寻找阳离子MOF膜:具有CO2吸附驱动选择性的连续SOD-ZMOF膜
Bassem A Al-Maythalony1, Osama Shekhah, Raja Swaidan
1Functional Materials Design, Discovery & Development Research Group (FMD3), Advanced Membranes & Porous Materials Center (AMPMC), Division of Physical Sciences and Engineering (PSE), 4700 King Abdullah University of Science and Technology (KAUST) , Thuwal 23955-6900, Kingdom of Saudi Arabia.
Journal of the American Chemical Society
|January 13, 2015
概括
研究人员创建了第一个连续的热带石类金属有机框架 (ZMOF) 薄膜膜. 这种SOD-ZMOF膜比其他工业气体具有出色的二氧化碳选择性.
科学领域:
- 材料科学 材料科学 材料科学
- 化学工程是化学工程的重要组成部分.
- 纳米技术 纳米技术
背景情况:
- 连续薄膜膜对于高效的气体分离过程至关重要.
- 石类金属有机框架 (ZMOFs) 为分子选提供可调节的特性.
- 开发无缺陷的ZMOF膜仍然是一个重大挑战.
研究的目的:
- 制造了第一个连续的焦化类金属有机框架 (ZMOF) 薄膜膜.
- 为了研究ZMOF膜的气体透性和选择性特性.
- 为了确认制造膜中没有缺陷.
主要方法:
- 用于在多孔基底上生长纯相SOD-ZMOF膜的溶热结晶方法.
- 对纯气和混合气体输入进行的恒定体积/变压透试验.
- 分析气体透数据,包括时间延迟测量,以评估膜性能和缺陷存在.
主要成果:
- 成功制造了一种连续的,纯相苏达石拓 ZMOF (sod-ZMOF-1) 薄膜膜.
- 在气体透过程中通过可量化的时间滞后观测证实了针孔缺陷的不存在.
- 证明二氧化碳 (CO2) 与 (H2), (N2) 和甲 (CH4) 相比具有有利的透选择性.
结论:
- 开发的SOD-ZMOF-1膜代表了用于气体分离的薄膜膜技术的重大进步.
- 膜的高二氧化碳选择性主要归因于有利的二氧化碳吸附特性.
- 这项工作为ZMOF膜在工业气体分离过程中的实际应用铺平了道路.
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