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强飞秒激光脉冲形成和碎裂四价分子离子。

Formation and fragmentation of quadruply charged molecular ions by intense femtosecond laser pulses.

机构信息

Department of Chemistry, Graduate School of Science, Osaka City University, 3-3-138 Sugimoto, Sumiyoshi, Osaka 558-8585 Japan.

出版信息

J Phys Chem A. 2010 Jul 22;114(28):7445-52. doi: 10.1021/jp103725s.

Abstract

We investigated the formation and fragmentation of multiply charged molecular ions of several aromatic molecules by intense nonresonant femtosecond laser pulses of 1.4 mum with a 130 fs pulse duration (up to 2 x 10(14) W cm(-2)). Quadruply charged states were produced for 2,3-benzofluorene and triphenylene molecular ion in large abundance, whereas naphthalene and 1,1'-binaphthyl resulted only in up to triply charged molecular ions. The laser wavelength was nonresonant with regard to the electronic transitions of the neutral molecules, and the degree of fragmentation was strongly correlated with the absorption of the singly charged cation radical. Little fragmentation was observed for naphthalene (off-resonant with cation), whereas heavy fragmentation was observed in the case of 1,1'-binaphthyl (resonant with cation). The degree of H(2) (2H) and 2H(2) (4H) elimination from molecular ions increased as the charge states increased in all the molecules examined. A striking difference was found between triply and quadruply charged 2,3-benzofluorene: significant suppression of molecular ions with loss of odd number of hydrogen was observed in the quadruply charged ions. The Coulomb explosion of protons in the quadruply charged state and succeeding fragmentation resulted in the formation of triply charged molecular ions with an odd number of hydrogens. The hydrogen elimination mechanism in the highly charged state is discussed.

摘要

我们用 1.4 微米、130 飞秒脉冲宽度(最高达 2×10(14)W cm(-2)) 的强非共振飞秒激光脉冲研究了几种芳香族分子的多电荷分子离子的形成和碎裂。2,3-苯并芴和三联苯分子离子产生了大量的四价态,而萘和 1,1'-联萘仅产生了三价态的分子离子。激光波长与中性分子的电子跃迁是非共振的,碎裂程度与单电荷阳离子自由基的吸收强烈相关。萘(与阳离子非共振)几乎没有发生碎裂,而 1,1'-联萘(与阳离子共振)则发生了严重的碎裂。在所研究的所有分子中,随着电荷态的增加,从分子离子中消除 H(2)(2H)和 2H(2)(4H)的程度也增加了。在三重和四重电荷的 2,3-苯并芴之间发现了一个显著的差异:在四重电荷离子中,观察到奇数个氢损失的分子离子显著抑制。在四重电荷态下质子的库仑爆炸和随后的碎裂导致形成了奇数个氢的三重电荷分子离子。讨论了在高电荷态下的氢消除机制。

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