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混合维度纳米结构(UiO-66修饰的多壁碳纳米管)作为混合基质膜中的纳米填料用于增强CO₂/CH₄分离

Mixed Dimensional Nanostructure (UiO-66-Decorated MWCNT) as a Nanofiller in Mixed-Matrix Membranes for Enhanced CO /CH Separation.

作者信息

Khan Abuzar, Elsharif Asma M, Helal Aasif, Yamani Zain H, Saeed Hakeem Abbas, Yusuf Khan Mohd

机构信息

Center of Research Excellence in Nanotechnology, King Fahd University of Petroleum & Minerals (KFUPM), Dhahran, 31261, Kingdom of Saudi Arabia.

Department of Chemistry, College of Science, Imam Abdulrahman Bin Faisal University, P.O. Box 1982, Dammam, 31441, Saudi Arabia.

出版信息

Chemistry. 2021 Aug 2;27(43):11132-11140. doi: 10.1002/chem.202101017. Epub 2021 Jun 18.

Abstract

Mixed-matrix membranes (MMMs) with combination of two distinct dimensional nanofillers (such as 1D-3D, 2D-3D, or 3D-3D, etc.) have drawn special attention for gas separation applications due to their concerted effects on gas permeation and mechanical properties. An amine-functionalized 1D multiwalled carbon nanotube (NH -MWCNT) with exceptional mechanical strength and rapid gas transport was crosslinked with an amine-functionalized 3D metal-organic framework (UiO-66-NH ) with high CO affinity in a Schiff base reaction. The resultant crosslinked mixed-dimensional nanostructure was used as a nanofiller in a polysulfone (PSf) polymer matrix to explore the underlying synergy between 1D and 3D nanostructures on the gas separation performance of MMMs. Cross-sectional scanning electron microscopy and mapping revealed the homogenous dispersion of UiO-66@MWCNT in the polymer matrix. The MMM containing 5.0 wt. % UiO-66@MWCNT demonstrated a superior permeability 8.3 Barrer as compared to the 4.2 Barrer of pure PSf membrane for CO . Moreover, the selectivity (CO /CH ) of this MMM was enhanced to 39.5 from the 28.0 observed for pure PSf under similar conditions of pressure and temperature.

摘要

具有两种不同维度纳米填料组合(如1D-3D、2D-3D或3D-3D等)的混合基质膜(MMM)因其对气体渗透和机械性能的协同作用,在气体分离应用中受到了特别关注。一种具有卓越机械强度和快速气体传输性能的胺官能化一维多壁碳纳米管(NH -MWCNT)与一种在席夫碱反应中对CO具有高亲和力的胺官能化三维金属有机框架(UiO-66-NH )交联。所得的交联混合维度纳米结构被用作聚砜(PSf)聚合物基质中的纳米填料,以探索一维和三维纳米结构对MMM气体分离性能的潜在协同作用。横截面扫描电子显微镜和映射显示UiO-66@MWCNT在聚合物基质中均匀分散。与纯PSf膜对CO 的4.2巴耳(Barrer)相比,含有5.0 wt.% UiO-66@MWCNT的MMM表现出8.3巴耳的优异渗透率。此外,在相似的压力和温度条件下,该MMM的选择性(CO /CH )从纯PSf的28.0提高到了39.5。

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