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首页> 外文期刊>International journal of mass spectrometry >Reactivity of organic sigma,sigma,sigma,sigma,sigma-pentaradicals
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Reactivity of organic sigma,sigma,sigma,sigma,sigma-pentaradicals

机译:有机σ,sigma,sigma,sigma,sigma-pentaradicals的反应性

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The gas-phase reactivity of the first known sigma -type carbon- and nitrogen-centered aromatic pentaradical cations toward cyclohexane was studied using a dual-linear quadrupole ion trap tandem mass spectrometer and compared to that of analogous mono-, bi-, tri- and tetraradicals. The major reaction of all radicals containing an ortho-benzyne moiety, including both pentaradicals, is abstraction of a hydride followed by abstraction of a proton from one cyclohexane molecule, generating a product complex of cyclohexene and a mono-, bi- or triradical (for the tri-, tetra- and pentaradical reactants, respectively) or a closed-shell aromatic molecule (for the biradical reactant). These nonradical reactions are calculated to be highly exothermic (by at least 58 kcal mol(-1)). After the ortho-benzyne moiety has been quenched via hydride and proton abstraction, radical reactions take place in the product complexes. The most prominent reactions involve [1] abstraction of one, two or three hydrogen atoms, respectively, from cyclohexene and [2] addition to cyclohexene, sometimes followed by the loss of a hydrogen atom or more extensive fragmentation. These radical reactions are fast if one or three radical sites are present (e.g., for the tri- and pentaradical reactants) but slow if two are present (e.g., for the tetraradical reactants) due to reactivity-lowering spin-spin coupling between the radical sites (even when the spin-spin coupling is very weak). Overall, the tetra- and pentaradicals display substantially lower reactivity than the mono- and triradicals, which is likely due to reactivity-lowering spin-spin coupling between all, or most, of the radical sites. Spin-spin coupling overrides the effects of a greater (calculated) vertical electron affinity of the radical sites of the tetra- and pentaradicals, which was expected to make them more reactive than the mono and biradicals. (C) 2018 Elsevier B.V. All rights reserved.
机译:使用双线性四极臼离子捕获串联质谱仪研究了第一已知的Sigma -Type碳和氮中心芳族戊酰胺酰胺朝环己烷的气相反应性。与类似单,Bi-,三 - 和四个谚语。含有邻苯齐尼部分的所有基团的主要反应,包括两种戊类,是氢化物的抽象,然后从一个环己烷分子抽取质子,产生环己烯的产物复合物和单次,双 - 或扭矩(用于分别是三烷基和戊烷反应物,或封闭壳芳族分子(用于抗体反应物)。将这些非校准反应计算为高度放热(通过至少58kcal(-1))。通过氢化物和质子抽象淬灭邻苯尼烯部分后,在产物复合物中发生自由基反应。最突出的反应涉及[1]分别从环己烯和[2]除环己烯外,有时涉及氢原子或更广泛的碎裂的丢失。如果存在一个或三个自由基位点(例如,对于三级和戊烷反应物),则这些激进反应是快速的,但由于在自由基之间的反应性降低旋转旋转耦合而慢,则慢网站(即使旋转自旋耦合非常弱)。总体而言,四极管和五星辐射的反应性显着比单通和扭矩较低,这可能是由于所有或大部分之间的反应性降低的自由基位点之间的反应性。旋转旋转偶联覆盖了四(计算)的四分之一和五级的自由基部位的垂直电子亲和力的效果,这预期使它们比单体和僵尸更具反应性。 (c)2018 Elsevier B.v.保留所有权利。

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