首页> 外文期刊>International journal of mass spectrometry >Formation of molecular hydrogen from protonated 9,10-dihydroanthracene: Is the ejected H_2 rotationally and vibrationally excited?
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Formation of molecular hydrogen from protonated 9,10-dihydroanthracene: Is the ejected H_2 rotationally and vibrationally excited?

机译:由质子化的9,10-二氢蒽形成分子氢:喷射出的H_2是否受到旋转和振动激发?

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摘要

The infrared multiple-photon dissociation (IRMPD) spectrum of protonated 9,10-dihydroanthracene ([DHA+H]~+, m/z 181) has been recorded using an infrared free electron laser. Protonation was accomplished by electrospray ionization with subsequent mass-selection and trapping in a Fourier transform ion cyclotron mass spectrometer. IR-induced fragment ions were observed at m/z 179, 166, and 165. Density functional calculations (B3LYP/6-311++G(d,p)) of the infrared spectra of the two possible protonated isomers of DHA showed that the observed IRMPD spectrum is best fit to a mixture of the two isomers. Potential energy surfaces for the loss of atomic and molecular hydrogen from the aliphatic carbons of [DHA+H]~+ have been calculated. The lowest energy barriers are for loss of H_2. After H_2 ejection, stabilization of the remaining fragment occurs by hydrogen migration from one of the aliphatic carbons to the bare ejection site. In all cases the stabilized fragment is computed to be 9-hydroanthracene. The IRMPD spectrum of the m/z 179 fragment has been recorded and is shown to correspond closely both to the calculated and previously recorded IRMPD spectrum of ionic 9-hydroanthracene. The highly asymmetric transition state conformation of the to-be-formed H_2 and the remaining fragment is highly suggestive of rotational, vibrational, and, possibly, translational excitation of the ejected H_2. Evidence for such excitation from astronomical observations that show the close proximity of PAHs and H_2 in certain interstellar objects and that show H _2 rotational excitation, which has been difficult to explain via either collisional activation or UV pumping, is reviewed.
机译:质子化的9,10-二氢蒽([DHA + H]〜+,m / z 181)的质子化红外多光子离解(IRMPD)光谱已使用红外自由电子激光进行了记录。质子化是通过电喷雾电离和随后的质量选择以及在傅立叶变换离子回旋加速器质谱仪中的捕集来完成的。在m / z 179、166和165处观察到IR诱导的碎片离子。DHA的两种可能的质子化异构体的红外光谱的密度泛函计算(B3LYP / 6-311 ++ G(d,p))显示:观察到的IRMPD光谱最适合两种异构体的混合物。已计算出[DHA + H]〜+的脂肪族碳损失原子和分子氢的势能面。最低的能垒是H_2的损失。在H_2喷射之后,剩余片段的稳定通过氢从脂肪族碳之一迁移到裸露的喷射位置而发生。在所有情况下,稳定化片段计算为9-氢蒽。已经记录了m / z 179片段的IRMPD光谱,并且显示出与离子型9-氢蒽的已计算和先前记录的IRMPD光谱非常接近。待形成的H_2和其余片段的高度不对称过渡态构象高度暗示了所喷射的H_2的旋转,振动以及可能的平移激发。回顾了来自天文学观测的这种激发的证据,这些证据表明在某些星际物体中PAHs和H_2非常接近,并且显示了H _2旋转激发,这很难通过碰撞激活或紫外线泵浦来解释。

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