MOE Key Laboratory of Resources and Environmental System Optimization, College of Environmental Science and Engineering, North China Electric Power University, Beijing 102206, PR China.
Environ Sci Technol. 2023 Jul 4;57(26):9615-9626. doi: 10.1021/acs.est.3c02916. Epub 2023 Jun 22.
Uranium detection and extraction are necessary for the ecological environment as the growing demand for nuclear energy. Hence, exploring stable materials with excellent performance in uranium extraction and detection is highly desired. Herein, by amidoxime-functionalizing tetrafluoroterephthalonitrile (TFTPN) crosslinked hydroquinone (bP), phloroglucinol (tP), and 4,4',4″-trihydroxytriphenylmethane (tBP), three covalent organic polymers (COPs) , , and with different crosslinked architectures are fabricated. Uranium extraction and detection related to the difference in molecule construction were systemically investigated, giving some reference for the rational design and fabrication of advanced materials for the removal and monitoring of uranium in the environment. The with a compact steric structure achieves the highest theoretical maximum adsorption capacity of 578.9 ± 15.2 mg g and the best recyclability. The scattering electron center and U(VI) selective binding sites endow with excellent capability in selective detection for U(VI), with a limit of detection of 24.2 nmol L, which is well below the standard for U(VI) in drinking water of the World Health Organization (WHO). Moreover, the COPs possess prominent physicochemical stability and recyclability, and more importantly, the PAE-based COPs are derived from inexpensive industry materials with easy processing methods, providing an efficient and economical way for the detection and adsorption of uranium.
铀的探测和提取对于生态环境是必要的,因为核能的需求不断增长。因此,探索具有优异铀提取和探测性能的稳定材料是非常需要的。在此,通过将偕胺肟功能化四氟对苯二甲腈(TFTPN)交联到间苯二酚(bP)、苯三酚(tP)和均苯三酚(tBP)上,制备了三种具有不同交联结构的共价有机聚合物(COPs)、和。系统研究了与分子结构差异有关的铀萃取和检测,为合理设计和制备用于去除和监测环境中铀的先进材料提供了一些参考。具有紧凑立体结构的 COP 实现了最高理论最大吸附容量 578.9±15.2mg g 和最佳可回收性。散射电子中心和 U(VI)选择性结合位点赋予了 COP 对 U(VI)的优异选择性检测能力,检测限为 24.2nmol L,远低于世界卫生组织(WHO)饮用水中 U(VI)的标准。此外,COPs 具有突出的物理化学稳定性和可回收性,更重要的是,基于 PAE 的 COPs 是由廉价的工业材料制成的,具有易于加工的方法,为铀的检测和吸附提供了一种高效和经济的方法。