Publication | Closed Access
Titanium‐Oxo Cluster Assisted Fabrication of a Defect‐Rich Ti‐MOF Membrane Showing Versatile Gas‐Separation Performance
28
Citations
45
References
2022
Year
Although having shown great promise for efficient gas separation, relevant study of Ti-MOF membranes remains very scarce, owing to limited Ti source types and uncertain factors which dominate the separation properties. In this work, we pioneered the use of the Ti<sub>8</sub> (μ<sub>2</sub> -O)<sub>8</sub> (OOCC<sub>6</sub> H<sub>5</sub> )<sub>16</sub> cluster as the Ti source of MIL-125 membranes, which led to lower reaction temperature and higher missing-linker number within the framework and therefore, enhanced CO<sub>2</sub> /N<sub>2</sub> adsorption selectivity. The MIL-125 membrane prepared by combining single-mode microwave heating with tertiary growth displayed an ideal CO<sub>2</sub> /N<sub>2</sub> selectivity of 38.7, which ranked the highest among all pristine pure MOF membranes measured under comparable conditions. In addition, the ideal H<sub>2</sub> /N<sub>2</sub> and H<sub>2</sub> /CH<sub>4</sub> selectivity was as high as 64.9 and 40.7, thus showing great promise for versatile utility in gas separation.
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