Department of Chemistry, Saint Louis University , 3501 Laclede Avenue, St. Louis, Missouri 63108, United States.
J Org Chem. 2017 Dec 15;82(24):13333-13341. doi: 10.1021/acs.joc.7b02428. Epub 2017 Dec 4.
Aromatic heterocyclic oxides, such as dibenzothiophene S-oxide (DBTO), have been suggested to release ground state atomic oxygen [O(P)] upon irradiation, and as such, they have been used to create a condensed phase reactivity profile for O(P). However, thiols, which are highly reactive with O(P) in the gas phase, were not previously investigated. An earlier study of O(P) with proteins in solution indicated a preference for thiols. A further investigation of the apparent thiophilicity provided the subject for this study. DBTO was employed as a putative O(P)-precursor. However, the effective rate of O(P) formation was found to be dependent on reactant concentrations in certain cases. All reactants were found to increase the rate of deoxygenation to some extent, but in the presence of reactants containing an alcohol linked to a reactive functional group, deoxygenation occurred substantially more rapidly. The rate enhancement was quantified and attributed to the reaction of activated O atom within the solvent cage prior to escape into the bulk solution. Through competition experiments, the relative rate constants of O(P) with thiols and other functional groups were found. A small preference for primary thiols was observed over other thiols, sulfides, and alkenes. A much larger preference was observed for thiols, sulfides, and alkenes over aromatic groups. In summary, DBTO was successfully used as an O(P)-precursor, and the thiophilicity of O(P) was confirmed and quantified.
芳香杂环氧化物,如二苯并噻吩 S-氧化物 (DBTO),据推测在受到辐射时会释放基态原子氧 [O(P)],因此,它们被用于创建 O(P) 的凝聚相反应性剖面。然而,此前并未研究过在气相中与 O(P) 高度反应的硫醇。先前对溶液中 O(P) 与蛋白质的研究表明,硫醇具有优先反应性。本研究进一步探讨了明显的亲硫性。DBTO 被用作假定的 O(P)-前体。然而,在某些情况下,发现 O(P) 形成的有效速率取决于反应物浓度。所有反应物都在一定程度上增加了脱氧速率,但在存在含有与反应性官能团相连的醇的反应物的情况下,脱氧速率大大加快。对速率增强进行了量化,并归因于溶剂笼内活化 O 原子在逃入主体溶液之前的反应。通过竞争实验,确定了 O(P) 与硫醇和其他官能团的相对速率常数。观察到 O(P) 对伯硫醇比对其他硫醇、硫化物和烯烃有稍大的偏好。对硫醇、硫化物和烯烃比对芳族基团的偏好大得多。总之,DBTO 成功地用作 O(P)-前体,并且证实和量化了 O(P) 的亲硫性。