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氨基功能化 ZIF-7 纳米晶体:改善 CO/CH 分离用混合基质膜中的内在分离能力和界面相容性。

Amino-Functionalized ZIF-7 Nanocrystals: Improved Intrinsic Separation Ability and Interfacial Compatibility in Mixed-Matrix Membranes for CO /CH Separation.

机构信息

College of Chemical Engineering, State Key Laboratory of Materials-Oriented Chemical Engineering, Nanjing Tech University, Nanjing, 210009, P. R. China.

The School of Materials Science and Chemical Engineering, Ningbo University, Ningbo, 315211, P. R. China.

出版信息

Adv Mater. 2017 Aug;29(32). doi: 10.1002/adma.201606999. Epub 2017 Jun 21.

DOI:10.1002/adma.201606999
PMID:28635032
Abstract

Highly permeable and selective, as well as plasticization-resistant membranes are desired as promising alternatives for cost- and energy-effective CO separation. Here, robust mixed-matrix membranes based on an amino-functionalized zeolitic imidazolate framework ZIF-7 (ZIF-7-NH ) and crosslinked poly(ethylene oxide) rubbery polymer are successfully fabricated with filler loadings up to 36 wt%. The ZIF-7-NH materials synthesized from in situ substitution of 2-aminobenzimidazole into the ZIF-7 structure exhibit enlarged aperture size compared with monoligand ZIF-7. The intrinsic separation ability for CO /CH on ZIF-7-NH is remarkably enhanced as a result of improved CO uptake capacity and diffusion selectivity. The incorporation of ZIF-7-NH fillers simultaneously makes the neat polymer more permeable and more selective, surpassing the state-of-the-art 2008 Robeson upper bound. The chelating effect between metal (zinc) nodes of fillers and ester groups of a polymer provides good bonding, enhancing the mechanical strength and plasticization resistance of the neat polymer membrane. The developed novel ZIF-7 structure with amino-function and the resulting nanocomposite membranes are very attractive for applications like natural-gas sweetening or biogas purification.

摘要

高渗透性和选择性,以及抗增塑剂的膜是理想的替代物,具有成本效益和节能的 CO 分离。在这里,基于氨基功能化沸石咪唑骨架 ZIF-7(ZIF-7-NH)和交联聚(氧化乙烯)橡胶聚合物的坚固混合基质膜成功地制造,填充负载高达 36wt%。从 ZIF-7 结构中的 2-氨基苯并咪唑原位取代合成的 ZIF-7-NH 材料与单配体 ZIF-7 相比,孔径尺寸增大。由于 CO 吸收能力和扩散选择性的提高,ZIF-7-NH 的内在 CO/CH 分离能力显著增强。ZIF-7-NH 填料的加入使纯聚合物同时具有更高的渗透性和选择性,超过了 2008 年 Robeson 上限的最新技术。填料的金属(锌)节点与聚合物的酯基之间的螯合作用提供了良好的键合,增强了纯聚合物膜的机械强度和抗增塑剂能力。开发的新型具有氨基功能的 ZIF-7 结构和由此产生的纳米复合膜非常适合用于天然气脱硫或沼气净化等应用。

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