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Cavity ringdown laser absorption spectroscopy and time-of-flight mass spectroscopy of jet-cooled gold silicides

机译:射流冷却的硅化金的腔衰荡激光吸收光谱和飞行时间质谱

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摘要

The cavity ringdown technique has been employed for the spectroscopic characterization of the AuSi molecule, which is generated in a pulsed supersonic laser vaporization plasma reactor. Fifteen rovibronic bands have been measured between 340 nm–390 nm, 8 of which have been analyzed to yield molecular properties for the X and D 2Sigma states of AuSi. This assignment is in disagreement with previous emission studies of AuSi, which had assigned the ground electronic state as a 2Pi state. A time-of-flight mass spectrometer simultaneously monitors species produced in the molecular beam and has provided evidence for facile formation of polyatomic gold silicides. Comparison of AuSi with our recent results for CuSi and AgSi indicates regular bonding trends for the three coinage metal silicide diatoms.
机译:腔衰荡技术已被用于AuSi分子的光谱表征,该AuSi分子是在脉冲超音速激光汽化等离子体反应器中产生的。在340 nm至390 nm之间测量了15个电子振动带,分析了其中的8个以产生AuSi的X和D 2Sigma态的分子特性。此分配与先前的AuSi发射研究不同,AuSi已将地面电子状态分配为2Pi状态。飞行时间质谱仪同时监视分子束中产生的物质,并提供了容易形成多原子硅化金的证据。将AuSi与我们最近对CuSi和AgSi的结果进行比较表明,这三种造币金属硅化物硅藻的粘结趋势规则。

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