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Energy transport via coordination bonds

机译:通过协调债券进行能源运输

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Vibrational energy transport in transition metal complexes involves stages where energy crosses relatively weak coordination bonds between a coordinated metal atom and the ligands. Understanding the energy transport rules on a molecular level is fundamentally important; it is also essential in relation to a recently proposed structural method, the relaxation-assisted two-dimensional infrared (RA 2DIR) technique, where the vibrational population transport time across the molecule of interest is linked to the transport distance. In this study we report on the energy transport across coordination bonds in tetraethylammonium bis(maleonitriledithiolate iron(III)nitrosyl complex, studied using dual-frequency RA 2DIR spectroscopy. Three mode pairs, C≡N and N=O, N=O and C≡N, and N=O and C–C, were interrogated. All three cross-peaks show substantial amplification due to vibrational energy transport from the initially excited mode toward the “probed” mode, including a record amplification of 27-fold observed for the C≡N/N=O cross-peak. A ninefold amplification measured for the N =O/C≡N cross-peak, where the “probed” CN mode has higher frequency than the initially excited NO, proves unequivocally that the excitation of the “probed” mode via energy transport is not essential for observing stronger cross-peaks and that lower frequency modes serve as the energy accepting modes. A simple modeling of the energy transport is presented highlighting the role of a spatial overlap of the interacting modes. The observed strong cross-peak amplifications and a correlation between the energy transport time and the intermode distance, the distance between atom pairs on which vibrational excitations predominantly reside, demonstrate an applicability of the RA 2DIR method for structural interrogation of transition metal complexes.
机译:过渡金属络合物中的振动能量传递涉及能量穿过配位金属原子与配体之间相对弱的配位键的阶段。从分子水平理解能量传输规则至关重要。对于最近提出的结构方法(弛豫辅助二维红外(RA 2DIR)技术)而言,这也是必不可少的,在该方法中,穿过目标分子的振动总体传输时间与传输距离相关。在这项研究中,我们报告了双(顺丁烯二硫氰酸铁(III)亚硝酰基)四乙基铵络合物中配位键之间的能量传输,使用双频RA 2DIR光谱法进行了研究。 three N,N = O和C–C,所有三个交叉峰均显示出显着的放大,这是由于振动能量从最初的激发模式向“探测”模式传递,包括记录的27倍的放大记录。 C = N / N = O交叉峰,对于N = O / C = N交叉峰,测量了九倍的放大倍数,其中“探查” CN模式的频率比最初激发的NO高,这无疑证明了激发通过能量传输的“探查”模式对观察更强的交叉峰不是必不可少的,而低频模式可以用作能量接收模式,并给出了一个简单的能量传输模型,突出了相互作用模式在空间上的重叠作用。观察到的强cr峰峰值放大以及能量传输时间与模间距离之间的相关性(模态距离之间主要是振动激发所驻留的原子对之间的距离)证明了RA 2DIR方法在过渡金属配合物结构询问中的适用性。

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