首页> 外文期刊>Journal of the American Chemical Society >Hydride, Hydrogen Atom, Proton, and Electron Transfer Driving Forces of Various Five-Membered Heterocyclic Organic Hydrides and Their Reaction Intermediates in Acetonitrile
【24h】

Hydride, Hydrogen Atom, Proton, and Electron Transfer Driving Forces of Various Five-Membered Heterocyclic Organic Hydrides and Their Reaction Intermediates in Acetonitrile

机译:乙腈中五元杂环有机氢化物及其反应中间体的氢化物,氢原子,质子和电子转移驱动力

获取原文
获取原文并翻译 | 示例
           

摘要

The enthalpy changes of 47 five-membered heterocyclic compounds (ZH) [33 substituted 2,3-dihydro-2-phenylbenzo[d]imidazoles (1H-5H), 9 substituted 2,3-dihydro-2-phenylbenzo[d]thiazoles (6H), and 5 substituted 2,3-dihydro-2-phenylbenzo[d]oxazoles (7H)] as aclass of very important organic hydride donors to release hydride anion were determined by using titration calorimetry. The result shows that the enthalpy change scale of the 47 ZH in acetonitrile ranges from 49.0 to 93.4 kcal/mol. Such a long energy scale evidently shows that the 47 ZH can construct a large and useful library of organic hydride donors, which can provide various organic hydride donors that the hydride-releasing enthalpies are known. The enthalpy changes of the 47 ZH to release hydrogen atom and the 47 ZH~(+·) to release proton and hydrogen atom were also evaluated by using relative thermodynamic cycles according to Hess' law. The results show: (1) the enthalpy change scale of the 47 ZH to release hydrogen atom covers a range from 71.8 to 91.4 kcal/ mol, indicating that the 47 ZH all should be weak hydrogen atom donors. (2) The enthalpy change scales of the 47 ZH~(+·) to release proton and to release hydrogen atom range from 17.5 to 25.7 and from 27.2 to 52.4 kcal/mol, respectively, implying that the proton-donating abilities of ZH~(+·) are generally quite larger than the corresponding hydrogen atom-donating abilities. The standard redox potentials of the 47 ZH and the 47 corresponding salts (Z~+) were measured by using cyclic voltammetry (CV) and Osteryoung square wave voltammetry (OSWV), the results display that the standard oxidation potential scale of ZH ranges from -0.254 to -0.002 V for 1H-5H and from 0.310 to 0.638 V for 6H-7H, implying that 1H-5H should be strong one-electron reducing agents and 6H-7H should be weak one-electron reducing agents; the standard reduction potential scale of Z~+ ranges from -1.832 to -2.200 V for 1~+-5~+ and from -1.052 to -1.483V for 6~+-7~+, meaning that 1~+-5~+ belong to very weak one-electron oxidation agents. The energies of the intramolecular hydrogen bond in 3H, 3H~(+·), and 3~· with a hydroxyl group at ortho-position on the 2-phenyl ring were estimated by using experimental method, the results disclose that the hydrogen bond energy is 3.2, 2.8-3.0, and 3.9-4.0 kcal/mol for 3H, 3H~(+·), and 3~· in acetonitrile, respectively, which is favorable for hydrogen atom transfer but unfavorable for hydride transfer from 3H. The relative effective charges on the active center in ZH, ZH~(+·), Z~·, and Z~+, which is an efficient measurement of electrophilicity or nucleophilicity as well as dimerizing ability of a chemical species, were estimated by using experimental method; the results indicate that 1~·—5~· belong to electron-sufficient carbon-radicals, 6~·-7~· belong to electron-deficient carbon radicals, they are all difficult to dimerize, and that 1~+-5~+ belong to weak electrophilic agents, 6~+-7~+ belong to strong electrophilic agents. All these information disclosed in this work could not only supply a gap of the chemical thermodynamics of the five-membered heterocyclic compounds as organic hydride donors, but also strongly promote the fast development of the chemistry and applications of the five-membered heterocyclic organic hydrides.
机译:47种五元杂环化合物(ZH)[33个取代的2,3-二氢-2-苯基苯并[d]咪唑(1H-5H),9个取代的2,3-二氢-2-苯基苯并[d]噻唑的焓变(6H)和5个取代的2,3,2-二氢-2-苯基苯并[d]恶唑(7H)]作为非常重要的有机氢化物供体,通过滴定量热法测定其释放氢化物阴离子的能力。结果表明,乙腈中47 ZH的焓变范围为49.0至93.4 kcal / mol。如此长的能量规模显然表明47 ZH可以构建一个大型且有用的有机氢化物供体库,该库可以提供已知的氢化物释放焓的各种有机氢化物供体。根据赫斯定律,通过相对热力学循环,评价了47 ZH释放氢原子的焓变和47 ZH〜(+·)释放质子和氢原子的焓变。结果表明:(1)47 ZH释放氢原子的焓变范围为71.8〜91.4 kcal / mol,表明47 ZH均应为弱氢原子供体。 (2)47 ZH〜(+·)释放质子和释放氢原子的焓变尺度分别为17.5至25.7和27.2至52.4 kcal / mol,这表明ZH〜的质子给体能力。 (+·)通常比相应的氢原子供体能力大得多。用循环伏安法(CV)和奥斯特永方波伏安法(OSWV)测量了47 ZH和47种相应盐类(Z〜+)的标准氧化还原电势,结果表明ZH的标准氧化电势范围为- 1H-5H为0.254至-0.002 V,6H-7H为0.310至0.638 V,这意味着1H-5H应该是强的一电子还原剂,而6H-7H应该是弱的一电子还原剂; Z〜+的标准还原电位标度对于1〜+ -5〜+为-1.832至-2.200 V,对于6〜+ -7〜+为-1.052至-1.483V,表示1〜+ -5〜 +属于非常弱的单电子氧化剂。用实验方法估算了3H,3H〜(+·)和3〜·在2-苯环邻位羟基上的分子内氢键的能量,结果表明氢键能乙腈中的3H,3H〜(+·)和3〜·分别为3.2、2.8-3.0和3.9-4.0 kcal / mol,这有利于氢原子转移,但不利于从3H转移氢化物。通过使用来估算ZH,ZH〜(+·),Z〜·和Z〜+的活性中心上的相对有效电荷,这是有效测量亲电性或亲核性以及化学物质的二聚能力的方法。实验方法结果表明,1〜·—5〜·属于电子不足的碳自由基,6〜·-7〜·属于缺乏电子的碳自由基,均难以二聚,1〜+ -5〜 +属于弱亲电试剂,6〜+ -7〜+属于强亲电试剂。这项工作中公开的所有这些信息不仅可以提供作为有机氢化物供体的五元杂环化合物的化学热力学差距,而且可以极大地促进五元杂环有机氢化物的化学和应用的快速发展。

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