Sa'adeh Hanan, Prince Kevin C, Richter Robert, Vasilyev Vladislav, Chong Delano P, Wang Feng
Department of Physics, The University of Jordan, Amman, 11942, Jordan.
Elettra Sincrotrone Trieste, in Area Science Park, 34149 Basovizza, Trieste, Italy.
Phys Chem Chem Phys. 2023 Apr 12;25(15):10946-10955. doi: 10.1039/d2cp05810c.
We have investigated the electronic structure of isolated molecules of paracetamol, aspirin and ibuprofen using computational methods and benchmarked the results against valence and core photoelectron spectra. Paracetamol, aspirin and ibuprofen exist as multiple conformers, and we have calculated the free energies and populations of the lowest energy conformers. We find generally good agreement with previous experimental and theoretical structural results. The valence band spectrum of gas phase aspirin has not been reported previously, and we report it and assign the features based on calculations. The effect of acetylation on the frontier orbitals of the parent molecule, salicylic acid, is to increase the ionization potential of the highest occupied molecular orbital (HOMO), and to exchange the energetic ordering of the following two orbitals. The acetyl π bond contributes to the next orbital, which is hybridised with ring π orbitals. The core level spectra of all three molecules are reported and compared with calculations and with the spectra of parent molecules (salicylic acid for aspirin, 4-aminophenol for paracetamol). Observed core ionization energies are in agreement with theory. Although all compounds share a benzene ring, and they also have a number of other chromophores in common, the spectroscopic data indicate chemical diversity, suggesting that their modes of bonding under physiological conditions are likely to be diverse.
我们使用计算方法研究了对乙酰氨基酚、阿司匹林和布洛芬孤立分子的电子结构,并将结果与价电子和芯能级光电子能谱进行了基准比较。对乙酰氨基酚、阿司匹林和布洛芬以多种构象存在,我们计算了最低能量构象的自由能和丰度。我们发现与先前的实验和理论结构结果总体上吻合良好。气相阿司匹林的价带光谱此前尚未见报道,我们对此进行了报道并基于计算对其特征进行了归属。乙酰化对母体分子水杨酸前沿轨道的影响是提高最高占据分子轨道(HOMO)的电离能,并交换接下来两个轨道的能级顺序。乙酰基π键对下一个轨道有贡献,该轨道与环π轨道杂化。报道了所有三种分子的芯能级光谱,并与计算结果以及母体分子(阿司匹林的水杨酸、对乙酰氨基酚的4-氨基苯酚)的光谱进行了比较。观察到的芯电离能与理论相符。尽管所有化合物都含有一个苯环,并且它们还有许多其他共同的发色团,但光谱数据表明了化学多样性,这表明它们在生理条件下的键合模式可能多种多样。