Pshenichnyuk Stanislav A, Rakhmeyev Rustam G, Asfandiarov Nail L, Komolov Alexei S, Modelli Alberto, Jones Derek
Institute of Molecule and Crystal Physics, Ufa Federal Research Centre , Russian Academy of Sciences , Prospeκt Oktyabrya 151 , 450075 Ufa , Russia.
St. Petersburg State University , Universitetskaya nab. 7/9 , 199034 St. Petersburg , Russia.
J Phys Chem Lett. 2018 May 3;9(9):2320-2325. doi: 10.1021/acs.jpclett.8b00704. Epub 2018 Apr 23.
The present study examines the possible importance of the electron-accepting properties of odorant molecules and, in particular, the formation and decay of temporary negative ions via low-energy electron attachment as a possible contribution toward understanding odorant recognition by olfactory receptors (ORs). Fragments formed by dissociative electron attachment (DEA) of mustard oil odorants represented by a series of isothiocyanates are studied experimentally using DEA spectroscopy and DFT calculations. Relative intensities for the most abundant fragment species, S and SCN, are found to be characteristic of structurally similar odorants under investigation. This novel approach for the investigation of odorants may contribute to understanding the initial stages of the olfactory process and may provide a means to distinguish between odorants and their interactions with the olfactory receptor system.
本研究考察了气味分子的电子接受特性的潜在重要性,特别是通过低能电子附着形成和衰减的临时负离子,这可能有助于理解嗅觉受体(OR)对气味的识别。使用DEA光谱和DFT计算对由一系列异硫氰酸酯代表的芥子油气味剂的解离电子附着(DEA)形成的碎片进行了实验研究。发现最丰富的碎片物种S和SCN的相对强度是所研究的结构相似气味剂的特征。这种研究气味剂的新方法可能有助于理解嗅觉过程的初始阶段,并可能提供一种区分气味剂及其与嗅觉受体系统相互作用的方法。