首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Matrix isolation infrared observation of HxSi(N-2)(y) (x=0, 1, 2 and y=1, 2) transient species using a 121-nm vacuum ultraviolet photolysis source
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Matrix isolation infrared observation of HxSi(N-2)(y) (x=0, 1, 2 and y=1, 2) transient species using a 121-nm vacuum ultraviolet photolysis source

机译:使用121 nm真空紫外光解源对HxSi(N-2)(y)(x = 0、1、2和y = 1、2)瞬态物质进行基质隔离红外观察

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摘要

Vacuum ultraviolet photolysis (121.6 nm) of silane in. a nitrogen matrix at 12 K leads to the observation of several transient species, which have been characterized using Fourier transform infrared spectroscopy. Four transient species containing silicon and nitrogen have been observed (SiN2, Si(N-2)(2), HSiN2, and H2SiN2), and one transient species containing only silicon and hydrogen has been observed. The assignment of the infrared bands due to each of these species is accomplished by performing isotopic substitution experiments (SiD4, N-15(2), and mixtures with SiH4 and N-15(2)), matrix annealing experiments, UV-visible photolysis experiments, by comparison with previous experimental matrix isolation frequencies, where available, and for HSiN2 and H2SiN2 by comparison to B3LYP/aug-cc-pVTZ-calculated vibrational frequencies. The observation and infrared assignment of the HSiN2 and H2SiN2 molecules in these experiments is significant in that HSiN2 has not been previously reported in the matrix isolation literature, and H2SiN2 has only been reported once previously by a different route of formation. The energetics of the overall formation pathways for the molecules observed in these experiments is discussed using B3LYP/aug-cc-pVTZ calculations.
机译:硅烷在氮基质中于12 K进行真空紫外光解(121.6 nm)导致观察到几种瞬态物质,已使用傅里叶变换红外光谱法对其进行了表征。已观察到四种含硅和氮的瞬态物质(SiN2,Si(N-2)(2),HSiN2和H2SiN2),并且已观察到一种仅含硅和氢的瞬态物质。通过进行同位素取代实验(SiD4,N-15(2)以及与SiH4和N-15(2)的混合物),基质退火实验,紫外可见光解,可以完成对这些物质中每种物质的红外波段的分配通过与以前的实验矩阵隔离频率(如果有)进行比较,以及与B3LYP / aug-cc-pVTZ计算的振动频率进行比较,对HSiN2和H2SiN2进行实验。在这些实验中对HSiN2和H2SiN2分子的观察和红外分配很重要,因为以前在基质分离文献中没有报道过HSiN2,并且以前仅以不同的形成途径报道过H2SiN2。使用B3LYP / aug-cc-pVTZ计算讨论了在这些实验中观察到的分子整体形成途径的能量学。

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