Effect of impregnation with polyethylene glycols (PEGs) of different end groups on gas separation performance of cross-linked polyethylene oxide (PEO) membranes

S Shanshan Ji T Teng Wang L Lu Guan C Chengyang Zhao S Shuai Quan X Xuewei Dong (Center for Soft Condensed Matter Physics and Interdisciplinary Research & School of Physical Science and Technology) X Xianzhi Zhang F Fandi Meng Z Zhicheng Tian

Abstract

Polymer membranes offer an extremely attractive solution for achieving sustainable carbon dioxide capture and have the potential for large-scale application. The authors prepared almost amorphous polyethylene oxide separation membranes through cross-linking methods, with a CO 2 /H 2 separation coefficient of 7.9. However, there is still the drawback of low CO 2 permeability. To improve the performance of the cross-linked membranes, this paper utilized the swelling property of the cross-linked membranes and immersed them with different end groups of PEG aqueous solutions. The effects of different end groups on the gas separation performance of the cross-linked membranes were investigated. The results showed that after being impregnated with different end group PEG, the gas permeabilities of the cross-linked membranes increased. When using a polyethylene glycol with a molecular weight of 250 g/mol for impregnation, a 47.0wt.% increase in weight was observed, and the gas permeability and CO 2 /H 2 separation coefficient of the cross-linked membranes increased significantly. The CO 2 permeability increased from 170 Barrer of the original membrane to 1457 Barrer, and the separation coefficient of H 2 increased from 7.9 to 13.

Article Details

Journal PLoS ONE
Volume / Issue Vol. 21, Issue 4
Published April 10, 2026
Pages e0346667
ISSN 1932-6203
Publisher Public Library of Science

Journal Info

PLoS ONE

Public Library of Science

ISSN: 1932-6203 Open Access Health Sciences

Authors (9)

S

Shanshan Ji

T

Teng Wang

L

Lu Guan

C

Chengyang Zhao

S

Shuai Quan

X

Xuewei Dong

Center for Soft Condensed Matter Physics and Interdisciplinary Research & School of Physical Science and Technology

X

Xianzhi Zhang

F

Fandi Meng

Z

Zhicheng Tian