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Towards a fully conjugated, double-stranded cycle: A mass spectrometric and theoretical study

机译:迈向全共轭双链循环:质谱和理论研究

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The two compounds, 1 and 5, are investigated by means of collision-induced dissociation experiments by using ion cyclotron resonance mass spectrometry and other mass spectrometric techniques as to their ability to act as precursors for the fully unsaturated double-stranded target compound 2. These experiments are complemented by flask-type pyrolyses of 5, the products of which are analyzed by mass spectrometry. For 1, no conditions were found under which the expected molecular ion of 2 at m/z 932 appeared, however, for its derivative 5 this was possible. This interesting finding is not in contradiction with the chemical structure of the long sought for compound 2 but calculations suggest that this compound may have isomerized into one where the conjugation is interrupted by hydrogen shift from the solubilizing alkyl chains into the cycle's perimeter. The key driving force for such an isomerization would be the considerable relief of strain energy.
机译:使用离子回旋共振质谱和其他质谱技术,通过碰撞诱导解离实验研究了这两种化合物作为完全不饱和双链目标化合物2的前体的能力。这些化合物通过5的烧瓶型热解法对实验进行了补充,通过热解法对其产物进行了分析。对于1,没有发现在m / z 932处出现预期的分子离子2的条件,但是,对于其衍生物5,这是可能的。这一有趣的发现与化合物2长期以来所寻求的化学结构并不矛盾,但计算表明该化合物可能已异构化成一种,其中氢被从可溶的烷基链转移到循环的周边而中断了结合。这种异构化的关键驱动力将是应变能的显着减轻。

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