Photo-oxidative enhancement of polymeric molecular sieve membranes
File(s)ncomms2942.pdf (3.33 MB)
Published version
Author(s)
Type
Journal Article
Abstract
High-performance membranes are attractive for molecular-level separations in industrial-scale chemical, energy and environmental processes. The next-generation membranes for these processes are based on molecular sieving materials to simultaneously achieve high throughput and selectivity. Membranes made from polymeric molecular sieves such as polymers of intrinsic microporosity (pore size<2 nm) are especially interesting in being solution processable and highly permeable but currently have modest selectivity. Here we report photo-oxidative surface modification of membranes made of a polymer of intrinsic microporosity. The ultraviolet light field, localized to a near-surface domain, induces reactive ozone that collapses the microporous polymer framework. The rapid, near-surface densification results in asymmetric membranes with a superior selectivity in gas separation while maintaining an apparent permeability that is two orders of magnitude greater than commercially available polymeric membranes. The oxidative chain scission induced by ultraviolet irradiation also indicates the potential application of the polymer in photolithography technology.
Date Issued
2013-05-28
Date Acceptance
2013-04-29
Citation
Nature Communications, 2013, 4
ISSN
2041-1723
Publisher
Nature Publishing Group
Journal / Book Title
Nature Communications
Volume
4
Copyright Statement
© 2013 Macmillan Publishers Limited. All rights reserved.
License URL
Subjects
Science & Technology
Multidisciplinary Sciences
Science & Technology - Other Topics
MULTIDISCIPLINARY SCIENCES
INTRINSIC MICROPOROSITY PIMS
IMIDAZOLATE FRAMEWORK ZIF-8
GAS SEPARATION MEMBRANES
CROSS-LINKING
NANOCOMPOSITE MEMBRANES
HYDROGEN PURIFICATION
SURFACE MODIFICATION
TRANSPORT PROPERTIES
ORGANIC FRAMEWORKS
PERMEABILITY
MD Multidisciplinary
Publication Status
Published
Article Number
1918