A systematic approach to methyl cinnamate photodynamics

A systematic approach to methyl cinnamate photodynamics
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DOI:
10.1080/00268976.2020.1811910
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发表时间:
2020-09-01
期刊:
影响因子:
1.7
通讯作者:
Stavros, Vasilios G.
Stavros, Vasilios G.
中科院分区:
化学4区
文献类型:
--
作者:
Krokidi, Konstantina M.;Turner, Matthew A. P.;Stavros, Vasilios G.

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肉桂酸甲酯(MC)是肉桂酸酯家族中的酯。最近的时间分辨气相研究表明,在激发到其第一个单重态pi pi*(1(1)pi pi*)状态时,在10 ps内有初始衰变到最低单重态(1)n pi*(1(1)n pi*)状态,途中trans-cisosomerisation。在本研究中,我们已经实施了时间分辨离子产额(TR-IY)和时间分辨光电子能谱(TR-PES)实验在气相中,以精确地确定1(1)π π * 状态的寿命。我们发现,使用TR-IY和TR-PES,这种寿命类似于4.5 ps。MC还研究了在一个更复杂的环己烷溶液环境中,使用瞬态电子吸收光谱。沿着补充稳态辐射和(1)H NMR研究,这些研究表明,在更复杂的环己烷溶液环境中,反式异构化被保留。
Methyl cinnamate (MC) is an ester within the cinnamate family. Recent time-resolved gas-phase studies have suggested that upon excitation to its first singlet pi pi* (1(1)pi pi*) state, there is initial decay to the lowest lying singlet(1)n pi* (1(1)n pi*) state within 10 ps, en route totrans-cisisomerisation. In the present study, we have implemented time-resolved ion yield (TR-IY) and time-resolved photoelectron spectroscopy (TR-PES) experiments in the gas-phase to precisely determine the lifetime of the 1(1)pi pi* state. We found this lifetime to be similar to 4.5 ps using both TR-IY and TR-PES. MC was also studied in a more complex cyclohexane solution environment, using transient electronic absorption spectroscopy. Along with complementary steady-state irradiation and(1)H NMR studies, these studies demonstrate thattrans-cisisomerisation is preserved in the more complex, cyclohexane solution environment.