吸附
选择性
脱水
化学工程
乙醇
化学
选择性吸附
门控
材料科学
有机化学
催化作用
生理学
生物化学
生物
工程类
作者
Yu‐Cheng Tang,Zhi‐Shuo Wang,Yi Heng,Mu‐Yang Zhou,Dong‐Dong Zhou,Jie‐Peng Zhang,Xiaoming Chen
标识
DOI:10.1002/anie.202303374
摘要
The ethanol/water separation challenge highlights the adsorption capacity/selectivity trade-off problem. We show that the target guest can serve as a gating component of the host to block the undesired guest, giving molecular sieving effect for the adsorbent possessing large pores. Two hydrophilic/water-stable metal azolate frameworks were designed to compare the effects of gating and pore-opening flexibility. Large amounts (up to 28.7 mmol g-1 ) of ethanol with fuel-grade (99.5 %+) and even higher purities (99.9999 %+) can be produced in a single adsorption process from not only 95 : 5 but also 10 : 90 ethanol/water mixtures. More interestingly, the pore-opening adsorbent possessing large pore apertures showed not only high water adsorption capacity but also exceptionally high water/ethanol selectivity characteristic of molecular sieving. Computational simulations demonstrated the critical role of guest-anchoring aperture for the guest-dominated gating process.
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