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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Pore surface engineering in porous, chemically stable covalent organic frameworks for water adsorption
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Pore surface engineering in porous, chemically stable covalent organic frameworks for water adsorption

机译:多孔,化学稳定的共价有机骨架中的孔表面工程,用于吸水

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摘要

Herein, we have explored the possibility of a class of covalent organic frameworks (COFs) as water adsorbing materials. We have selected, synthesized 12 chemically stable functionalized Schiff base COFs and thoroughly studied their water uptake behaviour. Further, a deep understanding was developed with these COFs towards the effects of condensation pressure of water and hydrophilic/hydrophobic groups present in the COF pores on water absorption capacity and ultimately, their recyclability. Among all reported COFs, TpPa-1 shows the highest water uptake of 30 wt% (368 cm(3) g(-1); 17 mmol g(-1)) at P/P-0 = 0.3, which is also comparable with the recently reported carbon materials and few well known MOFs. This study also reveals that the overall water uptake of COFs can be tuned systematically based on chemical functionality and pore size in a wider window of relative pressures.
机译:在本文中,我们已经探索了将一类共价有机骨架(COF)用作吸​​水材料的可能性。我们选择,合成了12种化学稳定的功能化Schiff碱COF,并全面研究了其吸水行为。此外,对这些COF对水的冷凝压力和COF孔中存在的亲水/疏水基团的缩合压力对吸水能力以及最终它们的可回收性的影响发展了深入的了解。在所有报告的COF中,TpPa-1在P / P-0 = 0.3时显示出最高的30%水分吸收率(368 cm(3)g(-1); 17 mmol g(-1))最近报道的碳材料和少数著名的MOF。这项研究还表明,COF的总体吸水率可以在较宽的相对压力范围内根据化学官能度和孔径大小进行系统调整。

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