Fullerenes, PAHs, Amino Acids and High Energy Astrophysics

We present theoretical, observational and laboratory work on the spectral properties of fullerenes and hydrogenated fullerenes. Fullerenes in its various forms (individual, endohedral, hydrogenated, etc.) can contribute to the UV bump in the extinction curves measured in many lines of sight of the G...

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Main Author: Susana Iglesias-Groth
Format: Article
Language:English
Published: CTU Central Library 2014-12-01
Series:Acta Polytechnica CTU Proceedings
Online Access:https://ojs.cvut.cz/ojs/index.php/APP/article/view/2341
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spelling doaj-4ca880629e824a128a928a36bd1be8ff2020-11-24T22:50:22ZengCTU Central LibraryActa Polytechnica CTU Proceedings2336-53822014-12-0111384110.14311/APP.2014.01.00382153Fullerenes, PAHs, Amino Acids and High Energy AstrophysicsSusana Iglesias-Groth0Istituto de Astrofisica de Canarias, La Laguna, Via L´actea sn, 38201 La LagunaWe present theoretical, observational and laboratory work on the spectral properties of fullerenes and hydrogenated fullerenes. Fullerenes in its various forms (individual, endohedral, hydrogenated, etc.) can contribute to the UV bump in the extinction curves measured in many lines of sight of the Galaxy. They can also produce a large number of absorption features in the optical and near infrared which could be associated with diffuse interstellar bands. We summarise recent laboratory work on the spectral characterisation of fullerenes and hydrogenated fullerenes (for a range of temperatures). The recent detection of mid-IR bands of fullerenes in various astrophysical environments (planetary nebulae, reflection nebulae) provide additional evidence for a link between fullerene families and diffuse interstellar bands. We describe recent observational work on near IR bands of C<sub>60</sub><sup>+</sup> in a protoplanetary nebula which support fullerene formation during the post-AGB phase. We also report on the survival of fullerenes to irradiation by high energy particles and gamma photons and laboratory work to explore the chemical  reactions that take place when fullerenes are exposed to this radiations in the presence of water, ammonia and other molecules as a potential path to form amino acids.https://ojs.cvut.cz/ojs/index.php/APP/article/view/2341
collection DOAJ
language English
format Article
sources DOAJ
author Susana Iglesias-Groth
spellingShingle Susana Iglesias-Groth
Fullerenes, PAHs, Amino Acids and High Energy Astrophysics
Acta Polytechnica CTU Proceedings
author_facet Susana Iglesias-Groth
author_sort Susana Iglesias-Groth
title Fullerenes, PAHs, Amino Acids and High Energy Astrophysics
title_short Fullerenes, PAHs, Amino Acids and High Energy Astrophysics
title_full Fullerenes, PAHs, Amino Acids and High Energy Astrophysics
title_fullStr Fullerenes, PAHs, Amino Acids and High Energy Astrophysics
title_full_unstemmed Fullerenes, PAHs, Amino Acids and High Energy Astrophysics
title_sort fullerenes, pahs, amino acids and high energy astrophysics
publisher CTU Central Library
series Acta Polytechnica CTU Proceedings
issn 2336-5382
publishDate 2014-12-01
description We present theoretical, observational and laboratory work on the spectral properties of fullerenes and hydrogenated fullerenes. Fullerenes in its various forms (individual, endohedral, hydrogenated, etc.) can contribute to the UV bump in the extinction curves measured in many lines of sight of the Galaxy. They can also produce a large number of absorption features in the optical and near infrared which could be associated with diffuse interstellar bands. We summarise recent laboratory work on the spectral characterisation of fullerenes and hydrogenated fullerenes (for a range of temperatures). The recent detection of mid-IR bands of fullerenes in various astrophysical environments (planetary nebulae, reflection nebulae) provide additional evidence for a link between fullerene families and diffuse interstellar bands. We describe recent observational work on near IR bands of C<sub>60</sub><sup>+</sup> in a protoplanetary nebula which support fullerene formation during the post-AGB phase. We also report on the survival of fullerenes to irradiation by high energy particles and gamma photons and laboratory work to explore the chemical  reactions that take place when fullerenes are exposed to this radiations in the presence of water, ammonia and other molecules as a potential path to form amino acids.
url https://ojs.cvut.cz/ojs/index.php/APP/article/view/2341
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