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Positive and negative ion formation in deep-core excited molecules: S 1s excitation in dimethyl sulfoxide

机译:深核激发分子中的正负离子形成:二甲基亚砜中的S 1s激发

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The photo-fragmentation of the dimethyl sulfoxide (DMSO) molecule was studied using synchrotron radiation and a magnetic mass spectrometer. The total cationic yield spectrum was recorded in the photon energy region around the sulfur K edge. The sulfur composition of the highest occupied molecular orbital’s and lowest unoccupied molecular orbital’s in the DMSO molecule has been obtained using both ab initio and density functional theory methods. Partial cation and anion-yield measurements were obtained in the same energy range. An intense resonance is observed at 2475.4 eV. Sulfur atomic ions present a richer structure around this resonant feature, as compared to other fragment ions. The yield curves are similar for most of the other ionic species, which we interpret as due to cascade Auger processes leading to multiply charged species which then undergo Coulomb explosion. The anions S~?, C~?, and O~? are observed for the first time in deep-core-level excitation of DMSO.
机译:使用同步加速器辐射和磁性质谱仪研究了二甲亚砜(DMSO)分子的光致碎裂。在硫K边缘附近的光子能量区域中记录了总的阳离子产率谱。已使用从头算和密度泛函理论方法获得了DMSO分子中最高占据分子轨道和最低未占据分子轨道的硫组成。在相同的能量范围内获得了部分阳离子和阴离子收率的测量结果。在2475.4 eV处观察到强烈的共振。与其他碎片离子相比,硫原子离子在该共振特征周围呈现出更丰富的结构。大多数其他离子物种的产率曲线相似,我们认为这是由于级联俄歇过程导致多重带电物种继而发生库仑爆炸。阴离子S〜?,C〜?和O〜?在DMSO的深核级激发中首次观察到这种现象。

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