Laboratory formation of fullerenes from PAHs: Top-down interstellar chemistry
arXiv:1411.7230 · doi:10.1088/2041-8205/797/2/L30
Abstract
Interstellar molecules are thought to build up in the shielded environment of molecular clouds or in the envelope of evolved stars. This follows many sequential reaction steps of atoms and simple molecules in the gas phase and/or on (icy) grain surfaces. However, these chemical routes are highly inefficient for larger species in the tenuous environment of space as many steps are involved and, indeed, models fail to explain the observed high abundances. This is definitely the case for the C fullerene, recently identified as one of the most complex molecules in the interstellar medium. Observations have shown that, in some PDRs, its abundance increases close to strong UV-sources. In this letter we report laboratory findings in which C formation can be explained by characterizing the photochemical evolution of large PAHs. Sequential H losses lead to fully dehydrogenated PAHs and subsequent losses of C units convert graphene into cages. Our results present for the first time experimental evidence that PAHs in excess of 60 C-atoms efficiently photo-isomerize to Buckminsterfullerene, C. These laboratory studies also attest to the importance of top-down synthesis routes for chemical complexity in space.
References in corpus (3)
Cited by in corpus (39)
- PDRs4All IV. An embarrassment of riches: Aromatic infrared bands in the Orion Bar
- Aromatics and Cyclic Molecules in Molecular Clouds: A New Dimension of Interstellar Organic Chemistry
- Laboratory Photo-chemistry of PAHs: Ionization versus Fragmentation
- The ESO Diffuse Interstellar Bands Large Exploration Survey: EDIBLES I. Project description, survey sample and quality assessment
- C and the Diffuse Interstellar Bands: An Independent Laboratory Check
- Searching for stable fullerenes in space with computational chemistry
- Formation of complex organic molecules in molecular clouds: acetaldehyde, vinyl alcohol, ketene, and ethanol via the "energetic" processing of CH ice
- Polyacenes and diffuse interstellar bands
- Laboratory photo-chemistry of covalently bonded fluorene clusters: observation of an interesting PAH bowl-forming mechanism
- The Behavior of Selected Diffuse Interstellar Bands with Molecular Fraction in Diffuse Atomic and Molecular Clouds
- Discovery of interstellar phenalene (-CH): A new piece for the chemical puzzle of PAHs in space
- Structural investigation of doubly-dehydrogenated pyrene cations
- Mapping the structural diversity of C60 carbon clusters and their infrared spectra
- A Small Fullerene (C24) may be the Carrier of the 11.2 micron Unidentified Infrared Band
- Impact of PAH photodissociation on the formation of small hydrocarbons in the Orion Bar and the Horsehead PDRs
- XSHOOTER spectroscopy of the enigmatic planetary nebula Lin49 in the Small Magellanic Cloud
- Detection of Cosmic Fullerenes in the Almahata Sitta Meteorite: Are They an Interstellar Heritage?
- Intermediate-size fullerenes as degradation products of interstellar PAHs
- The Role of Terahertz and Far-IR Spectroscopy in Understanding the Formation and Evolution of Interstellar Prebiotic Molecules
- The EDIBLES survey V: Line profile variations in the 5797, 6379, and 6614 diffuse interstellar bands as a tool to constrain carrier sizes
- Ion-Induced Molecular Growth in Clusters of Small Hydrocarbon Chains
- Orion Bar as a window to the evolution of PAHs
- Efficiency of the top-down PAH-to-fullerene conversion in UV irradiated environments
- Photofragmentation of Corannulene (C20H10) and Sumanene (C21H12) cations in gas phase and its Astrophysical implications
- Top-down formation of ethylene from fragmentation of superhydrogenated polycyclic aromatic hydrocarbons
- Hydrogenation of C carbon clusters : structural diversity and energetic properties
- Laser-induced fragmentation of coronene cations
- Ethynyl around the HII regions S255 and S257
- Fullerenes in the circumstellar medium of Herbig Ae/Be stars: Insights from the Spitzer mid-infrared spectral catalog
- A derivation of nano-diamond optical constants: Here be nano-diamonds
- PAH Spectral Diversity in NGC 7027 and the Evolution of Aromatic Carriers
- Chemical compositions in the vicinity of protostars in Ophiuchus
- Theoretical studies of carbon isotopic fractionation in reactions of C with C: dynamics, kinetics, and isotopologue equilibria
- Carbon accretion and desorption by interstellar polycyclic aromatic hydrocarbons
- Tracing PAH Size in Prominent Nearby Mid-Infrared Environments
- Aromatic Species in the Molecular Universe
- Stability of C Knockout Fragments from Femtoseconds to Infinity
- JWST observations of photodissociation regions. IV. Carbonaceous emission band sub-components in NGC 7023 have distinct spatial distributions
- Families and Clusters of Diffuse Interstellar Bands: a Data-Driven Correlation Analysis