普鲁士蓝
铁磁性
化学
磁圆二色性
对映体药物
磁化
谱线
二色性
圆二色性
结晶学
金属
吸收光谱法
凝聚态物理
磁场
光学
对映选择合成
物理化学
物理
天文
生物化学
有机化学
催化作用
电极
电化学
量子力学
作者
Matteo Atzori,Ivan Breslavetz,Kévin Paillot,Katsuya Inoue,G. L. J. A. Rikken,Cyrille Train
摘要
Here we report on magneto-chiral dichroism (MChD) detected with visible light on the chiral Prussian Blue Analogue [MnII(X-pnH)(H2O)][CrIII(CN)6]·H2O (X = S, R; pn = 1,2-propanediamine). Single crystals suitable for magneto-optical measurements were grown starting from enantiopure chiral ligands. X-ray diffraction and magnetic measurements confirmed the 2D-layered structure of the material, its absolute configuration, and its ferrimagnetic ordered state below a critical temperature TC of 38 K. Absorption and MChD spectra were measured between 450 and 900 nm from room temperature down to 4 K. At 4 K the electronic spectrum features spin-allowed and spin-forbidden transitions of CrIII centers, spin-forbidden transitions of the MnII centers, and metal-to-metal charge transfer bands. The MChD spectra below the magnetic ordering temperature exhibit intense absolute configuration-dependent MChD signals. The temperature dependence of these signals closely follows the material magnetization. Under a magnetic field of 0.46 T, the most intense contribution to MChD represents 2.6% T-1 of the absorbed intensity, one of the highest values observed to date.
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