Department of Chemistry, University of York, Heslington YO10 5DD, UK.
Molecules. 2022 Dec 12;27(24):8796. doi: 10.3390/molecules27248796.
Octyl methoxycinnamate (OMC) is a common UVA and UVB filter molecule that is widely used in commercial sunscreens. Here, we used gas-phase laser photodissociation spectroscopy to characterise the intrinsic photostability and photodegradation products of OMC by studying the system in its protonated form, i.e., [OMC·H]. The major photofragments observed were / 179, 161, and 133, corresponding to fragmentation on either side of the ether oxygen of the ester group (/ 179 and 161) or the C-C bond adjacent to the ester carbonyl group. Additional measurements were obtained using higher-energy collisional dissociation mass spectrometry (HCD-MS) to identify fragments that resulted from the breakdown of the vibrationally hot electronic ground state. We found that the / 179 and 161 ions were the main fragments produced by this route. Notably, the / 133 ion was not observed through HCD-MS, revealing that this product ion is only produced through a photochemical route. Our results demonstrate that UV photoexcitation of OMC is able to access a dissociative excited-state surface that uniquely leads to the rupture of the C-C bond adjacent to the key ester carbonyl group.
辛基甲氧基肉桂酸酯(OMC)是一种常见的 UVA 和 UVB 过滤分子,广泛用于商业防晒霜中。在这里,我们使用气相激光光解光谱法通过研究质子化形式的[OMC·H]来表征 OMC 的固有光稳定性和光降解产物。观察到的主要光碎片为/179、161 和 133,分别对应于酯基醚氧(/179 和 161)或酯羰基邻接的 C-C 键两侧的断裂。使用更高能量的碰撞解离质谱法(HCD-MS)获得了其他测量值,以鉴定来自振动热电子基态的分解的碎片。我们发现/179 和 161 离子是通过该途径产生的主要碎片。值得注意的是,/133 离子未通过 HCD-MS 观察到,这表明该产物离子仅通过光化学途径产生。我们的结果表明,OMC 的紫外线光激发能够进入独特地导致关键酯羰基邻接的 C-C 键断裂的离解激发态表面。