材料科学
萃取(化学)
合理设计
铀
介孔材料
金属有机骨架
纳米技术
有机化学
冶金
吸附
催化作用
化学
作者
Jin Li,Na Wang,Lei Xue,Kexin Chen,Yougan Wang,Zhijian Li,Zhao Chen,Chunhui Deng
标识
DOI:10.1021/acsami.5c06581
摘要
Recently, metal–organic frameworks (MOFs) have been widely studied for uranium extraction from seawater to resolve the shortage of uranium resources. However, traditional MOF-based adsorbents are microporous structures, which are unfavorable to the mass transfer of guest molecules and the modification of functional groups. Herein, a novel mesoporous MOF (meso-UiO-66-NH–CN) is designed by the synergy of perchlorate and Pluronic F127, which gives meso-UiO-66-NH–CN with more accessible active sites and high mass transfer rates. Subsequently, mesoporous amidoximated MOFs (meso-UiO-66-NH-AO) were constructed via a one-step postsynthetic amidoximation, improving the stability and uranium selectivity of the material. The effect of acetic acid on the synthetic process is further investigated to regulate the inherent characteristics of meso-UiO-66-NH-AO. The mesopore structure endows meso-UiO-66-NH-AO with a rapid adsorption rate ( k 2 = 1.32 × 10 –4 g mg –1 min –1 ), and the modification of the amidoxime group gives the material high adsorption capacity ( Q max = 312.5 mg g –1 ) and brilliant selectivity ( K d = 213 × 10 5 mL g –1 ). Meanwhile, meso-UiO-66-NH-AO exhibits a clear uranium adsorption performance in natural seawater. This work aims to provide a theoretical guideline for designing hierarchically porous MOFs and reveals their promising prospects for effective uranium extraction in seawater.
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