Polyarylate membrane constructed from porous organic cage for high-performance organic solvent nanofiltration

被引:73
作者
Zhai, Zhe [1 ]
Jiang, Chi [1 ]
Zhao, Na [1 ]
Dong, Wenjing [1 ]
Li, Peng [1 ]
Sun, Haixiang [1 ]
Niu, Q. Jason [1 ]
机构
[1] China Univ Petr East China, State Key Lab Heavy Oil Proc, Qingdao 266580, Shandong, Peoples R China
关键词
Organic solvent nanofiltration; Porous organic cage; Interfacial polymerization; Molecular dynamics simulation; FILM COMPOSITE MEMBRANES; (OSN)-INTERFACIAL POLYMERIZATION; INTERFACIAL POLYMERIZATION; ENHANCED MICROPOROSITY; CROSS-LINKING; FABRICATION; CODEPOSITION; PERMEABILITY; FRAMEWORKS; NANOFILMS;
D O I
10.1016/j.memsci.2019.117505
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Preparation of highly permeable and selective organic solvent nanofiltration (OSN) membranes is desired for precise chemical separations. Although the emerging nanomaterials and novel preparation methods have significantly boosted the membrane performance, it still requires much effort to drive them toward scale-up production with lower cost and easier preparation process. Herein, we constructed a polyarylate membrane from one kind of porous organic cage, namely Noria through traditional interfacial polymerization technique. Under the catalysis of triethylamine, Noria in aqueous phase would react with terephthaloyl chloride (TPC) in hexane to form a dense nano-film. The inner cavity of Noria molecule provided nano-channel for both polar and non-polar solvents to transport through the membrane. Specially, the Noria thorn TPC membrane exhibits a high permeance for methanol up to 18 L m(-2) h(-1) bar(-1). This is resulted from the low interaction energy between methanol and Noria as revealed by the molecular dynamics (MD) simulation. In addition to the excellent performance, the simple preparation process with low-cost materials suggests the great potential of Noria thorn TPC membrane for practical application. Moreover, it would inspire the exploration of other molecules with tailored chemical structures for the assembly of high-performance membranes in future.
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页数:8
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