论文标题
光解引起的PAHS扰乱是氘存储的机制
Photolysis-induced scrambling of PAHs as a mechanism for deuterium storage
论文作者
论文摘要
目的。我们研究了PAHS作为氘中氘中氘中的作用,并研究紫外线光解是ISM氘分馏的变化中的潜在过程。方法。在FTICR质谱仪中记录了富含D-富集,质子化的蒽和菲离子各种同位素的紫外光诱导的片段化。使用Felix的IRMPD光谱法提供了与DFT振动光谱进行比较的IR光谱。还计算了反应障碍和速率,并与产品丰度相关。结果。 UV和IRMPD光解的质谱都表明,h因[d-c $ _ {14} $ h $ _ {10} $ _] $^+$的损失,而[h-c $ _ {14} $ d $ _ {10} $^+$显示出强烈的D损失。计算表明易于体现的1,2-H和-D偏移反应,其障碍低于光启动过程所提供的能量。加上通过红外光谱确认地面结构,我们确定了2个PAH中的光解过程在很大程度上由在不同的外围C原子之间迁移的位置,在很大程度上控制了H和D原子。 C-H和C-D键之间的零点能量$ 0.1 EV差异最终导致H速度比D扰动更快,与D.结论相比,H原子损失增加。在紫外线辐射下的PAH阳离子中,争夺很常见。在光激发依赖氘的PAHS后,争夺会导致脂肪族d原子迁移到芳族部位的可能性更高,从而保护了原子,从而免受消除。随着PAH朝着更暴露的星际环境发展,这可能导致侵占增加。同样,在独奏站点上具有脂肪族C-HD组的大型紧凑型PAH可能是天文光谱中看到的大多数脂肪族C-D拉伸带。
Aim. We investigate the role of PAHs as a sink for deuterium in the interstellar medium and study UV photolysis as a potential process in the variations of the deuterium fractionation in the ISM. Methods. The UV photo-induced fragmentation of various isotopologues of D-enriched, protonated anthracene and phenanthrene ions was recorded in a FTICR mass spectrometer. IRMPD spectroscopy using FELIX provided the IR spectra that were compared to DFT vibrational spectra; reaction barriers and rates were also calculated and related to the product abundances. Results. The mass spectra for both UV and IRMPD photolysis show the loss of H from [D-C$_{14}$H$_{10}$]$^+$, whereas [H-C$_{14}$D$_{10}$]$^+$ shows a strong preference for D loss. Calculations reveal facile 1,2-H and -D shift reactions, with barriers lower than the energy supplied by the photo-excitation process. Together with confirmation of the ground-state structures via the IR spectra, we determined that the photolytic processes in the 2 PAHs are largely governed by scrambling where the H and the D atoms relocate between different peripheral C atoms. The $\sim$0.1 eV difference in zero-point energy between C-H and C-D bonds ultimately leads to faster H scrambling than D scrambling, and increased H atom loss compared to D. Conclusion. Scrambling is common in PAH cations under UV radiation. Upon photoexcitation of deuterium-enriched PAHs, the scrambling results in a higher probability for the aliphatic D atom to migrate to an aromatic site, protecting it from elimination. This could lead to increased deuteration as a PAH moves towards more exposed interstellar environments. Also, large, compact PAHs with an aliphatic C-HD group on solo sites might be responsible for the majority of aliphatic C-D stretching bands seen in astronomical spectra.