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西南交通大学 环境科学与工程学院,四川 成都 611756
童圆君,博士,讲师,研究方向:环境分析,E-mail:tongyj@swjtu.edu.cn
龚正君,博士,教授,研究方向:环境分析与污染控制,E-mail:gzj@swjtu.edu.cn
收稿日期:2025-03-25,
修回日期:2025-05-26,
录用日期:2025-05-27,
纸质出版日期:2025-08-15
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向祎斐,黄小英,龚新颖,童圆君,龚正君.镧系配位发光材料在新污染物检测中的应用[J].分析测试学报,2025,44(08):1539-1546.
XIANG Yi-fei,HUANG Xiao-ying,GONG Xin-ying,TONG Yuan-jun,GONG Zheng-jun.Application of Lanthanide Coordination Luminescent Materials in the Detection of Emerging Contaminants[J].Journal of Instrumental Analysis,2025,44(08):1539-1546.
向祎斐,黄小英,龚新颖,童圆君,龚正君.镧系配位发光材料在新污染物检测中的应用[J].分析测试学报,2025,44(08):1539-1546. DOI: 10.12452/j.fxcsxb.250325225.
XIANG Yi-fei,HUANG Xiao-ying,GONG Xin-ying,TONG Yuan-jun,GONG Zheng-jun.Application of Lanthanide Coordination Luminescent Materials in the Detection of Emerging Contaminants[J].Journal of Instrumental Analysis,2025,44(08):1539-1546. DOI: 10.12452/j.fxcsxb.250325225.
新污染物(ECs)污染已是全球面临的共同挑战,亟需发展可实现其快速准确分析的方法。镧系离子(Ln
3+
)因具有高荧光量子产率、长荧光寿命、大Stokes位移等优点而在ECs检测领域受到广泛关注。但由于Ln
3+
的f→f跃迁宇称禁阻,导致Ln
3+
在自由状态下的激发光吸收效率极低,光致发光性能差。利用具有较高吸光系数的有机配体与Ln
3+
配位,并通过有机配体至Ln
3+
的能量传递,可制备具有较高发光效率的镧系配位材料(LnCMs)。且由于LnCMs的配体分子选择丰富,纳米结构可调,使之可满足不同ECs的快速准确分析需求。该文系统介绍了近年LnCMs在ECs检测领域的应用及发展情况,并对这一领域进行了展望,可为实现ECs的有效监管提供理论与技术指导。
Emerging contaminants(ECs) have become a focal point of global concern,necessitating the development of methods for their rapid and accurate analysis. Lanthanide ions(Ln
3+
) have garnered significant attention in the field of ECs detection due to their advantages,such as high fluorescence quantum yield,long fluorescence lifetime,and large Stokes shift. However,the f→f transitions of Ln
3+
are parity-allowed transitions,resulting in very low excitation light absorption efficiency and poor photoluminescence efficiency in their free state. By coordinating Ln
3+
with organic ligands that have high molar absorptivity,lanthanide coordination materials(LnCMs) can be prepared. Subsequently,energy transfer from the organic ligands to Ln
3+
can yield LnCMs with high luminescence efficiency. The choice of ligand molecules for LnCMs is diverse,and th
eir nanostructures are tunable,giving LnCMs a broad application prospect in the analysis and detection of ECs. This review systematically introduces the applications and developments of LnCMs in the field of ECs detection in recent years and provides an outlook for this area. The review aims to provide theoretical and technical guidance for the analysis and control of ECs.
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