石墨氮化碳
铀
吸附
离域电子
化学
活性炭
萃取(化学)
氮化物
核化学
嫁接
无机化学
化学工程
材料科学
光催化
有机化学
催化作用
图层(电子)
冶金
聚合物
工程类
作者
Minjie Wang,Wenxiu Sun,Mi Li,Xiaoyan Wu,C Chen,Tao Cai,Qingyi Zeng,Yilong Hua,Longlu Wang,Haijiao Xie
标识
DOI:10.1016/j.jhazmat.2024.135445
摘要
Graphitic carbon nitride (CN) as an adsorbent exhibit promising potential for the removal of uranium in water. However, the lack of active sites seriously restricts its practical application. In contrast to the traditional method of introducing new ligands, we propose a strategy to activate original ligands on CN by injecting π electrons, which can be realized by grafting 4-phenoxyphenol (PP) on CN (PCN). Compared with CN, the maximum adsorption capacity of PCN for uranium increased from 150.9 mg/g to 380.6 mg/g. Furthermore, PCN maintains good adsorption properties over a wide range of uranium concentrations (1 ∼ 60 mg/L) and pH (4 ∼ 8). After 5 consecutive cycles, PCN exhibited sustained uranium removal performance with a little of losses. The experimental and theoretical results show that the enhancement of adsorption performance is mainly due to the ligands activation of CN by delocalization of π electrons from PP. Furthermore, this activation can be enhanced by irradiation, as the CN can be photoexcited to provide additional photoelectrons for PP. As a result, dormant ligands such as N-CN, C-O-C, C-N-H and N-(C)
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