Solouki Touradj, Szulejko Jan E
Chemistry Department, University of Maine, Orono, Maine 04469-5706, USA.
J Am Soc Mass Spectrom. 2007 Nov;18(11):2026-39. doi: 10.1016/j.jasms.2007.08.016. Epub 2007 Sep 1.
The contributions of molecular and fragment ions toward the disparate self-chemical ionization (SCI) of alpha-pinene and camphene isomers were investigated. A kinetic model was constructed to predict the SCI outcomes for these two C(10)H(16) isomers. A major portion of the camphene molecular ions (isolated 500 ms after the 10 ms EI event at 24 eV) unimolecularly dissociated within 200 s of the ionization event. Conversely, under similar experimental conditions, the alpha-pinene molecular ions as well as the major fragment ions of alpha-pinene and camphene showed no unimolecular dissociation. The alpha-pinene and camphene molecular ions yielded product ions through two different reaction mechanisms (direct charge-transfer {CT} and indirect proton transfer {PT}). The isolated terpene fragment ions at m/z 93 and 121 reacted with their respective neutrals to produce M + H. Proton affinity (PA) bracketing experiments, PA additivity schemes, and alkene PA versus adiabatic ionization energy (IE) linear correlation indicated that the PAs of camphene and alpha-pinene were comparable ( approximately 210 +/- 2 kcal x mol(-1)). The observed M + H SCI terpene ions were mainly the products of various fragment ion reactions.
研究了分子离子和碎片离子对α-蒎烯和莰烯异构体不同的自化学电离(SCI)的贡献。构建了一个动力学模型来预测这两种C(10)H(16)异构体的SCI结果。莰烯分子离子的大部分(在24 eV下10 ms电子轰击电离事件后500 ms分离)在电离事件后的200 s内发生单分子解离。相反,在类似的实验条件下,α-蒎烯分子离子以及α-蒎烯和莰烯的主要碎片离子均未发生单分子解离。α-蒎烯和莰烯分子离子通过两种不同的反应机制(直接电荷转移{CT}和间接质子转移{PT})产生产物离子。m/z 93和121处分离的萜烯碎片离子与其各自的中性分子反应生成M + H。质子亲和势(PA)括值实验、PA加和方案以及烯烃PA与绝热电离能(IE)的线性相关性表明,莰烯和α-蒎烯的PA相当(约210±2 kcal·mol(-1))。观察到的M + H SCI萜烯离子主要是各种碎片离子反应的产物。