首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Femtosecond dynamics of the ring closing process of diarylethene: A case study of electrocyclic reactions in photochromic single crystals
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Femtosecond dynamics of the ring closing process of diarylethene: A case study of electrocyclic reactions in photochromic single crystals

机译:二芳基乙烯闭环过程的飞秒动力学:以光致变色单晶体中的电环反应为例

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摘要

The cyclization reaction of the photochromic diarylethene derivative 1,2-bis(2,4-dimethyl-5-phenyl-3-thienyl)perfluorocyclopentene was studied in its single crystal phase with femtosecond transient absorption spectroscopy. The transient absorption measurements were performed with a robust acquisition scheme that explicitly exploits the photoreversibility of the molecular system and monitors the reversibility conditions. The crystalline system demonstrated 3 × 104 repeatable cycles before significant degradation was observed. Immediately following photoexcitation, the excited state absorption associated with the open-ring conformation undergoes a large spectral shift with a time constant of approximately 200 fs. Following this evolution on the excited state potential energy surface, the ring closure occurs with a time constant of 5.3 ps, which is significantly slower than previously reported measurements for similar derivatives in the solution phase. Time resolved electron diffraction studies were used to further demonstrate the assignment of the transient absorption dynamics to the ring closing reaction. The mechanistic details of the ring closing are discussed in the context of prior computational work along with a vibrational mode analysis using density functional theory to give some insight into the primary motions involved in the ring closing reaction.
机译:用飞秒瞬态吸收光谱法研究了光致变色二芳基乙烯衍生物1,2-双(2,4-二甲基-5-苯基-3-噻吩基)全氟环戊烯的环化反应。瞬态吸收测量是通过强大的采集方案执行的,该方案明确利用了分子系统的光可逆性并监控了可逆性条件。在观察到显着降解之前,结晶体系显示出3×104个可重复的循环。光激发后,与开环构象相关的激发态吸收立即发生大的光谱偏移,其时间常数约为200 fs。在激发态势能表面上发生这种演化之后,以5.3 ps的时间常数发生闭环,这比先前报道的溶液相中类似衍生物的测量速度要慢得多。时间分辨电子衍射研究用于进一步证明瞬态吸收动力学对闭环反应的分配。在先前的计算工作以及使用密度泛函理论的振动模式分析的背景下,对闭环的机械细节进行了讨论,从而对闭环反应中涉及的主要运动提供了一些见识。

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