期刊
DALTON TRANSACTIONS
卷 52, 期 30, 页码 10372-10377出版社
ROYAL SOC CHEMISTRY
DOI: 10.1039/d3dt01800h
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In this study, a light-induced substance conversion system using an Er(iii) coordination polymer and its Y(iii)-diluted analogue was reported. The transformed products exhibited higher T-XM values and lower effective energy barriers for magnetization reversal compared to the untransformed compounds. This work not only provides a new light-conversion system, but also reveals the nature of photo-induced variation of magnetic properties.
Light-induced substance conversion is highly promising for creating new radical-based compounds. Herein, we report an Er(iii) coordination polymer [Er(CA)(ACA)(DMF)(H2O)](n) (1) and its Y(iii)-diluted analogue 1@Y (H(2)CA = 2,5-dichloro-3,6-dihydroxy-p-quinone, HACA = 9-anthracene carboxylic acid) with the light-induced transformation of the ligand to a radical. The T-XM values of light-transformed products 1a and 1a@Y are higher than those of 1 and 1@Y, respectively, due to the formation of radicals by ultraviolet light irradiation, confirmed by EPR measurement as well. The effective energy barriers for magnetization reversal (U-eff) decrease from 72 K for 1 to 67 K for 1a, and from 117 K for 1@Y to 94 K for 1a@Y. This work not only provides a new light-conversion system but also reveals the nature of photo-induced variation of magnetic properties.
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