Shahkhatuni Astghik A, Shahkhatuni Aleksan G, Harutyunyan Arpine S
Scientific Technological Center of Organic and Pharmaceutical Chemistry of NAS RA 26 Azatutyan Yerevan 0014 Armenia
RSC Adv. 2021 Dec 7;11(62):39051-39057. doi: 10.1039/d1ra07232c. eCollection 2021 Dec 6.
Deuterium isotope substitution in one part of a molecule could produce a significant effect on chemical shifts of neighbouring nuclei as well as on nuclei, located far from the site of replacement. To estimate how far this influence could extend the reaction of proton-deuterium exchange of several 2-alkanones in deuterated methanol solutions of 1-methyl 3-ethyl imidazolium acetate ionic liquid (IL) was studied in detail using C NMR spectroscopy. Deuteration occurs in alkyl groups of 2-alkanones neighboring the ketonic group keto-enol tautomerization catalyzed by IL. In the course of the reaction, various isotopomers with various deuteration levels are formed, among which a dynamic equilibrium is established. The number of substituted deuterons affects not only the multiplicity and chemical shifts of directly bonded carbon, but carbons in the groups further along the alkyl chain. Moreover, the latter groups better indicate the level and site of substitution.
分子某一部分的氘同位素取代可能会对相邻原子核以及远离取代位点的原子核的化学位移产生显著影响。为了估计这种影响能延伸多远,我们使用碳核磁共振光谱详细研究了几种2-烷酮在乙酸1-甲基3-乙基咪唑鎓离子液体(IL)的氘代甲醇溶液中的质子-氘交换反应。氘代发生在IL催化的酮基附近的2-烷酮的烷基中。在反应过程中,形成了具有不同氘代水平的各种同位素异构体,其中建立了动态平衡。取代氘核的数量不仅影响直接键合碳的多重性和化学位移,还影响烷基链上更远基团中的碳。此外,后一类基团能更好地指示取代水平和位点。