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苯乙炔及其氘代同位素分子在中红外至远红外区域的红外吸收光谱。

The infrared absorption spectrum of phenylacetylene and its deuterated isotopologue in the mid- to far-IR.

作者信息

Esposito Vincent J, Ferrari Piero, Buma Wybren Jan, Fortenberry Ryan C, Boersma Christiaan, Candian Alessandra, Tielens Alexander G G M

机构信息

NASA Ames Research Center, MS 245-6, Moffett Field, California 94035, USA.

Radboud University, Institute for Molecules and Materials, HFML-FELIX, 6525 ED Nijmegen, The Netherlands.

出版信息

J Chem Phys. 2024 Mar 21;160(11). doi: 10.1063/5.0191404.

Abstract

Anharmonicity strongly influences the absorption and emission spectra of polycyclic aromatic hydrocarbon (PAH) molecules. Here, IR-UV ion-dip spectroscopy experiments together with detailed anharmonic computations reveal the presence of fundamental, overtone, as well as 2- and 3-quanta combination band transitions in the far- and mid-infrared absorption spectra of phenylacetylene and its singly deuterated isotopologue. Strong absorption features in the 400-900 cm-1 range originate from CH(D) in-plane and out-of-plane wags and bends, as well as bending motions including the C≡C and CH bonds of the acetylene substituent and the aromatic ring. For phenylacetylene, every absorption feature is assigned either directly or indirectly to a single or multiple vibrational mode(s). The measured spectrum is dense, broad, and structureless in many regions but well characterized by computations. Upon deuteration, large isotopic shifts are observed. At frequencies above 1500 cm-1 for d1-phenylacetylene, a one-to-one match is seen when comparing computations and experiments with all features assigned to combination bands and overtones. The C≡C stretch observed in phenylacetylene is not observed in d1-phenylacetylene due to a computed 40-fold drop in intensity. Overall, a careful treatment of anharmonicity that includes 2- and 3-quanta modes is found to be crucial to understand the rich details of the infrared spectrum of phenylacetylene. Based on these results, it can be expected that such an all-inclusive anharmonic treatment will also be key for unraveling the infrared spectra of PAHs in general.

摘要

非谐性对多环芳烃(PAH)分子的吸收光谱和发射光谱有强烈影响。在此,红外 - 紫外离子偶极光谱实验以及详细的非谐计算揭示了苯乙炔及其单氘代同位素异构体在远红外和中红外吸收光谱中存在基频、泛频以及二量子和三量子组合带跃迁。在400 - 900 cm⁻¹范围内的强吸收特征源于CH(D)的面内和面外摆动及弯曲,以及包括乙炔取代基和芳环的C≡C和CH键的弯曲运动。对于苯乙炔,每个吸收特征都直接或间接地归因于单个或多个振动模式。测得的光谱在许多区域密集、宽泛且无结构,但通过计算能很好地表征。氘代后,观察到较大的同位素位移。对于d₁ - 苯乙炔,在频率高于1500 cm⁻¹时,将计算结果与实验结果进行比较时,所有特征都归因于组合带和泛频,呈现出一一对应的关系。由于计算得出强度下降40倍,在d₁ - 苯乙炔中未观察到苯乙炔中出现的C≡C伸缩振动。总体而言,发现对包括二量子和三量子模式的非谐性进行仔细处理对于理解苯乙炔红外光谱的丰富细节至关重要。基于这些结果,可以预期这种全面的非谐处理对于一般解析PAHs的红外光谱也将是关键的。

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