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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Spectroscopic effects resulting from interacting singlet and triplet excited states: vibronic structure involving the O-H stretching mode in d-d absorption bands of Ni(H2O)(6)(2+)
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Spectroscopic effects resulting from interacting singlet and triplet excited states: vibronic structure involving the O-H stretching mode in d-d absorption bands of Ni(H2O)(6)(2+)

机译:单线态和三线态激发态相互作用产生的光谱效应:Ni(H2O)(6)(2+)d-d吸收带中涉及O-H拉伸模式的振动电子结构

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The ligand-field absorption spectrum of the Ni(H2O)(6)(2+) cation has been thoroughly measured and analyzed over the past sixty years, often on crystals with low symmetry at the metal site, and its absorption band maxima have been used as a benchmark for increasingly sophisticated electronic structure calculations over the last decades. We present variable-temperature absorption spectra measured on crystals with cubic T-h symmetry at the site of the nickel(II) cation. This high site symmetry is confirmed for CsNi-(H2O)(6)PO4 by X-ray diffraction and allows for a direct comparison with ligand-field calculations in T-h symmetry, at the basis of an analysis of the vibronic structure in the energy range of the lowest-energy spin-forbidden transition, the "red" or middle band of the spectrum. This spectroscopic region displays effects of strong interactions between singlet and triplet excited states, influencing intensities and vibronic structure. A particular feature that has not been analyzed in detail is a clearly discernible vibronic progression involving the O-H stretching mode on the high-energy side of the absorption band. A quantitative model is presented and applied in order to rationalize this unusual effect, originating from coupling between normal coordinates, to the best of our knowledge the first analysis of this distinct spectroscopic feature arising from interacting excited states.
机译:在过去的六十年中,Ni(H2O)(6)(2+)阳离子的配体场吸收光谱已被彻底测量和分析,通常在金属位点上具有低对称性的晶体上,并且其吸收带最大值已达到在过去的几十年中,它用作越来越复杂的电子结构计算的基准。我们提出了在镍(II)阳离子的位置具有立方T h对称性的晶体上测量的可变温度吸收光谱。 X射线衍射证实了CsNi-(H2O)(6)PO4的这种高位对称性,并且可以在能量范围内对振动子结构进行分析的基础上,与Th对称性中的配体场计算进行直接比较。能量最低的自旋禁止跃迁的“红色”或光谱的中带。该光谱区域显示出单重态和三重态激发态之间强烈相互作用的影响,从而影响强度和振动结构。尚未详细分析的一个特定特征是,在吸收带的高能侧,O-H拉伸模式涉及到清晰可辨的振动。为了合理化这种源自正常坐标之间耦合的异常效应,我们提出了一个定量模型,并据我们所知,首先对相互作用的激发态引起的这种独特的光谱特征进行了首次分析。

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