Simultaneous Hydrogenation and UV-photolysis Experiments of NO in CO-rich Interstellar Ice Analogues; linking HNCO, OCN-, NH2CHO and NH2OH
arXiv:1706.00736 · doi:10.1093/mnras/stw1028
Abstract
The laboratory work presented here, simulates the chemistry on icy dust grains as typical for the 'CO freeze-out stage' in dark molecular clouds. It differs from previous studies in that solid-state hydrogenation and vacuum UV-photoprocessing are applied simultaneously to co-depositing molecules. In parallel, the reactions at play are described for fully characterized laboratory conditions. The focus is on the formation of molecules containing both carbon and nitrogen atoms, starting with NO in CO-, H2CO-, and CH3OH-rich ices at 13 K. The experiments yield three important conclusions. 1. Without UV-processing hydroxylamine (NH2OH) is formed, as reported previously. 2. With UV-processing (energetic) NH2 is formed through photodissociation of NH2OH. This radical is key in the formation of species with an N-C bond. 3. The formation of three N-C bearing species, HNCO, OCN- and NH2CHO is observed. The experiments put a clear chemical link between these species; OCN- is found to be a direct derivative of HNCO and the latter is shown to have the same precursor as formamide (NH2CHO). Moreover, the addition of VUV competing channels decreases the amount of NO molecules converted into NH2OH by at least one order of magnitude. Consequently, this decrease in NH2OH formation yield directly influences the amount of NO molecules that can be converted into HNCO, OCN- and NH2CHO.
References in corpus (12)
- Testing grain-surface chemistry in massive hot-core regions
- Atom addition reactions in interstellar ice analogues
- Shedding light on the formation of the pre-biotic molecule formamide with ASAI
- An interferometric study of the low-mass protostar IRAS 16293-2422: small scale organic chemistry
- Spatial mapping of ices in the Oph-F core: A direct measurement of CO depletion and the formation of CO2
- Molecules with a peptide link in protostellar shocks: a comprehensive study of L1157
- Low Temperature Surface Formation of NH3 and HNCO: hydrogenation of nitrogen atoms in CO-rich interstellar ice analogues
- CO2 formation in quiescent clouds; an experimental study of the CO + OH pathway
- Hydrogenation at low temperatures does not always lead to saturation: the case of HNCO
- Efficient Surface Formation Route of Interstellar Hydroxylamine through NO Hydrogenation II: the multilayer regime in interstellar relevant ices
- Formation of hydroxylamine on dust grains via ammonia oxidation
- Search for methylamine in high mass hot cores
Cited by in corpus (44)
- Astrochemistry During the Formation of Stars
- Seeds Of Life In Space (SOLIS): The organic composition diversity at 300--1000 au scale in Solar-type star forming regions
- Seeds of Life in Space (SOLIS) III. Formamide in protostellar shocks: evidence for gas-phase formation
- Formation of Glycerol through Hydrogenation of CO ice under Prestellar Core Conditions
- Chemical modelling of complex organic molecules with peptide-like bonds in star-forming regions
- Complex organic molecules in low-mass protostars on solar system scales -- I. Oxygen-bearing species
- Interstellar formamide (NHCHO), a key prebiotic precursor
- ALMA Detection of Interstellar Methoxymethanol (CHOCHOH)
- Production of complex organic molecules: H-atom addition versus UV irradiation
- Evolutionary study of complex organic molecules in high-mass star-forming regions
- Complex organic molecules in low-mass protostars on Solar System scales -- II. Nitrogen-bearing species
- Complex Organic Molecules Towards Embedded Low-Mass Protostars
- Formation of NH2CHO and CH3CHO upon UV photoprocessing of interstellar ice analogs
- The ALMA-PILS survey: First detection of nitrous acid (HONO) in the interstellar medium
- The GUAPOS project II. A comprehensive study of peptide-like bond molecules
- Formation of complex molecules in translucent clouds: Acetaldehyde, vinyl alcohol, ketene, and ethanol via nonenergetic processing of C2H2 ice
- Chemical Variation among Protostellar Cores: Dependence on Prestellar Core Conditions
- N-bearing complex organics toward high-mass protostars: Constant ratios pointing to formation in similar pre-stellar conditions across a large mass range
- An overview of desorption parameters of Volatile and Complex Organic Molecules: A systematic dig on experimental literature
- Amides inventory towards the G+0.693-0.027 molecular cloud
- Digging into the Interior of Hot Cores with ALMA (DIHCA). III: The Chemical Link between NHCHO, HNCO, and HCO
- Discovery of thionylimide, HNSO, in space: the first N-, S- and O-bearing interstellar molecule
- The hunt for formamide in interstellar ices: A toolkit of laboratory infrared spectra in astronomically relevant ice mixtures and comparisons to ISO, Spitzer, and JWST observations
- Formation of the simplest amide in molecular clouds: formamide (NHCHO) and its derivatives in HO-rich and CO-rich interstellar ice analogs upon VUV irradiation
- A major asymmetric ice trap in a planet-forming disk IV. Nitric oxide gas and a lack of CN tracing sublimating ices and a C/O ratio
- Enhanced formation of interstellar complex organic molecules on carbon monoxide ice
- Molecular Distributions of the Disk/Envelope System of L483: Principal Component Analysis for the Image Cube Data
- Near-infrared spectroscopy of a massive young stellar object in the direction toward the Galactic Center: XCN and aromatic C-D features
- Peptide Bonds in the Interstellar Medium: Facile Autocatalytic Formation from Nitriles on Water-Ice Grains
- CHEMOUT: CHEMical complexity in star-forming regions of the OUTer Galaxy. II. Methanol formation at low metallicity
- Processing of hydroxylamine, NH2OH, an important prebiotic precursor, on interstellar ices
- Exploring the chemistry induced by energetic processing of the H2-bearing, CO-rich apolar ice layer
- The efficient photodesorption of nitric oxide (NO) ices A laboratory astrophysics study
- Catalytic role of HI in the interstellar synthesis of complex organic molecule
- Identifying the most constraining ice observations to infer molecular binding energies
- Complex Organic Molecules towards the central molecular zone of NGC 253
- CAB: Towards the RNA-world in the interstellar medium -- detection of urea, and search of 2-amino-oxazole and simple sugars
- Investigating solid-state CH3OH formation with chemical modelling
- Hydroxylamine in Astrophysical Ices: IR Spectra and Cosmic Ray-Induced Radiolytic Chemistry
- Post-Outburst Chemistry in a Very Low-Luminosity Object: Peculiar High Abundance of Nitric Oxide
- Mapping Interstellar Ice Inventory toward Class 0 Protostars in Star-forming Region Orion A with JWST Data
- Sub-arcsecond Imaging of the Complex Organic Chemistry in Massive Star-forming Region G10.6-0.4
- Spatial distribution of organics in the Horsehead nebula: Signposts of chemistry driven by atomic carbon
- Hunting for methanol in the water rich, planet forming disk around HL Tau