Chintala Satyanarayana M, Maness Peter F, Petroff John T, Throgmorton John C, Zhang Miao, Omlid Sara M, McCulla Ryan D
Department of Chemistry, Saint Louis University, 3501 Laclede Ave. St. Louis, Missouri 63103, United States.
ACS Omega. 2020 Dec 11;5(50):32349-32356. doi: 10.1021/acsomega.0c04293. eCollection 2020 Dec 22.
Oxidation of thiols yield sulfenic acids, which are very unstable intermediates. As sulfenic acids are reactive, they form disulfides in the presence of thiols. However, sulfenic acids also oxidize to sulfinic acids (-SOH) and sulfonic acids (-SOH) at higher concentrations of oxidants. Hydrogen peroxide is a commonly used oxidant for the oxidation of thiols to yield sulfenic acids. However, hydrogen peroxide also oxidizes other reactive functional groups present in a molecule. In this work, the reaction intermediates arising from the oxidation of sterically hindered thiols by aryl chalcogen oxides, dibenzothiophene -oxide (DBTO), dibenzoselenophene -oxide (DBSeO), and dibenzotellurophene -oxide (DBTeO), were investigated. Photodeoxygenation of DBTO produces triplet atomic oxygen [O(P)], which has previously shown to preferentially react with thiols over other functional groups. Similarly, aryl selenoxides have also shown that they can thermally react selectively with thiols at room temperature to yield disulfides. Conversely, aryl telluroxides have been reported to oxidize thiols to disulfides thermally with no selectivity toward thiols. The results from this study demonstrate that sulfenic acids are an intermediate in the oxidation of thiols by DBTeO and by photodeoxygenation of DBTO. The results also showed that the oxidation of thiols by DBSeO yields sulfonic acids. Triptycene-9-thiol and 9-fluorotriptycene-10-thiol were for the thiols used in this oxidation reaction. This work expands the list of oxidants that can be used to oxidize thiols to obtain sulfenic acids.
硫醇氧化生成亚磺酸,亚磺酸是非常不稳定的中间体。由于亚磺酸具有反应活性,它们在硫醇存在下会形成二硫化物。然而,在较高浓度的氧化剂作用下,亚磺酸也会氧化为亚磺酸(-SOH)和磺酸(-SOH)。过氧化氢是一种常用的氧化剂,用于将硫醇氧化生成亚磺酸。然而,过氧化氢也会氧化分子中存在的其他活性官能团。在这项工作中,研究了由芳基硫属氧化物、二苯并噻吩 - 氧化物(DBTO)、二苯并硒吩 - 氧化物(DBSeO)和二苯并碲吩 - 氧化物(DBTeO)氧化空间位阻硫醇产生的反应中间体。DBTO的光脱氧产生三线态原子氧[O(P)],此前已表明它比其他官能团更优先与硫醇反应。同样,芳基硒氧化物也表明它们可以在室温下与硫醇进行热选择性反应生成二硫化物。相反,据报道芳基碲氧化物会将硫醇热氧化为二硫化物,且对硫醇没有选择性。这项研究的结果表明,亚磺酸是DBTeO氧化硫醇以及DBTO光脱氧过程中的中间体。结果还表明,DBSeO氧化硫醇会生成磺酸。三蝶烯 - 9 - 硫醇和9 - 氟三蝶烯 - 10 - 硫醇是该氧化反应中使用的硫醇。这项工作扩展了可用于氧化硫醇以获得亚磺酸的氧化剂列表。