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Gas-phase protonation of benzocycloalkenes

机译:苯并环烯烃的气相质子化

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摘要

The gas-phase basicity (GB) of four benzocycloalkenes (benzocyclobutene, indan, tetralin and benzocycloheptene) has been determined by Fourier transform ion cyclotron resonance (FT-ICR) mass spectrometry, allowing proton transfer equilibria to be established with reference bases of known GB. The values obtained are all very similar, 776.8-778.8 kJ mol(-1) at 300 K, practically equal within experimental error and close to the GB of o-xylene. In this respect, any specific behavior which might be ascribed to the size of the fused ring is not manifested. H/D exchange reactions with CH3OD have been used to probe the structure of the protonated benzocycloalkenes. The positive-ion chemistry of protonated benzocyclobutene is characterized by its kinetic instability towards rearrangement into a more stable isomer(s). The isomerization is prompted either by an exothermic protonation process, for example using i-C3H7+ as proton donor, or within an ion neutral complex with a polar molecule.
机译:四种苯并环烯烃(苯并环丁烯,茚满,四氢化萘和苯并环庚烯)的气相碱度(GB)已通过傅立叶变换离子回旋共振(FT-ICR)质谱法测定,从而可以利用已知GB的参考碱建立质子转移平衡。所得值非常相似,在300 K时为776.8-778.8 kJ mol(-1),在实验误差内几乎相等,接近邻二甲苯的GB。在这方面,没有表现出归因于稠环尺寸的任何特定行为。与CH3OD的H / D交换反应已用于探测质子化的苯并环烯烃的结构。质子化的苯并环丁烯的正离子化学特征是它对重新排列成更稳定的异构体的动力学不稳定。异构化可通过放热质子化过程(例如使用i-C3H7 +作为质子供体)或在与极性分子形成的离子中性络合物中进行。

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