Fois Ettore, Oriani Mario, Tabacchi Gloria
Department of Science and High Technology, University of Insubria and INSTM UdR Insubria, Via Valleggio 11, I-22100 Como, Italy.
J Chem Phys. 2021 Apr 14;154(14):144304. doi: 10.1063/5.0046118.
Octyl methoxycinnamate (2-ethylhexyl 4-methoxycinnamate, OMC) is a commercial sunscreen known as octinoxate with excellent UVB filter properties. However, it is known to undergo a series of photodegradation processes that decrease its effectiveness as a UVB filter. In particular, the trans (E) form-which is considered so far as the most stable isomer-converts to the cis (Z) form under the effect of light. In this work, by using post-Hartree-Fock approaches [CCSD, CCSD(t), and CCSD + T(CCSD)] on ground state OMC geometries optimized at the MP2 level, we show that the cis and trans forms of the gas-phase OMC molecule have comparable stability. Test calculations on the same structures with a series of dispersion-corrected density functional theory-based approaches including the B2PLYP double hybrid predict the trans structures to be energetically favored, missing the subtle stabilization of cis-OMC. Our results suggest that the cis form is stabilized by intra-molecular dispersion interactions, leading to a folded more compact structure than the trans isomer.
桂皮酸盐(2-乙基己基4-甲氧基肉桂酸酯,OMC)是一种商业防晒剂,被称为桂皮酸盐,具有优异的UVB过滤性能。然而,已知它会经历一系列光降解过程,从而降低其作为UVB过滤器的有效性。特别是,反式(E)形式——迄今为止被认为是最稳定的异构体——在光的作用下会转化为顺式(Z)形式。在这项工作中,通过对在MP2水平优化的基态OMC几何结构使用后哈特里-福克方法[CCSD、CCSD(t)和CCSD + T(CCSD)],我们表明气相OMC分子的顺式和反式形式具有相当的稳定性。使用一系列基于色散校正密度泛函理论的方法(包括B2PLYP双杂化)对相同结构进行的测试计算预测反式结构在能量上更有利,而忽略了顺式-OMC的微妙稳定性。我们的结果表明,顺式形式通过分子内色散相互作用而稳定,导致其结构比反式异构体更紧凑、更折叠。