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Unsaturated Dinitriles Formation Routes in Extraterrestrial Environments: A Combined Experimental and Theoretical Investigation of the Reaction between Cyano Radicals and Cyanoethene (C(2)H(3)CN)

[Image: see text] The reaction between cyano radicals (CN, X(2)Σ(+)) and cyanoethene (C(2)H(3)CN) has been investigated by a combined approach coupling crossed molecular beam (CMB) experiments with mass spectrometric detection and time-of-flight analysis at a collision energy of 44.6 kJ mol(–1) and...

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Autores principales: Marchione, Demian, Mancini, Luca, Liang, Pengxiao, Vanuzzo, Gianmarco, Pirani, Fernando, Skouteris, Dimitrios, Rosi, Marzio, Casavecchia, Piergiorgio, Balucani, Nadia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9189926/
https://www.ncbi.nlm.nih.gov/pubmed/35640168
http://dx.doi.org/10.1021/acs.jpca.2c01802
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author Marchione, Demian
Mancini, Luca
Liang, Pengxiao
Vanuzzo, Gianmarco
Pirani, Fernando
Skouteris, Dimitrios
Rosi, Marzio
Casavecchia, Piergiorgio
Balucani, Nadia
author_facet Marchione, Demian
Mancini, Luca
Liang, Pengxiao
Vanuzzo, Gianmarco
Pirani, Fernando
Skouteris, Dimitrios
Rosi, Marzio
Casavecchia, Piergiorgio
Balucani, Nadia
author_sort Marchione, Demian
collection PubMed
description [Image: see text] The reaction between cyano radicals (CN, X(2)Σ(+)) and cyanoethene (C(2)H(3)CN) has been investigated by a combined approach coupling crossed molecular beam (CMB) experiments with mass spectrometric detection and time-of-flight analysis at a collision energy of 44.6 kJ mol(–1) and electronic structure calculations to determine the relevant potential energy surface. The experimental results can be interpreted by assuming the occurrence of a dominant reaction pathway leading to the two but-2-enedinitrile (1,2-dicyanothene) isomers (E- and Z-NC–CH=CH–CN) in a H-displacement channel and, to a much minor extent, to 1,1-dicyanoethene, CH(2)C(CN)(2). In order to derive the product branching ratios under the conditions of the CMB experiments and at colder temperatures, including those relevant to Titan and to cold interstellar clouds, we have carried out RRKM statistical calculations using the relevant potential energy surface of the investigated reaction. We have also estimated the rate coefficient at very low temperatures by employing a semiempirical method for the treatment of long-range interactions. The reaction has been found to be barrierless and fast also under the low temperature conditions of cold interstellar clouds and the atmosphere of Titan. Astrophysical implications and comparison with literature data are also presented. On the basis of the present work, 1,2-dicyanothene and 1,1-dicyanothene are excellent candidates for the search of dinitriles in the interstellar medium.
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spelling pubmed-91899262022-06-14 Unsaturated Dinitriles Formation Routes in Extraterrestrial Environments: A Combined Experimental and Theoretical Investigation of the Reaction between Cyano Radicals and Cyanoethene (C(2)H(3)CN) Marchione, Demian Mancini, Luca Liang, Pengxiao Vanuzzo, Gianmarco Pirani, Fernando Skouteris, Dimitrios Rosi, Marzio Casavecchia, Piergiorgio Balucani, Nadia J Phys Chem A [Image: see text] The reaction between cyano radicals (CN, X(2)Σ(+)) and cyanoethene (C(2)H(3)CN) has been investigated by a combined approach coupling crossed molecular beam (CMB) experiments with mass spectrometric detection and time-of-flight analysis at a collision energy of 44.6 kJ mol(–1) and electronic structure calculations to determine the relevant potential energy surface. The experimental results can be interpreted by assuming the occurrence of a dominant reaction pathway leading to the two but-2-enedinitrile (1,2-dicyanothene) isomers (E- and Z-NC–CH=CH–CN) in a H-displacement channel and, to a much minor extent, to 1,1-dicyanoethene, CH(2)C(CN)(2). In order to derive the product branching ratios under the conditions of the CMB experiments and at colder temperatures, including those relevant to Titan and to cold interstellar clouds, we have carried out RRKM statistical calculations using the relevant potential energy surface of the investigated reaction. We have also estimated the rate coefficient at very low temperatures by employing a semiempirical method for the treatment of long-range interactions. The reaction has been found to be barrierless and fast also under the low temperature conditions of cold interstellar clouds and the atmosphere of Titan. Astrophysical implications and comparison with literature data are also presented. On the basis of the present work, 1,2-dicyanothene and 1,1-dicyanothene are excellent candidates for the search of dinitriles in the interstellar medium. American Chemical Society 2022-05-31 2022-06-09 /pmc/articles/PMC9189926/ /pubmed/35640168 http://dx.doi.org/10.1021/acs.jpca.2c01802 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 Marchione, Demian
Mancini, Luca
Liang, Pengxiao
Vanuzzo, Gianmarco
Pirani, Fernando
Skouteris, Dimitrios
Rosi, Marzio
Casavecchia, Piergiorgio
Balucani, Nadia
Unsaturated Dinitriles Formation Routes in Extraterrestrial Environments: A Combined Experimental and Theoretical Investigation of the Reaction between Cyano Radicals and Cyanoethene (C(2)H(3)CN)
title Unsaturated Dinitriles Formation Routes in Extraterrestrial Environments: A Combined Experimental and Theoretical Investigation of the Reaction between Cyano Radicals and Cyanoethene (C(2)H(3)CN)
title_full Unsaturated Dinitriles Formation Routes in Extraterrestrial Environments: A Combined Experimental and Theoretical Investigation of the Reaction between Cyano Radicals and Cyanoethene (C(2)H(3)CN)
title_fullStr Unsaturated Dinitriles Formation Routes in Extraterrestrial Environments: A Combined Experimental and Theoretical Investigation of the Reaction between Cyano Radicals and Cyanoethene (C(2)H(3)CN)
title_full_unstemmed Unsaturated Dinitriles Formation Routes in Extraterrestrial Environments: A Combined Experimental and Theoretical Investigation of the Reaction between Cyano Radicals and Cyanoethene (C(2)H(3)CN)
title_short Unsaturated Dinitriles Formation Routes in Extraterrestrial Environments: A Combined Experimental and Theoretical Investigation of the Reaction between Cyano Radicals and Cyanoethene (C(2)H(3)CN)
title_sort unsaturated dinitriles formation routes in extraterrestrial environments: a combined experimental and theoretical investigation of the reaction between cyano radicals and cyanoethene (c(2)h(3)cn)
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9189926/
https://www.ncbi.nlm.nih.gov/pubmed/35640168
http://dx.doi.org/10.1021/acs.jpca.2c01802
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