (AWCs) have emerged as transformative tools for advancing industrial and environmental applications. Herein, we report the design and comprehensive characterization of a groundbreaking class of AWCs, derived from unprecedented butterfly‐shaped aromatic folding synthons, carefully engineered to emulate the functional attributes of natural AQPs. These foldamers, with their intricate helical architectures, exhibit exceptional water transport performance. Remarkably, the highest‐performing AWC achieves an ultrafast water transport rate of 2.6 × 1010 H2O s−1 per channel—2.4 times the efficiency of AQP1—without the need for lipid anchors to preserve its functional orientation within phospholipid bilayers, while effectively excluding salts such as NaCl and KCl, along with protons. This work presents an ideal bio‐inspired, high‐performance artificial alternative to natural systems, demonstrating the remarkable potential of foldamer‐based AWCs as next‐generation solutions for tackling critical challenges in water purification and desalination.

Article Details

Volume / Issue Vol. 64, Issue 40
Published September 26, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (9)

J

Jie Shen

Y

Yongqi Zhang

College of Chemistry Fuzhou University Fuzhou 350116 China

Y

Yingxue Jin

College of Chemistry Fuzhou University Fuzhou Fujian 350116 China

Z

Zhao‐Xi Zhou

College of Chemistry Fuzhou University Fuzhou 350116 China

Y

Ying Xu

W

Wenju Chang

College of Chemistry

J

Jinyu Li

Fujian Provincial Key Laboratory of Advanced Inorganic Oxygenated-Materials, College of Chemistry

Z

Zian Lin

College of Chemistry Fuzhou University Fuzhou Fujian 350116 China

H

Huaqiang Zeng