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Negative gas-phase ion chemistry of silane: a quadrupole ion trap study

机译:硅烷的负气相离子化学:四极离子阱研究

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Silicon clusters are of considerable interest for their importance in astrophysics and chemical vapour deposition processes, as well as from a fundamental point of view. Here, we present a quadrupole ion trap study of the self-condensation ion/molecule reactions of anions of silane. In the high-pressure regime, several ion clusters are formed with increasing size: the largest ions detected are Si5Hn- (n = 0-3). Selective ion isolation and storage allowed detection of the main reaction sequences occurring in the reacting system. The most frequent condensation step is followed by single or multiple dehydrogenation, this latter being particularly observed for the high-mass reactant ions. As a consequence, the most abundant ions in the mass spectra are those with a low content of hydrogen, namely Si2H-, Si3H-, and Si4H-. These results are discussed with reference to literature data on silicon cluster anions and related systems. Copyright (c) 2006 John Wiley & Sons, Ltd.
机译:硅团簇在天体物理学和化学气相沉积过程中以及从基本的角度来看都很重要。在这里,我们介绍了硅烷阴离子的自缩合离子/分子反应的四极离子阱研究。在高压状态下,会形成几个尺寸增大的离子簇:检测到的最大离子是Si5Hn-(n = 0-3)。选择性的离子分离和存储允许检测反应系统中发生的主要反应序列。最频繁的缩合步骤之后是一次或多次脱氢,特别是对于高质量反应离子而言,尤其是后者。结果,质谱中最丰富的离子是氢含量低的那些离子,即Si2H-,Si3H-和Si4H-。参考硅簇阴离子和相关系统的文献数据讨论了这些结果。版权所有(c)2006 John Wiley&Sons,Ltd.

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