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首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Early photochemical dynamics of organometallic compounds studied by ultrafast time-resolved spectroscopic techniques
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Early photochemical dynamics of organometallic compounds studied by ultrafast time-resolved spectroscopic techniques

机译:超快时间分辨光谱技术研究有机金属化合物的早期光化学动力学

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Time-resolved spectroscopic techniques operating on a femtosecond-picosecond time scale are used to investigate mechanisms and dynamics of the earliest stages of photochemical reactions of organometallic compounds, as well as the composition and structure of the excited states and photointermediates involved. A deep insight into the following ultrafast photochemical reactions: (i) Cr-CO bond dissociation in [Cr(CO)(4)(bpy)], (ii) dissociative isomerisation of [Mn(Br)(CO)(3)(alpha-diimine)] and (iii) interligand electron transfer in [Re(MQ(+))(CO)(3)(dmb)](2+) has been obtained by combining time-resolved visible and IR absorption, resonance Raman and fluorescence spectroscopic techniques. In each case, it is demonstrated what kind of information individual approaches provide and how the photochemical mechanism can be deduced. The operating principles of these ultrafast spectroscopic techniques are briefly explained, together with descriptions of the experimental setups used for the above mentioned studies. [References: 83]
机译:使用飞秒级至皮秒级的时间分辨光谱技术研究有机金属化合物光化学反应最早阶段的机理和动力学,以及所涉及的激发态和光中间体的组成和结构。对以下超快速光化学反应的深入了解:(i)[Cr(CO)(4)(bpy)]中的Cr-CO键解离,(ii)[Mn(Br)(CO)(3)( [Re(MQ(+))(CO)(3)(dmb)](2+)中的配位体电子转移是通过结合时间分辨的可见光和IR吸收,共振拉曼获得的和荧光光谱技术。在每种情况下,都证明了各个方法可以提供什么样的信息,以及如何推导光化学机理。简要解释了这些超快光谱技术的操作原理,并描述了用于上述研究的实验装置。 [参考:83]

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