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Photochemistry of Nitrophenol Molecules and Clusters: Intra- vs Intermolecular Hydrogen Bond Dynamics

机译:硝基苯酚分子和团簇的光化学:分子内与分子间氢键动力学

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We investigate both experimentally and theoretically the structure and photodynamics of nitrophenol molecules and clusters, addressing the question how the molecular photodynamics can be controlled by specific inter- and intramolecular interactions. Using quantum chemical calculations, we demonstrate the structural and energetic differences between clusters of 2-nitrophenol and 4-nitrophenol, using phenol as a reference system. The calculated structures are supported by mass spectrometry. The mass spectra of 2-nitrophenol clusters provide an evidence for a stacked structure compared to a strong O-H center dot center dot center dot O hydrogen bonding for 4-nitrophenol aggregates. We further investigate the photodynamics of nitrophenol molecules and clusters by means of velocity map imaging of the H-fragment generated upon 243 nm photodissociation. The experiments are complemented by ab initio calculations which demonstrate distinct photophysics of phenol, 2-nitrophenol, 4-nitrophenol. The measured H-fragment kinetic energy distributions (KEDs) from 2-nitrophenol molecules are compared to the KEDs from phenol. The comparison points to the intramolecular O-H center dot center dot center dot O hydrogen bond in 2-nitrophenol, stimulating fast internal conversion into the ground electronic state. This reaction channel is marked by exclusive appearance of slow statistical hydrogen fragments in 2-nitrophenol, which contrasts with fast hydrogen atoms observed for phenol. The photodissociation of 2-nitrophenol clusters yields a fraction of H-fragments with higher kinetic energies than the isolated molecules. These fragments originate from the caging effect in the clusters leading to multiphoton dissociation of molecules excited by the previous photons. We also propose a new ab initio based value for the O H bond dissociation enthalpy in 2-nitrophenol (4.25 eV), which is in excellent agreement with the maximum measured H-fragment kinetic energy.
机译:我们在实验和理论上都研究了硝基酚分子和簇的结构和光动力学,解决了如何通过特定的分子间和分子内相互作用来控制分子光动力学的问题。使用量子化学计算,我们以苯酚为参考体系证明了2-硝基苯酚和4-硝基苯酚簇之间的结构和能量差异。质谱支持计算的结构。与4-硝基苯酚聚集体的强O-H中心点中心点中心点O氢键相比,2-硝基苯酚簇的质谱图为堆叠结构提供了证据。我们进一步研究了通过243 nm光解离产生的H片段的速度图成像技术对硝基苯酚分子和簇的光动力学。从头算起就对实验进行了补充,从头算起了苯酚,2-硝基苯酚,4-硝基苯酚的光物理性质。将2-硝基苯酚分子的测得的H片段动能分布(KED)与苯酚的KED进行比较。比较指向2-硝基苯酚中的分子内O-H中心点中心点中心点O氢键,刺激了内部快速转变成基态电子态。该反应通道的特征是在2-硝基苯酚中仅出现缓慢的统计氢碎片,这与苯酚中观察到的快速氢原子形成鲜明对比。 2-硝基苯酚团簇的光解离产生一部分H片段,其动能比分离的分子高。这些片段源自簇中的笼蔽效应,导致先前光子激发的分子发生多光子解离。我们还为2-硝基苯酚中的O H键离解焓提出了一个新的从头算的值(4.25 eV),该值与测得的H片段动能最大值非常吻合。

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