首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Time-Resolved Femtosecond Stimulated Raman Spectra and DFT Anharmonic Vibrational Analysis of an Electronically Excited Rhenium Photosensitizer
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Time-Resolved Femtosecond Stimulated Raman Spectra and DFT Anharmonic Vibrational Analysis of an Electronically Excited Rhenium Photosensitizer

机译:时间分辨的飞秒刺激拉曼光谱和电子兴奋铼光敏剂的DFT anharmonic振动分析

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摘要

Time-resolved femtosecond stimulated Raman spectra (FSRS) of a prototypical organometallic photosensitizer/photocatalyst ReCl(CO)(3) (2,2'-bipyridine) were measured in a broad spectral range, similar to 40-2000 (4000) cm(-1) at time delays from 40 fs to 4 ns after 400 nm excitation of the lowest allowed electronic transition. Theoretical ground- and excited-state Raman spectra were obtained by anharmonic vibrational analysis using second-order vibrational perturbation theory on vibrations calculated by harmonic approximation at density functional theory-optimized structures. A good match with anharmonically calculated vibrational frequencies allowed for assigning experimental Raman features to particular vibrations. Observed frequency shifts upon excitation (nu(ReCl) and v(CC inter-ring) vibrations upward; nu(CC, CN) and nu(Re-C) downward) are consistent with the bonding/antibonding characters of the highest occupied molecular orbital and the lowest unoccupied molecular orbital involved in excitation and support the delocalized formulation of the lowest triplet state as ReCl(CO)(3) -> bpy charge transfer. FSRS spectra show a mode-specific temporal evolution, providing insights into the intersystem crossing (ISC) mechanism and subsequent relaxation. Most of the Raman features are present at , similar to 40 fs and exhibit small shifts and intensity changes with time. The 1450-1600 cm(-1) group of bands due to CC, CN, and CC (inter-ring) stretching vibrations undergoes extensive restructuring between 40 and similar to 150 fs, followed by frequency upshifts and a biexponential (0.38, 21 ps) area growth, indicating progressing charge separation in the course of the formation and relaxation of the lowest triplet state. Early (40-150 fs) restructuring was also observed in the low-frequency range for nu(Re-Cl) and delta(Re-C-O) vibrations that are presumably activated by ISC. FSRS experimental innovations employed to measure low- and high-energy Raman features simultaneously are described and discussed in detail.
机译:在宽的光谱范围内测量原型有机金属光敏剂/光催化剂RECL(CO)(3)(3)(3)(2,2'-Bi0赖丁)的刺激式拉曼光谱(FSR),类似于40-2000(4000)厘米( -1)在400 nm激励最低允许的电子转换后,在40 fs到4 ns的时间延迟。通过使用密度函数理论优化结构的谐波近似计算的二阶振动扰动理论,通过anhaganconic振动分析获得了理论突出状态拉曼光谱。允许与非机动计算的振动频率进行良好的匹配,将实验拉曼特征分配给特定振动。观察到的频率在激发时(NU(RECL)和V(CC间环)振动向上; NU(CC,CN)和NU(RE-C)向下)与最高占用的分子轨道的粘合/抗抗膦特征一致并且最低的未占用分子轨道涉及激发并支持最低三重态的分层制剂作为RECL(CO)(3) - > BPY电荷转移。 FSRS光谱显示了一种特定于模式的时间演进,提供了进入界面交叉(ISC)机制和随后的放松的见解。大多数拉曼特征都存在,类似于40 fs,并且随着时间的推移表现出小的班次和强度变化。由CC,CN和CC(间环)拉伸振动引起的1450-1600厘米(-1)带经历了40个和类似于150 fs的大量重组,其次是频率升档和Biexponential(0.38,21 ps )区域生长,表明在形成和放松最低三重态的过程中进展电荷分离。在UN(RE-CL)和Δ(RE-C-O)振动的低频范围内也观察到早期(40-150 FS)重组,其可能由ISC激活。使用用于衡量低能量拉曼特征的FSRS实验创新,并详细讨论和讨论。

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