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Coherent Vibrational Wavepacket Dynamics in Platinum(II) Dimers and Their Implications

机译:铂(II)二聚体中的相干振动波斩波动力学及其含义

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Vibrational coherence in the metal-metal-toligand-charge transfer (MMLCT) excited state of cyclometalated platinum dimers with a pseudo C-2 symmetry was investigated where two nearly degenerate transitions from the highest occupied molecular orbital (metal-metal sigma* orbital) to higher energy ligand pi* orbitals could be simultaneously induced. We observed oscillatory features in femtosecond degenerate transient absorption (TA) signals from complexes [(ppy)Pt(mu-(t)Bu(2)pz)](2) (1) and anti-[ppy)Pt(mu-pyt)](2) (2), which are attributed to coherent nuclear motions that modulate the HOMO (antibonding sigma* energy level, and hence, the energy for the MMLCT transition. The characteristics of such coherent nuclear motions, such as the oscillatory frequency and the dephasing time, differ between 1 and 2 and are explained by mainly two structural factors that could influence the vibrational coherence: the Pt-Pt distance (2.97 angstrom for 1 vs 2.85 angstrom for 2) and molecular shape (1 in an "A" frame vs 2 in an "H" frame). Because the electronic coupling between the two Pt atoms determines the energy splitting of the bonding sigma and antibonding sigma* orbital, the Pt-Pt stretching mode coupled to the MMLCT transition changes the inter Pt distance from that of the ground state. Interestingly, while 1 shows a single Pt-Pt stretching frequency of 120 cm(-1) in the MMLCT state, 2 exhibits multiple downshifted frequencies (80 and 105 cm(-1)) in the MMLCT state along with a shorter vibrational dephasing time than 1. Based on the ground state optimized structures and Raman calculations, the changes evident in the vibrational wavepacket dynamics in 2 are closely correlated with the "H" framed geometry in 2 compared to the "A" frame in 1, leading to the sharp increase in pi-pi interaction between ppy ligands. Although the TA experiments do not directly reveal the ultrafast intersystem crossing (ISC) because of a strong coherent spike at early time scales, the dependence of the vibrational wavepacket dynamics on molecular geometry can be understood based on previously proposed potential energy surfaces as a function of Pt-Pt distance, suggesting that the interaction between the cyclometalating ligands can be a key factor in determining the Pt-Pt shortening and the related energy relaxation dynamics in the Pt(II) dimers. Further experiments using femtosecond broadband TA and X-ray scattering spectroscopy are planned to investigate directly the ISC and Pt-Pt contraction to support the relationship between ground state molecular geometry and photoinduced structural changes in the Pt(II) dimers.
机译:研究了金属 - 金属 - 耐溶荷荷荷(MMLCT)与伪C-2对称性的环状铂二聚体的激发态的振动连贯性,其中来自最高占用的分子轨道(金属 - 金属Sigma *轨道)的两个几乎简化的过渡可以同时诱导更高的能量配体PI *轨道。我们观察了来自复合物的飞秒末端吸收(Ta)信号的振荡特征[(ppy)pt(mu-(t)bu(2)pz)](2)(1)和抗[ppy)pt(mu-pyt )](2)(2)归因于调节HOMO的相干核动作(抗邻接Sigma *能级,因此,MMLCT转换的能量。这种相干核动作的特征,例如振荡频率和相当于1和2之间的差异,并且主要通过两个结构因素来解释,这可能影响振动相干性:Pt-Pt距离(2.97埃为1 Vs 2.85埃2)和分子形状(1) “H”帧中的帧VS 2)。因为两个PT原子之间的电子耦合决定了粘合Sigma和抗抗体σ*轨道的能量分裂,所以耦合到MMLCT转换的PT-PT拉伸模式改变了帧间PT与地面态的距离。有趣的是,而1显示单个Pt-Pt伸展MMLCT状态下的120cm(-1)的频率,2在MMLCT状态下呈现多个下游频率(80和105cm(-1)),以及较短的振动相当时间而不是1.基于接地状态优化结构和拉曼计算,与1中的“a”框架相比,振动波斩波动力学中的变化与2中的“H”框架几何形状紧密相关,导致PPY配体之间的PI-PI相互作用的急剧增加。虽然TA实验没有直接揭示超速率的跨越式交叉(ISC),因为在早期的时间尺度处于强烈的相干峰值,但可以基于先前提出的潜在能量表面来理解振动波斩波动力学对分子几何体的依赖性Pt-Pt距离,表明环荷载配体之间的相互作用可以是确定PT-PT缩短和PT(II)二聚体中的相关能量松弛动态的关键因素。利用飞秒宽带TA和X射线散射光谱的进一步实验计划直接调查ISC和PT-PT收缩以支持PT(II)二聚体中的地位分子几何形状和光突出的结构变化之间的关系。

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