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Decomposition of Aromatic Compounds Relevant to Organic Electronics under Exposure to Low-Energy Electrons

机译:在暴露于低能电子下的有机电子相关芳族化合物的分解

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摘要

The persistence of molecules to destruction under the action of low-energy (0-15 eV) electrons is investigated for a representative series of aromatic compounds of interest to organic electronics and photonics. The energy regions of the most effective interaction of free electrons with isolated molecules, which leads to the dissociative decay of molecules due to the formation of short-lived negative molecular ions unstable to fragmentation, are determined using resonance electron capture negative ion mass spectrometry. The characteristic fragmentation channels for molecular ions are revealed for some groups of compounds, and the threshold energies of the most significant fragmentation processes are estimated. Polycyclic aromatic hydrocarbons and oligophenyls are stable to the action of electrons in the electron energy range similar to 0-3 eV, above which these compounds are decomposed into the single channel of hydrogen atom detachment. For compounds with heterocycles (oxadiazole and maleimide derivatives) in their structure, the stability range narrows down to similar to 0-1 eV. Electrons with energies exceeding this range initiate the decay of molecules (anions) via various channels among which the detachment of a cyanate anion from a heterocyclic nucleus is the most intense and destructive process.
机译:研究了在低能量(0-15eV)电子的作用下破坏的持续性用于有机电子和光子学的代表性系列芳族化合物。使用共振电子捕获负离子质谱法测定由于形成不稳定的短寿命的阴性分子离子而导致分离的分离分子的最有效电子相互作用的能量区域。为一些化合物揭示了用于分子离子的特征碎片通道,并且估计最显着的碎片过程的阈值能量。多环芳烃和寡核基对电子能量范围中的电子的作用稳定,类似于0-3eV,上述这些化合物分解成氢原子脱离的单个通道。对于具有杂环(恶二唑和马来酰亚胺衍生物)的化合物,稳定范围缩小至类似于0-1eV。具有能量超过该范围的电子通过各种通道引发分子(阴离子)的衰减,其中来自杂环核的氰酸酯阴离子的分离是最强烈和最具破坏性的过程。

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  • 来源
    《Technical physics》 |2018年第12期|共7页
  • 作者单位

    Russian Acad Sci Ufa Fed Res Ctr Inst Mol &

    Crystal Phys Ufa 450075 Russia;

    Russian Acad Sci Ufa Fed Res Ctr Inst Mol &

    Crystal Phys Ufa 450075 Russia;

    Russian Acad Sci Ufa Fed Res Ctr Inst Mol &

    Crystal Phys Ufa 450075 Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 Tb13;
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