...
首页> 外文期刊>Physical chemistry chemical physics: PCCP >Reactivity of hydropersulfides toward the hydroxyl radical unraveled: disulfide bond cleavage, hydrogen atom transfer, and proton-coupled electron transfer
【24h】

Reactivity of hydropersulfides toward the hydroxyl radical unraveled: disulfide bond cleavage, hydrogen atom transfer, and proton-coupled electron transfer

机译:氢硫化氢氟化氢的反应性解开:二硫键粘合,氢原子转移和质子偶联电子转移

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Hydropersulfides (RSSH) are highly reactive as nucleophiles and hydrogen atom transfer reagents. These chemical properties are believed to be key for them to act as antioxidants in cells. The reaction involving the radical species and the disulfide bond (S-S) in RSSH, a known redox-active group, however, has been scarcely studied, resulting in an incomplete understanding of the chemical nature of RSSH. We have performed a high-level theoretical investigation on the reactions of the hydroxyl radical ((OH)-O-center dot) toward a set of RSSH (R = -H, -CH3, -NH2, -C(O)OH, -CN, and -NO2). The results show that S-S cleavage and H-atom abstraction are the two competing channels. The electron inductive effect of R induces selective (OH)-O-center dot substitution at one sulfur atom upon S-S cleavage, forming RSOH and (SH)-S-center dot for the electron donating groups (EDGs), whereas producing HSOH and (SR)-S-center dot for the electron withdrawing groups (EWGs). The H-Atom abstraction by (OH)-O-center dot follows a classical hydrogen atom transfer (hat) mechanism, producing RSS center dot and H2O. Surprisingly, a proton-coupled electron transfer (pcet) process also occurs for R being an EDG. Although for RSSH having EWGs hat is the leading channel, S-S cleavage can be competitive or even dominant for the EDGs. The overall reactivity of RSSH toward (OH)-O-center dot attack is greatly enhanced with the presence of an EDG, with CH3SSH being the most reactive species found in this study (overall rate constant: 4.55 x 10(12) M-1 s(-1)). Our results highlight the complexity in RSSH reaction chemistry, the extent of which is closely modulated by the inductive effect of the substituents in the case of the oxidation by hydroxyl radicals.
机译:氢硫化物(RSSH)是高反应性作为亲核试剂和氢原子转移试剂。认为这些化学性质是它们在细胞中作为抗氧化剂的关键。然而,涉及自由基物质和二硫键(S-S)的反应,已知的氧化还原活性组在RSSH中几乎已经研究,导致对RSSH的化学性质的不完全理解。我们对一组RSSH(r = -h,-ch3,-n2,-c(o)哦,ob,oh,,对所述羟基自由基((OH)-o中心点)反应进行了高级别的理论研究。 -cn和-no2)。结果表明,S-S裂解和H-Atom抽象是两个竞争渠道。在SS切割时,R诱导选择性(OH)-O中心点替代的电子感应效应,形成RSOH和(SH)-S中心点,用于电子捐赠基团(EDG),而产生HSOH和( SR) - 用于电子取出组的中心点(EWG)。由(OH)-O中心点的H-原子抽象遵循经典的氢原子转移(帽子)机制,产生RSS中心点和H2O。令人惊讶的是,对于EDG,也发生质子耦合电子转移(PCET)过程。虽然对于具有EWGS帽的RSSH是领先的通道,但S-S裂解可能是竞争力甚至占EDG的主导。 RSSH朝向(OH)-O中心点攻击的总体反应性大大提高了EDG的存在,CH3SSH是本研究中发现的最具反应性物种(总速率常数:4.55 x 10(12)M-1 s(-1))。我们的结果突出了RSSH反应化学中的复杂性,其范围是通过羟基自由基氧化的含量的诱导效果密切调节。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号