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首页> 外文期刊>The Journal of Chemical Physics >Ultrafast 2DIR spectroscopy of ferric azide precursors for high-valent iron. Vibrational relaxation, spectral diffusion, and dynamic symmetry breaking
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Ultrafast 2DIR spectroscopy of ferric azide precursors for high-valent iron. Vibrational relaxation, spectral diffusion, and dynamic symmetry breaking

机译:叠氮化铁前体用于高价铁的超快2DIR光谱。振动松弛,频谱扩散和动态对称破坏

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摘要

Femtosecond mid-infrared pump-probe and two-dimensional mid-infrared spectroscopy have been used to investigate the dynamics of vibrational relaxation and vibrational spectral diffusion of the asymmetric N-3-stretching vibration of pseudo-octahedral azidoiron(m) complexes, [L6-nFe(N-3)(n)](+) with n = 1 or 2 and L being an auxiliary ligand of denticity 6-n, in acetonitrile at room temperature. Compared to the free azide anion in acetonitrile solution, the vibrational relaxation dynamics are considerably accelerated. Vibrational energy transfer to the solvent is accelerated by virtue of a resonance with an overtone transition of the solvent. Intramolecular vibrational redistribution is found to be accelerated by virtue of a coupling between the initial azide stretching vibration and the torsional modes involving the axial ligands. Vibrational spectral diffusion within the asymmetric N3-stretching resonance was found to be insensitive to solvent fluctuations because the axial azide ligands are only partially accessible to the solvent. The particular role of intramolecular structural relaxations of the complex for shaping the linear and nonlinear two-dimensional infrared spectra is discussed in terms of ultrafast symmetry-breaking torsional fluctuations and on the basis of density functional theory calculations. (C) 2015 AIP Publishing LLC.
机译:飞秒中红外泵浦探针和二维中红外光谱已用于研究伪八面体叠氮铁(m)配合物的不对称N-3-拉伸振动的振动弛豫和振动谱扩散动力学,[L6 -nFe(N-3)(n)](+),其中n = 1或2,L为室温下乙腈中密度为6-n的辅助配体。与乙腈溶液中的游离叠氮化物阴离子相比,振动弛豫动力学得到了显着加速。通过与溶剂的泛音跃迁的共振,加速了向溶剂的振动能量转移。发现分子内振动的重新分布借助于初始叠氮化物拉伸振动和涉及轴向配体的扭转模式之间的耦合而加速。由于轴向叠氮化物配体仅部分可被溶剂利用,因此发现在不对称N3拉伸共振中的振动光谱扩散对溶剂波动不敏感。讨论了复合物的分子内结构弛豫对线性和非线性二维红外光谱成形的特殊作用,涉及的是超快对称断裂扭转涨落,并基于密度泛函理论计算。 (C)2015 AIP Publishing LLC。

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