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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Development of a femtosecond time-resolved near-IR multiplex stimulated Raman spectrometer in resonance with transitions in the 900-1550 nm region
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Development of a femtosecond time-resolved near-IR multiplex stimulated Raman spectrometer in resonance with transitions in the 900-1550 nm region

机译:飞秒时间分辨近红外多重激发拉曼光谱仪的开发,该光谱在900-1550 nm范围内具有跃迁共振

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摘要

Charge transfer and charge delocalisation processes play key roles in the functions of large biomolecular systems and organic/inorganic devices. Many of the short-lived transients involved in these processes can be sensitively detected by monitoring their low-energy electronic transitions in the near-IR region. Ultrafast time-resolved near-IR Raman spectroscopy is a promising tool for investigating the structural dynamics of the short-lived transients as well as their electronic dynamics. In this study, we have developed a femtosecond time-resolved near-IR multiplex stimulated Raman spectrometer using the Raman pump pulse at 1190 nm and a broadband probe pulse covering the 900-1550 nm region. Spectral and temporal instrument responses of the spectrometer are estimated to be 5 cm(-1) and 120 fs, respectively. Time-resolved near-IR stimulated Raman spectra of poly(3-dodecylthiophene) (P3DDT) are recorded in toluene solution for investigating its structural changes following the photoexcitation. The spectra strongly indicate conformational changes of P3DDT in excited states associated with the elongation of its effective conjugation length. The results on P3DDT fully demonstrate the effectiveness of the newly developed femtosecond time-resolved near-IR stimulated Raman spectrometer.
机译:电荷转移和电荷离域过程在大型生物分子系统和有机/无机设备的功能中起着关键作用。通过监测近红外区域中的低能电子跃迁,可以灵敏地检测到这些过程中涉及的许多短暂瞬变。具有超快时间分辨能力的近红外拉曼光谱仪是研究短时瞬态的结构动力学及其电子动力学的有前途的工具。在这项研究中,我们使用1190 nm的拉曼泵浦脉冲和覆盖900-1550 nm区域的宽带探测脉冲,开发了飞秒时间分辨的近红外多路激发拉曼光谱仪。光谱仪的光谱和时间仪器响应估计分别为5 cm(-1)和120 fs。在甲苯溶液中记录聚(3-十二烷基噻吩)(P3DDT)的时间分辨近红外激发拉曼光谱,以研究其在光激发后的结构变化。光谱强烈表明,P3DDT在激发态的构象变化与有效共轭长度的延长有关。 P3DDT上的结果充分证明了新开发的飞秒时间分辨近红外激发拉曼光谱仪的有效性。

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