Institute of Molecule and Crystal Physics, Ufa Federal Research Centre, Russian Academy of Sciences, Prospekt Oktyabrya 151, 450075 Ufa, Russia.
Università di Bologna, Dipartimento di Chimica "G. Ciamician", Via Selmi 2, 40126 Bologna, Italy.
J Chem Phys. 2020 Sep 28;153(11):111103. doi: 10.1063/5.0022188.
Resonance electron attachment to short-tail analogs of coenzyme Q is investigated in the electron energy range 0 eV-14 eV under gas-phase conditions by means of dissociative electron attachment spectroscopy. Formation of long-lived (milliseconds) molecular negative ions is detected at 1.2 eV, but not at thermal energy. A huge increase in the electron detachment time as compared with the reference para-benzoquinone (40 µs) is ascribed to the presence of the isoprene side chains. Elimination of a neutral CH radical is found to be the most intense decay detected on the microsecond time scale. The results give some insight into the timescale of electron-driven processes stimulated in living tissues by high-energy radiation and are of importance in prospective fields of radiobiology and medicine.
采用电子能量损失谱法,在气相条件下,研究了电子能量范围为 0 eV-14 eV 时,辅酶 Q 短链类似物的共振电子俘获。在 1.2 eV 处检测到长寿命(毫秒级)分子负离子的形成,但在热能下未检测到。与参考对苯醌(40 µs)相比,电子脱附时间大大增加,这归因于异戊二烯侧链的存在。在微秒时间尺度上,发现中性 CH 自由基的消除是检测到的最强烈的衰减。研究结果为高能辐射刺激活组织中电子驱动过程的时间尺度提供了一些见解,并且在放射生物学和医学的预期领域具有重要意义。