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Rotational Spectra of Unsaturated Carbon Chains Produced by Pyrolysis: The Case of Propadienone, Cyanovinylacetylene, and Allenylacetylene

[Image: see text] Several interstellar molecules are highly reactive unsaturated carbon chains, which are unstable under terrestrial conditions. Laboratory studies in support of their detection in space thus face the issue of how to produce these species and how to correctly model their rotational e...

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Autores principales: Melli, Alessio, Melosso, Mattia, Bizzocchi, Luca, Alessandrini, Silvia, Jiang, Ningjing, Tonolo, Francesca, Boi, Salvatore, Castellan, Giorgia, Sapienza, Carlotta, Guillemin, Jean-Claude, Dore, Luca, Puzzarini, Cristina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9483987/
https://www.ncbi.nlm.nih.gov/pubmed/36044202
http://dx.doi.org/10.1021/acs.jpca.2c05018
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author Melli, Alessio
Melosso, Mattia
Bizzocchi, Luca
Alessandrini, Silvia
Jiang, Ningjing
Tonolo, Francesca
Boi, Salvatore
Castellan, Giorgia
Sapienza, Carlotta
Guillemin, Jean-Claude
Dore, Luca
Puzzarini, Cristina
author_facet Melli, Alessio
Melosso, Mattia
Bizzocchi, Luca
Alessandrini, Silvia
Jiang, Ningjing
Tonolo, Francesca
Boi, Salvatore
Castellan, Giorgia
Sapienza, Carlotta
Guillemin, Jean-Claude
Dore, Luca
Puzzarini, Cristina
author_sort Melli, Alessio
collection PubMed
description [Image: see text] Several interstellar molecules are highly reactive unsaturated carbon chains, which are unstable under terrestrial conditions. Laboratory studies in support of their detection in space thus face the issue of how to produce these species and how to correctly model their rotational energy levels. In this work, we introduce a general approach for producing and investigating unsaturated carbon chains by means of selected test cases. We report a comprehensive theoretical/experimental spectroscopic characterization of three species, namely, propadienone, cyanovinylacetylene, and allenylacetylene, all of them being produced by means of flash vacuum pyrolysis of a suitable precursor. For each species, quantum-chemical calculations have been carried out with the aim of obtaining accurate predictions of the missing spectroscopic information required to guide spectral analysis and assignment. Rotational spectra of the title molecules have been investigated up to 400 GHz by using a frequency-modulation millimeter-/submillimeter-wave spectrometer, thus significantly extending spectral predictions over a wide range of frequency and quantum numbers. A comparison between our results and those available in the literature points out the clear need of the reported laboratory measurements at higher frequencies for setting up accurate line catalogs for astronomical searches.
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spelling pubmed-94839872022-09-20 Rotational Spectra of Unsaturated Carbon Chains Produced by Pyrolysis: The Case of Propadienone, Cyanovinylacetylene, and Allenylacetylene Melli, Alessio Melosso, Mattia Bizzocchi, Luca Alessandrini, Silvia Jiang, Ningjing Tonolo, Francesca Boi, Salvatore Castellan, Giorgia Sapienza, Carlotta Guillemin, Jean-Claude Dore, Luca Puzzarini, Cristina J Phys Chem A [Image: see text] Several interstellar molecules are highly reactive unsaturated carbon chains, which are unstable under terrestrial conditions. Laboratory studies in support of their detection in space thus face the issue of how to produce these species and how to correctly model their rotational energy levels. In this work, we introduce a general approach for producing and investigating unsaturated carbon chains by means of selected test cases. We report a comprehensive theoretical/experimental spectroscopic characterization of three species, namely, propadienone, cyanovinylacetylene, and allenylacetylene, all of them being produced by means of flash vacuum pyrolysis of a suitable precursor. For each species, quantum-chemical calculations have been carried out with the aim of obtaining accurate predictions of the missing spectroscopic information required to guide spectral analysis and assignment. Rotational spectra of the title molecules have been investigated up to 400 GHz by using a frequency-modulation millimeter-/submillimeter-wave spectrometer, thus significantly extending spectral predictions over a wide range of frequency and quantum numbers. A comparison between our results and those available in the literature points out the clear need of the reported laboratory measurements at higher frequencies for setting up accurate line catalogs for astronomical searches. American Chemical Society 2022-08-31 2022-09-15 /pmc/articles/PMC9483987/ /pubmed/36044202 http://dx.doi.org/10.1021/acs.jpca.2c05018 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Melli, Alessio
Melosso, Mattia
Bizzocchi, Luca
Alessandrini, Silvia
Jiang, Ningjing
Tonolo, Francesca
Boi, Salvatore
Castellan, Giorgia
Sapienza, Carlotta
Guillemin, Jean-Claude
Dore, Luca
Puzzarini, Cristina
Rotational Spectra of Unsaturated Carbon Chains Produced by Pyrolysis: The Case of Propadienone, Cyanovinylacetylene, and Allenylacetylene
title Rotational Spectra of Unsaturated Carbon Chains Produced by Pyrolysis: The Case of Propadienone, Cyanovinylacetylene, and Allenylacetylene
title_full Rotational Spectra of Unsaturated Carbon Chains Produced by Pyrolysis: The Case of Propadienone, Cyanovinylacetylene, and Allenylacetylene
title_fullStr Rotational Spectra of Unsaturated Carbon Chains Produced by Pyrolysis: The Case of Propadienone, Cyanovinylacetylene, and Allenylacetylene
title_full_unstemmed Rotational Spectra of Unsaturated Carbon Chains Produced by Pyrolysis: The Case of Propadienone, Cyanovinylacetylene, and Allenylacetylene
title_short Rotational Spectra of Unsaturated Carbon Chains Produced by Pyrolysis: The Case of Propadienone, Cyanovinylacetylene, and Allenylacetylene
title_sort rotational spectra of unsaturated carbon chains produced by pyrolysis: the case of propadienone, cyanovinylacetylene, and allenylacetylene
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9483987/
https://www.ncbi.nlm.nih.gov/pubmed/36044202
http://dx.doi.org/10.1021/acs.jpca.2c05018
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