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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Matrix Isolation Spectroscopy and Nuclear Spin Conversion of Propyne Suspended in Solid Parahydrogen
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Matrix Isolation Spectroscopy and Nuclear Spin Conversion of Propyne Suspended in Solid Parahydrogen

机译:基质分离光谱和核旋转转化丙基悬浮在固体戊二糖尿中的丙炔

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摘要

Parahydrogen (pH(2)) quantum solids are excellent matrix isolation hosts for studying the rovibrational dynamics and nuclear spin conversion (NSC) kinetics of molecules containing indistinguishable nuclei with nonzero spin. The relatively slow NSC kinetics of propyne (CH3CCH) isolated in solid pH(2) is employed as a tool to assign the rovibrational spectrum of propyne in the 600-7000 cm(-1) region. Detailed analyses of a variety of parallel (Delta K = 0) and perpendicular (Delta K=+/- 1) bands of propyne indicate that the end-over-end rotation of propyne is quenched, but K rotation of the methyl group around the C-3 symmetry axis still persists. However, this single-axis K rotation is significantly hindered for propyne trapped in solid pH(2) such that the energies of the K rotational states do not obey simple energy-level expressions. The NSC kinetics of propyne follows first-order reversible kinetics with a 287(7) min effective time constant at 1.7 K. Intensity-intensity correlation plots are used to determine the relative line strengths of individual ortho- and para-propyne rovibrational transitions, enabling an independent estimation of the ground vibrational state effective A. constant of propyne.
机译:甲吡啶(pH(2))量子固体是用于研究含有嵌入的核的振动动力学和核旋转转化(NSC)动力学与非零旋转的分子的优异基质隔离宿主。在固体pH(2)中分离的丙酰基(CH3CCH)的相对慢的NSC动力学作为一种工具,以在600-7000cm(-1)区中分配丙炔的振动谱。各种平行(Delta k = 0)和垂直(Delta k = + / - 1)带的详细分析表明pallyne的端盖旋转是淬火的,但是甲基周围的k旋转C-3对称轴仍然存在。然而,这种单轴k旋转对于固体pH(2)捕获的Propyne显着阻碍了k旋转状态的能量不服从简单的能量水平表达。 Propyne的NSC动力学遵循一流的可逆动力学,在1.7k的1.7k的有效时间常数下持续。强度 - 强度相关图用于确定个体矫形器和Para-propyne roviblation转换的相对线条强度,使能力地面振动状态有效A的独立估计。ProPyne的常数。

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