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◆ ACS Applied Polymer Materials2026-03-12· Barrer

Enhanced Gas Separation Performance of Rearrangeable Polyimide-Based Mixed Matrix Membranes via Incorporation of Iron Acetylacetonate

Dian Sheng, Yunhua Lu, Pinru Li, Guoyong Xiao, Tonghua Wang, Hongbin Zhao

原始摘要(英文原文)· Original abstract
To improve the gas separation performance of polymeric membranes, mixed matrix membranes (MMMs) have been extensively developed. Herein, iron acetylacetonate (Fe(acac) 3 ) was incorporated into rearrangeable polyimides (PIs) via in situ polymerization followed by thermal imidization. Owing to the formation of coordination bonds between Fe 3+ and PI chains, the glass transition temperature of the MMMs was significantly increased. After thermal rearrangement (TR) treatment, their gas permeabilities were remarkably enhanced. Specifically, the TR-1.0%Fe(acac) 3 sample exhibited exceptional gas permeabilities: 2417 Barrer for H 2, 3027 Barrer for CO 2, 427 Barrer for O 2, 89 Barrer for N 2, and 92 Barrer for CH 4 . Notably, its CO 2 /N 2 and CO 2 /CH 4 separation performances approached the 2019 upper bound. Furthermore, when the thermal treatment temperature was increased to 500 °C, the gas permeabilities were drastically enhanced to 15439 Barrer (H 2 ), 29948 Barrer (CO 2 ), 5488 Barrer (O 2 ), 1152 Barrer (N 2 ), and 1730 Barrer (CH 4 ), with the CO 2 /CH 4 separation performance surpassing the 2019 upper bound. After two years of ambient storage, the gas permeabilities of the MMMs significantly decreased but remained higher than those of the pristine TR membrane. This study proposes a facile strategy for improving gas separation performance by incorporating Fe(acac) 3 into rearrangeable PIs, which offers promising potential for practical separation applications.
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