Zheng X, Baumann S M, Chintala S M, Galloway K D, Slaughter J B, McCulla R D
Department of Chemistry, Saint Louis University, 3501 Laclede Ave., St. Louis, MO 63103, USA.
Photochem Photobiol Sci. 2016 Jun 8;15(6):791-800. doi: 10.1039/c5pp00466g. Epub 2016 May 20.
Photoinduced deoxygenation of dibenzothiophene S-oxide (DBTO) has been suggested to release atomic oxygen [O((3)P)]. To expand the conditions and applications where O((3)P) could be used, generation of O((3)P) at longer wavelengths was desirable. The sulfoxides benzo[b]naphtho-[1,2,d]thiophene S-oxide, benzo[b]naphtho[2,1,d]thiophene S-oxide, benzo[b]phenanthro[9,10-d]thiophene S-oxide, dinaphtho[2,1-b:1',2'-d]thiophene S-oxide, and dinaphtho[1,2-b:2',1'-d]thiophene S-oxide all absorb light at longer wavelengths than DBTO. To determine if these sulfoxides could be used to generate O((3)P), quantum yield studies, product studies, and computational analysis were performed. Quantum yields for the deoxygenation were up to 3 times larger for these sulfoxides compared to DBTO. However, oxidation of the solvent by these sulfoxides resulted in different ratios of oxidized products compared to DBTO, which suggested a change in deoxygenation mechanism. Density functional calculations revealed a much larger singlet-triplet gap for the larger sulfoxides compared to DBTO. This led to the conclusion that the examined sulfoxides could undergo deoxygenation by two different mechanisms.
二苯并噻吩 S-氧化物(DBTO)的光致脱氧作用已被认为会释放原子氧[O((3)P)]。为了拓展可使用 O((3)P)的条件和应用范围,在更长波长下生成 O((3)P)是很有必要的。苯并[b]萘并[1,2,d]噻吩 S-氧化物、苯并[b]萘并[2,1,d]噻吩 S-氧化物、苯并[b]菲并[9,10-d]噻吩 S-氧化物、二萘并[2,1-b:1',2'-d]噻吩 S-氧化物以及二萘并[1,2-b:2',1'-d]噻吩 S-氧化物等亚砜类化合物均比 DBTO 在更长波长处吸收光。为了确定这些亚砜类化合物是否可用于生成 O((3)P),进行了量子产率研究、产物研究以及计算分析。与 DBTO 相比,这些亚砜类化合物脱氧的量子产率高达其三倍。然而,与 DBTO 相比,这些亚砜类化合物对溶剂的氧化导致氧化产物的比例不同,这表明脱氧机理发生了变化。密度泛函计算表明,与 DBTO 相比,较大的亚砜类化合物具有更大的单重态-三重态能隙。由此得出结论,所研究的亚砜类化合物可通过两种不同的机理进行脱氧。