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Thermally Rearranged Poly(benzoxazole-co-imide) Membranes with Superior Mechanical Strength for Gas Separation Obtained by Tuning Chain Rigidity

Authors
Jo, Hye JinSoo, Chye YangDong, GuangxiDo, Yu SeongWang, Ho HyunLee, Moon JooQuay, Jeffery R.Murphy, M. KeithLee, Young Moo
Issue Date
Apr-2015
Publisher
AMER CHEMICAL SOC
Citation
MACROMOLECULES, v.48, no.7, pp.2194 - 2202
Indexed
SCIE
SCOPUS
Journal Title
MACROMOLECULES
Volume
48
Number
7
Start Page
2194
End Page
2202
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/133966
DOI
10.1021/acs.macromol.5b00413
ISSN
0024-9297
Abstract
Thermally rearranged polybenzoxazoles (TR-PBO) are some of the most promising materials for gas separation because of their microporous and bimodal cavities that offer high gas transport performance. However, the brittleness of fully converted TR-PBO membranes has impeded their widespread industrial implementation. In this study, we prepared novel, thermally rearranged poly(benzoxazole-co-imide) membranes (TR-PBOI) with improved mechanical strength and good gas separation performance. These membranes are based on two commercially available TR-able diamines and two non-TR-able diamines with various compositions and different polymer rigidities. TR-PBOI membranes with the appropriate ratio of PBO and PI displayed a high fractional free volume and therefore exceptional gas separation properties (CO2 permeability over 300 barrer and CO2/N-2 ideal selectivity above 20); both these values were higher than those of the corresponding original TR-PBO membranes. Furthermore, a substantial improvement in the mechanical properties of TR-PBOI membranes relative to their TR-PBO counterparts was observed.
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