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首页> 外文期刊>Angewandte Chemie >Infrared Spectra of Protonated Coronene and Its Neutral Counterpart in Solid Parahydrogen: Implications for Unidentified Interstellar Infrared Emission Bands
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Infrared Spectra of Protonated Coronene and Its Neutral Counterpart in Solid Parahydrogen: Implications for Unidentified Interstellar Infrared Emission Bands

机译:固体对氢中质子化ron烯及其中性对位体的红外光谱:对未知星际红外发射带的影响。

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摘要

Large protonated poly cyclic aromatic hydrocarbons (H~+PAHs) are possible carriers of unidentified infrared (UIR) emission bands from interstellar objects, but the characterization of infrared (IR) spectra of large H~+PAHs in the laboratory is challenging. IR absorption spectra of protonated coronene (1-C_(24)H_(13)~+) and mono-hydrogenated coronene (1-C_(24)H_(13)), which were produced upon electron bombardment of parahydrogen containing a small proportion of coronene (C_(24)H_(12)) during matrix deposition, were recorded. The spectra are of a much higher resolution than those obtained by IR multiphoton dissociation by Dopfer and co-workers. The IR spectra of protonated pyrene and coronene collectively appear to have the required chromophores for features of the UIR bands, and the spectral shifts on an increase in the number of benzenoid rings point in the correct direction towards the positions of the UIR bands. Larger protonated peri-condensed PAHs might thus be key species among the carriers of UIR bands.
机译:大型质子化多环芳烃(H〜+ PAHs)可能是星际物体发出未确定的红外(UIR)发射带的载体,但是在实验室中表征大型H〜+ PAHs的红外(IR)光谱具有挑战性。质子化co烯(1-C_(24)H_(13)〜+)和单氢化co烯(1-C_(24)H_(13))的红外吸收光谱是通过对小比例氢进行电子轰击而产生的记录基质沉积过程中的co烯(C_(24)H_(12))的变化。光谱具有比Dopfer和同事通过IR多光子离解获得的光谱更高的分辨率。质子化的pyr和co的红外光谱共同看来具有UIR谱带特征所需的发色团,并且随着苯甲环数量的增加,光谱偏移指向UIR谱带位置的正确方向。因此,较大的质子化的周围凝聚的PAHs可能是UIR谱带携带者中的关键物种。

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