Yuan-Ju Zhang, Ru-Yan Li, Fan Yang, Yu-Feng Wang, Hua-Hong Zou, Dexin Chen, Ying Gong, Qiqi Feng, Zhong‐Hong Zhu, Hai‐Ling Wang
This work achieves a functional switch from efficient CPL to excellent photocatalytic ROS generation on a chiral trinuclear lanthanide cluster ( R / S -Eu 3 ) structural platform with the same linkage through a simple metal center substitution. Specifically, the metal center of R / S -Eu 3 is formed by a rigid triangular cluster core bridged by μ 3 -Cl –, and it is tightly surrounded by six chiral ( R / S -BNP) − ligands. High-resolution electrospray ionization mass spectrometry (HRESI-MS) confirmed that R / S -Eu 3 has excellent stability in solution. R / S -Eu 3 exhibits bright Eu(III) ion red characteristic luminescence and significant CPL behavior, with a luminescence asymmetry factor | g lum | reaching up to 0.035. Furthermore, when the metal center is replaced with Gd(III), the resulting R -Gd 3 -closed antenna effect, combined with a significant heavy atom effect, exhibits excellent ROS generation capability under low-power white light (60 mW·cm –2 ) irradiation, and this has been demonstrated by a variety of specific indicators. The high efficiency of ROS generation enables R -Gd 3 to rapidly photocatalyze the degradation of a variety of organic pollutants. Its degradation rates for methylene blue (MB), crystal violet (CV), rhodamine B (RhB), and norfloxacin (NFX) reached 58.9%, 73.34%, 71.92%, and 53.14%, respectively, which were 12.2, 16.2, 20.8, and 8.5 times higher than those of the control group.