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Excited‐State Intramolecular Charge‐Transfer Dynamics in 4‐Dimethylamino‐4′‐cyanodiphenylacetylene: An Ultrafast Raman Loss Spectroscopic Perspective

机译:4-二甲氨基-4′-氰基二苯乙炔的激发态分子内电荷转移动力学:超快拉曼损耗光谱视角

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Abstract Photo‐initiated intramolecular charge transfer (ICT) processes play a pivotal role in the excited state reaction dynamics in donor‐bridge‐acceptor systems. The efficacy of such a process can be improved by modifying the extent of π‐conjugation, relative orientation/twists of the donor/acceptor entities and polarity of the environment. Herein, 4‐dimethylamino‐4′‐cyanodiphenylacetylene (DACN‐DPA), a typical donor‐π‐bridge‐acceptor system, was chosen to unravel the role of various internal coordinates that govern the extent of photo‐initiated ICT dynamics. Transient absorption (TA) spectra of DACN‐DPA in n‐hexane exhibit a lifetime of >2 ns indicating the formation of a triplet state while, in acetonitrile, a short time‐constant of ∼2 ps indicates the formation of charge transferred species. Ultrafast Raman loss spectroscopy (URLS) measurements show distinct temporal and spectral dynamics of Raman bands associated with C≡C and C=C stretching vibrations. The appearance of a new band at ∼1492 cm−1 in acetonitrile clearly indicates structural modification during the ultrafast ICT process. Furthermore, these observations are supported by TD‐DFT computations.
机译:抽象照片发起了分子内的电荷转移(ICT)过程中发挥关键作用激发态反应动力学捐赠量桥的受体系统。这样一个过程可以通过修改提高π共轭应承担的,相对的取向/扭曲供体/受体的实体和环境的极性。系统中,被选为解开各种各样的角色内部协调管理的程度照片发起ICT动力学。吸收(TA)光谱DACN DPA应承担的n己烷展览的一生> 2 ns表示组建一个三重态,乙腈,一个短的时间常数∼2 ps表明形成的电荷转移物种。测量显示不同的时间和光谱拉曼动力学乐队与C≡C和C = C伸展振动。新乐队在乙腈∼1492厘米−1清楚表明在结构修改超快的ICT的过程。观察支持TD DFT计算。

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