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通过超快瞬态吸收各向异性研究双金属配合物中金属-金属到配体-电荷转移激发态的相干性。

Coherence in metal-metal-to-ligand-charge-transfer excited states of a dimetallic complex investigated by ultrafast transient absorption anisotropy.

机构信息

Chemical Sciences and Engineering Division, Argonne National Laboratory, Argonne, Illinois 60439, United States.

出版信息

J Phys Chem A. 2011 Apr 28;115(16):3990-6. doi: 10.1021/jp109174f. Epub 2011 Mar 1.

DOI:10.1021/jp109174f
PMID:21361265
Abstract

Coherence in the metal-metal-to-ligand-charge transfer (MMLCT) excited state of diplatinum molecule Pt(ppy)(μ-(t)Bu(2)pz) has been investigated through the observed oscillatory features and their corresponding frequencies as well as polarization dependence in the single-wavelength transient absorption (TA) anisotropy signals. Anticorrelated parallel and perpendicular TA signals with respect to the excitation polarization direction were captured, while minimal oscillatory features were observed in the magic angle TA signal. The combined analysis of the experimental results coupled with those previous calculated in the literature maps out a plausible excited state trajectory on the potential energy surface, suggesting that (1) the two energetically close MMLCT excited states due to the symmetry of the molecule may be electronically and coherently coupled with the charge density shifting back and forth between the two phenylpyridine (ppy) ligands, (2) the electronic coupling strength in the (1)MMLCT and (3)MMLCT states may be extracted from the oscillation frequencies of the TA signals to be 160 and 55 cm(-1), respectively, (3) a stepwise intersystem crossing cascades follows (1)MMLCT → (3)MMLCT (T(1b)) → (3)MMLCT (T(1a)), and (4) a possible electronic coherence can be modulated via the Pt-Pt σ-interactions over a picosecond and survive the first step of intersystem crossing. Future experiments are in progress to further investigate the origin of the oscillatory features. These experimental observations may have general implications in design of multimetal center complexes for photoactivated reactions where coherence in the excited states may facilitate directional charge or energy transfer along a certain direction between different parts of a molecule.

摘要

通过观察单波长瞬态吸收(TA)各向异性信号中的振荡特征及其相应频率和偏振依赖性,研究了二铂分子Pt(ppy)(μ-(t)Bu(2)pz)中金属-金属到配体电荷转移(MMLCT)激发态的相干性。捕获到相对于激发偏振方向的反相关平行和垂直 TA 信号,而在魔法角 TA 信号中观察到最小的振荡特征。实验结果的综合分析以及文献中以前计算的结果描绘了势能表面上可能的激发态轨迹,表明 (1) 由于分子的对称性,两个能量相近的 MMLCT 激发态可能在电子和相干上与两个苯并吡啶(ppy)配体之间的电荷密度来回移动相耦合,(2) (1)MMLCT 和 (3)MMLCT 态中的电子耦合强度可以从 TA 信号的振荡频率中提取,分别为 160 和 55 cm(-1),(3) 随后是逐步的系间窜越级联(1)MMLCT → (3)MMLCT (T(1b)) → (3)MMLCT (T(1a)),以及 (4) 可能通过铂-铂σ相互作用在皮秒范围内调制电子相干性,并在第一步系间窜越中存活。未来的实验正在进行中,以进一步研究振荡特征的起源。这些实验观察可能对设计用于光激活反应的多金属中心配合物具有普遍意义,其中激发态中的相干性可能有助于分子不同部分之间沿某个方向的定向电荷或能量转移。

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