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通过直接和多步途径实现水溶液中紫外光激发的对硝基苯酚的高效基态恢复

Efficient Ground-State Recovery of UV-Photoexcited -Nitrophenol in Aqueous Solution by Direct and Multistep Pathways.

作者信息

Ghosh Deborin, Spinlove K Eryn, Greene Hallam J M, Lau Nicholas, Gómez Sandra, Kao Min-Hsien, Whitaker William, Clark Ian P, Malakar Partha, Worth Graham A, Oliver Thomas A A, Fielding Helen H, Orr-Ewing Andrew J

机构信息

School of Chemistry, University of Bristol, Cantock's Close, Bristol BS8 1TS, U.K.

Department of Chemistry, University College London, 20 Gordon Street, London WC1H 0AJ, U.K.

出版信息

J Am Chem Soc. 2024 Nov 6;146(44):30443-30454. doi: 10.1021/jacs.4c10965. Epub 2024 Oct 25.

Abstract

Nitroaromatic compounds are found in brown carbon aerosols emitted to the Earth's atmosphere by biomass burning, and are important organic chromophores for the absorption of solar radiation. Here, transient absorption spectroscopy spanning 100 fs-8 μs is used to explore the pH-dependent photochemical pathways for aqueous solutions of -nitrophenol, chosen as a representative nitroaromatic compound. Broadband ultrafast UV-visible and infrared probes are used to characterize the excited states and intermediate species involved in the multistep photochemistry, and to determine their lifetimes under different pH conditions. The assignment of absorption bands, and the dynamical interpretation of our experimental measurements are supported by computational calculations. After 320 nm photoexcitation to the first bright state, which has ππ* character in the Franck-Condon region, and ultrafast (∼200 fs) structural relaxation in the adiabatic S state to a region with nπ* electronic character, the S -nitrophenol population decays on a time scale of ∼12 ps. This decay involves competition between direct internal conversion to the S state (∼40%) and rapid intersystem crossing to the triplet manifold (∼60%). Population in the T-state decays by excited-state proton transfer (ESPT) to the surrounding water and relaxation of the resulting triplet-state -nitrophenolate anion to its S electronic ground state in ∼5 ns. Reprotonation of the S-state -nitrophenolate anion recovers -nitrophenol in its electronic ground state. Overall recovery of the S state of aqueous -nitrophenol via these competing pathways is close to 100% efficient. The experimental observations help to explain why nitroaromatic compounds such as -nitrophenol resist photo-oxidative degradation in the environment.

摘要

硝基芳香族化合物存在于生物质燃烧排放到地球大气中的棕碳气溶胶中,是吸收太阳辐射的重要有机发色团。在此,采用跨度为100飞秒至8微秒的瞬态吸收光谱法,研究了作为代表性硝基芳香族化合物的对硝基苯酚水溶液中依赖pH值的光化学途径。使用宽带超快紫外可见和红外探针来表征多步光化学过程中涉及的激发态和中间物种,并确定它们在不同pH条件下的寿命。吸收带的归属以及对我们实验测量的动力学解释得到了计算计算的支持。在320纳米光激发到第一个明亮态后,该态在弗兰克-康登区域具有ππ特征,并在绝热S态中超快(约200飞秒)结构弛豫到具有nπ电子特征的区域,对硝基苯酚的S态布居在约12皮秒的时间尺度上衰减。这种衰减涉及直接内转换到S态(约40%)和快速系间窜越到三重态流形(约60%)之间的竞争。T态中的布居通过激发态质子转移(ESPT)到周围的水,并使产生的三重态对硝基苯酚阴离子在约5纳秒内弛豫到其S电子基态。S态对硝基苯酚阴离子的再质子化使其在电子基态中恢复为对硝基苯酚。通过这些竞争途径,对硝基苯酚水溶液S态的总体恢复效率接近100%。这些实验观察结果有助于解释为什么对硝基苯酚等硝基芳香族化合物在环境中抵抗光氧化降解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3964/11544619/53a133b94ea2/ja4c10965_0001.jpg

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