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利用二维红外光谱研究氰基桥联过渡金属混合价态配合物中的振动非谐耦合。

Investigating vibrational anharmonic couplings in cyanide-bridged transition metal mixed valence complexes using two-dimensional infrared spectroscopy.

机构信息

Department of Chemistry, University of Washington, Box 351700, Seattle, Washington 98195, USA.

出版信息

J Chem Phys. 2014 Feb 28;140(8):084505. doi: 10.1063/1.4866294.

DOI:10.1063/1.4866294
PMID:24588183
Abstract

Using polarization-selective two-dimensional infrared (2D IR) spectroscopy, we measure anharmonic couplings and angles between the transition dipole moments of the four cyanide stretching (νCN) vibrations found in (NH3)5Ru(III)NCFe(II)(CN)5 (FeRu) dissolved in D2O and formamide and (NC)5Fe(II)CNPt(IV)(NH3)4NCFe(II)(CN)5 (FePtFe) dissolved in D2O. These cyanide-bridged transition metal complexes serve as model systems for studying the role of high frequency vibrational modes in ultrafast photoinduced charge transfer reactions. Here, we focus on the spectroscopy of the νCN modes in the electronic ground state. The FTIR spectra of the νCN modes of the bimetallic and trimetallic systems are strikingly different in terms of frequencies, amplitudes, and lineshapes. The experimental 2D IR spectra of FeRu and FePtFe and their fits reveal a set of weakly coupled anharmonic νCN modes. The vibrational mode anharmonicities of the individual νCN modes range from 14 to 28 cm(-1). The mixed-mode anharmonicities range from 2 to 14 cm(-1). In general, the bridging νCN mode is most weakly coupled to the radial νCN mode, which involves the terminal CN ligands. Measurement of the relative transition dipole moments of the four νCN modes reveal that the FeRu molecule is almost linear in solution when dissolved in formamide, but it assumes a bent geometry when dissolved in D2O. The νCN modes are modelled as bilinearly coupled anharmonic oscillators with an average coupling constant of 6 cm(-1). This study elucidates the role of the solvent in modulating the molecular geometry and the anharmonic vibrational couplings between the νCN modes in cyanide-bridged transition metal mixed valence complexes.

摘要

使用偏振选择二维红外(2D IR)光谱,我们测量了在溶解于 D2O 和甲酰胺的(NH3)5Ru(III)NCFe(II)(CN)5(FeRu)和溶解于 D2O 的(NC)5Fe(II)CNPt(IV)(NH3)4NCFe(II)(CN)5(FePtFe)中发现的四个氰化物伸缩(νCN)振动的非谐耦合和跃迁偶极矩之间的角度。这些氰化物桥连过渡金属配合物可用作研究高频振动模式在超快光致电荷转移反应中的作用的模型系统。在这里,我们专注于电子基态中νCN 模式的光谱。双金属和三金属体系的 νCN 模式的 FTIR 光谱在频率、幅度和线形状方面差异显著。FeRu 和 FePtFe 的实验 2D IR 光谱及其拟合结果揭示了一组弱耦合的非谐 νCN 模式。单个 νCN 模式的振动模式非谐性范围为 14 至 28 cm(-1)。混合模式非谐性范围为 2 至 14 cm(-1)。一般来说,桥接 νCN 模式与涉及末端 CN 配体的径向 νCN 模式耦合最弱。对四个 νCN 模式的相对跃迁偶极矩的测量表明,当溶解于甲酰胺时,FeRu 分子在溶液中几乎呈线性,但当溶解于 D2O 时,它呈现弯曲的几何形状。νCN 模式被建模为具有平均耦合常数为 6 cm(-1)的双线性耦合非谐振荡器。这项研究阐明了溶剂在调节分子几何形状和氰化物桥连过渡金属混合价配合物中 νCN 模式之间的非谐振动耦合中的作用。

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