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Spin-state-correlated optical properties of copper(II)-nitroxide based molecular magnets

机译:基于铜(II)的分子磁体的旋转状态相关光学性质

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摘要

Molecular magnets based on copper(II) ions and stable nitroxide radicals exhibit promising switchable behavior triggered by a number of external stimuli; however, their spin-state-correlated optical properties vital for photoinduced switching have not been profoundly investigated to date. Herein, the electronic absorption spectra of single crystals of three representatives of this unique family are studied experimentally and theoretically in the visible and near-IR regions. We established that the color of the complexes is mainly determined by optical properties of the nitroxide radicals, whereas the Cu(hfac)(2) fragment contributes to the near-IR range with the intensity smaller by an order of magnitude. The thermochromism of these complexes evident upon thermal spin state switching is mainly caused by a spectral shift of the absorption bands of the nitroxides. The vibrational progression observed in the visible range for single crystals as well as for solutions of pure nitroxides is well reproduced by DFT calculations, where the C-C stretching mode governs the observed progression. The analysis of the spectra of single crystals in the near-IR region reveals changes in the energy and in the intensity of the copper(II) d-d transitions, which are well reproduced by SOC-NEVPT2 calculations and owe to the flip of the Jahn-Teller axis in the coordination environment of copper. Further strategies for designing bidirectional magnetic photo-switches using these appealing compounds are discussed.
机译:基于铜(II)离子和稳定的硝基氧化物自由基的分子磁体表现出由许多外部刺激引发的有前途的可切换行为;然而,它们的旋转状态相关的光学性质对于光诱导的开关至关重要,迄今为止迄今为止尚未深入研究。这里,在可见的和接近红外地区实验和理论地研究了这种独特的家族的三个代表的单晶的电子吸收光谱。我们确定复合物的颜色主要由硝基氧化物自由基的光学性质决定,而Cu(HFAC)(2)片段有助于近红外范围,强度小于幅度级。在热旋转状态切换时,这些复合物的热致变性主要是由硝基氧化物的吸收带的光谱偏移引起的。在单晶的可见范围中观察到的振动进展以及纯硝基氧化物的溶液通过DFT计算良好地再现,其中C-C拉伸模式控制观察到的进展。近红外区域中单晶的光谱的分析显示了能量的变化和铜(II)DD转换的强度,这通过SoC-Nevpt2计算良好地再现,并欠jahn-的翻转 - 在铜的协调环境中出纳轴。讨论了使用这些吸引力化合物设计双向磁光电开关的进一步策略。

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