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如何评估-OH和-COOH官能团对U(VI)的化学亲和力。

How to Evaluate the Chemical Affinity of -OH and -COOH Functional Groups Toward U(VI).

作者信息

Cui Xuemei, Xie Xiaoying, Li Yun, Chen Yue, Ma Yan, Yang Shubin

机构信息

School of Chemistry and Chemical Engineering, Yantai University, Yantai 264005, China.

Yantai-Jingshi Institute of Material Genome Engineering, Yantai 264006, China.

出版信息

Molecules. 2024 Nov 27;29(23):5614. doi: 10.3390/molecules29235614.

Abstract

Which functional group shows a stronger affinity for U(VI) and can be introduced into material to enhance selective enrichment? This is crucial for U(VI) capture material design and evaluation. Following these questions, we herein compared and analyzed bare graphene, graphene oxide (GO), and carboxylated graphene oxide (GO-COOH) through experimental and theoretical calculations. Experiments show that U(VI) adsorption on GO-COOH ( = 344.1 mg/g) mainly occurs via inner-sphere complexation with the C=O group in -COOH. The -COOH group can significantly enhance the enrichment and selectivity of U(VI), and its affinity for U(VI) is greater than that of -OH. There is a strong interaction between [UO(HO)] and -COOH with an interaction energy of 1.13 eV. When U(VI) is adsorbed on GO, the original C-O(H) bond in GO breaks, leading to U(VI) seizing -OH and forming a more stable complex [UO(HO)(OH)]. However, the desorption of U(VI) from GO is easier due to the weakened interaction between [UO(HO)(OH)] and GO after the C-O(H) bond breakage. Briefly, the combination of experimental observations and theoretical calculations provides a comprehensive understanding of the affinity and selectivity of -COOH and -OH for U(VI), and highlights the potential of using -COOH functionalization to enhance the U(VI) enrichment and separation performance of materials.

摘要

哪种官能团对U(VI)具有更强的亲和力,并且可以引入材料中以增强选择性富集?这对于U(VI)捕获材料的设计和评估至关重要。围绕这些问题,我们在此通过实验和理论计算对裸石墨烯、氧化石墨烯(GO)和羧基化氧化石墨烯(GO-COOH)进行了比较和分析。实验表明,U(VI)在GO-COOH上的吸附( = 344.1 mg/g)主要通过与-COOH中的C=O基团发生内球络合作用。-COOH基团可以显著提高U(VI)的富集和选择性,并且其对U(VI)的亲和力大于-OH。[UO(HO)]与-COOH之间存在强烈的相互作用,相互作用能为1.13 eV。当U(VI)吸附在GO上时,GO中原有的C-O(H)键断裂,导致U(VI)夺取-OH并形成更稳定的络合物[UO(HO)(OH)]。然而,由于C-O(H)键断裂后[UO(HO)(OH)]与GO之间的相互作用减弱,U(VI)从GO上的解吸更容易。简而言之,实验观察和理论计算相结合,全面了解了-COOH和-OH对U(VI)的亲和力和选择性,并突出了利用-COOH功能化提高材料U(VI)富集和分离性能的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bbf/11643956/4096d8c17094/molecules-29-05614-g001.jpg

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