Heo In, Lee Jong Chan, Özer Begüm Rukiye, Schultz Thomas
Advanced Materials Research Building 103-413, 50 UNIST-gil, Eonyang-eup, Ulju-gun, Ulsan 44919, South Korea.
J Phys Chem Lett. 2022 Sep 8;13(35):8278-8283. doi: 10.1021/acs.jpclett.2c02035. Epub 2022 Aug 29.
Mass-correlated rotational alignment spectroscopy resolved the rotational Raman spectra for 5 benzene isotopologues with unprecedented resolution. 13-C isotopologues were characterized at natural abundance. Fitted rotational constants allowed the analysis of effective and equilibrium bond lengths for benzene with sub-mÅ uncertainties. We found that previously reported experimental structures were wrong by multiple mÅ, due to unrecognized H/D isotope effects. Our results also refute recent experimental and theoretical literature claims of identical effective C-H and C-D bond lengths in benzene and reveal an isotope effect similar to that in other small molecules.
质量相关的旋转对准光谱以空前的分辨率解析了5种苯同位素异构体的旋转拉曼光谱。对天然丰度下的13-C同位素异构体进行了表征。拟合的转动常数允许对苯的有效键长和平衡键长进行分析,不确定度小于亚埃。我们发现,由于未识别的H/D同位素效应,先前报道的实验结构相差多个埃。我们的结果还驳斥了最近实验和理论文献中关于苯中C-H和C-D有效键长相同的说法,并揭示了一种与其他小分子类似的同位素效应。