铀酰
选择性
材料科学
吸附
铀
电化学
无机化学
离子
电极
介孔材料
水溶液中的金属离子
金属
亲缘关系
导电体
结合能
聚合物
化学工程
选择性吸附
配位聚合物
碳纤维
硝酸铀酰
导电聚合物
硫黄
活性炭
作者
Doudou Cao,Weixu Liu,Fengchao Cui,Cheng Zhang,Yingbo Song,Jiarui Cao,Lu Luo,Xinbo Li,Sirui Li,Yue Zheng,Ye Yuan,Liping Wen,Xiangyu Kong,Hongjuan Ma,Yi Wang,Guangshan Zhu
标识
DOI:10.1002/adfm.202529856
摘要
ABSTRACT Electrochemical methods offer great potential for the capture of soluble uranium, yet metal ions accumulate on the electrode surface under electrostatic attraction, reducing the selectivity and rate of uranium ion extraction. Herein, three types of conductive polymers—those with high‐density, low‐density, and no electrically mediated binding units, respectively—were introduced into the nano‐channels of ordered mesoporous carbon (CMK‐3). Under a negative bias, the binding affinities of nitrogen and sulfur coordination units on poly(aminothiazole) (PAT) chains were electrically balanced, which transported the uranyl ions along the conductive PAT chains. Upon removal of the bias, the PAT chains in the confined space immobilized uranyl ions through the formation of a quadruple coordination structure, effectively excluding interfering ions. The PAT‐based solid reveals an ultra‐fast ion adsorption speed of 259.9 mg g −1 in the first 5 min of contact from 10 ppm uranium‐spiked water, while achieving high selectivity (U/V selectivity coefficient over 38.2). In particular, it demonstrated a high extraction capacity from natural seawater (∼3.3 ppb), surpassing that of classical amidoxime‐based adsorbents without electrically mediated binding units by a factor of 1115%.
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