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Ultrafast Multisequential Photochemistry of 5-Diazo Meldrum’s Acid

机译:5-重氮杂色酸的超快速多序列光化学

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We disclose the light-induced dynamics and ultrafast formation of several photoproducts from the manifold of reaction pathways in the photochemistry of 5-diazo Meldrum’s acid (DMA), a photoactive compound used in lithography, by femtosecond mid-infrared transient absorption spectroscopy covering several nanoseconds. After excitation of DMA dissolved in methanol to the second excited state S2, 70% of excited molecules relax back to the S0 ground state. In competing processes, they can undergo an intramolecular Wolff rearrangement to form ketene, which reacts with a solvent molecule to an enol intermediate and further to carboxylate ester, or they first relax to the DMA S1 state, from where they can isomerize to a diazirine and via an intersystem crossing to a triplet carbene. For a reliable identification of the involved compounds, density functional theory calculations on the normal modes and Fourier transform infrared spectroscopy of the reactant and the photoproducts in the chemical equilibrium accompany the analysis of the transient spectra. Additional experiments in ethanol and 2-propanol lead to slight spectral shifts as well as elongated time constants due to steric hindrance in transient spectra connected with the ester formation channel, further substantiating the assignment of the occurring reaction pathways and photoproducts.
机译:我们通过飞秒中飞秒中红外瞬态吸收光谱法揭示了5-重氮Meldrum酸(DMA)(一种用于光刻的光敏化合物)的光化学反应过程中的反应途径中的几种光产物的光诱导动力学和超快形成。 。在将溶解在甲醇中的DMA激发到第二激发态S 2 后,70%的激发分子松弛回到S 0 基态。在竞争过程中,它们可能发生分子内沃尔夫重排以形成烯酮,后者与溶剂分子反应成烯醇中间体并进一步羧化酯,或者它们首先松弛成DMA S 1 状态,在这里它们可以异构化为重氮基并通过系统间相交成三重碳烯。为了可靠地鉴定所涉及的化合物,对化学反应中的反应物和光产物进行正态模式的密度泛函理论计算和傅里叶变换红外光谱,并进行了瞬态光谱分析。在乙醇和2-丙醇中进行的其他实验由于与酯形成通道相关的瞬态光谱中的空间位阻而导致轻微的光谱偏移以及延长的时间常数,从而进一步证实了发生的反应路径和光产物的分配。

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