International audienceLaboratory experiments involving vacuum ultraviolet (VUV) irradiation of solid isocyanic acid (HNCO) at 10 K, followed by infrared spectroscopy (FTIR), are used to interpret the complex spectra associated with Interstellar Medium (ISM) dust grains, particularly the spectra associated with the icy phase observed toward dense molecular clouds. The comparison of the infrared spectra of the photolysis products with spectra recorded from the protostellar source NGC 7538 IRS9 shows that the "unexplained" 1700 cm(-1) feature can be attributed to the contribution of several species H2CO (formaldehyde), HCONH2 (formamide) and H2NCONH2 (urea) mixed with H2O as the main contributor. Urea, formaldehyde and NH4+OCN- (ammonium cyana...
More than 140 gas-phase molecules have been detected in the interstellar (IS) medium or in circumste...
International audienceInterstellar ices are submitted to energetic processes (thermal, UV, and cosmi...
Context. The increasing sensitivity and resolution of ground-based telescopes have enabled the detec...
International audienceLaboratory experiments involving vacuum ultraviolet (VUV) irradiation of solid...
Laboratory experiments involving vacuum ultraviolet (VUV) irradiation of solid isocyanic acid (HNCO)...
Context. Although solid-state pathways are expected to dominate the formation mechanisms of many com...
Context.The chemical evolution of formamide (HCONH2), a molecule of astrobiological interest that h...
The interstellar ices are mainly composed of CO, H2O, NH3, .... Under a luminous flow coming from st...
WOS:000317632700055International audienceWe have developed a new laboratory approach to investigate ...
International audienceWe have developed a new laboratory approach to investigate the evolution of in...
Studying the chemical evolution of the interstellar medium (ISM) is critical for understanding chemi...
Interstellar ices are submitted to energetic processes (thermal, UV, and cosmic-ray radiations) prod...
We have developed a new laboratory approach to investigate the evolution of interstellar i...
Context. Formamide (NH2HCO) and isocyanic acid (HNCO) have been observed as gaseous species in sever...
More than 140 gas-phase molecules have been detected in the interstellar (IS) medium or in circumste...
International audienceInterstellar ices are submitted to energetic processes (thermal, UV, and cosmi...
Context. The increasing sensitivity and resolution of ground-based telescopes have enabled the detec...
International audienceLaboratory experiments involving vacuum ultraviolet (VUV) irradiation of solid...
Laboratory experiments involving vacuum ultraviolet (VUV) irradiation of solid isocyanic acid (HNCO)...
Context. Although solid-state pathways are expected to dominate the formation mechanisms of many com...
Context.The chemical evolution of formamide (HCONH2), a molecule of astrobiological interest that h...
The interstellar ices are mainly composed of CO, H2O, NH3, .... Under a luminous flow coming from st...
WOS:000317632700055International audienceWe have developed a new laboratory approach to investigate ...
International audienceWe have developed a new laboratory approach to investigate the evolution of in...
Studying the chemical evolution of the interstellar medium (ISM) is critical for understanding chemi...
Interstellar ices are submitted to energetic processes (thermal, UV, and cosmic-ray radiations) prod...
We have developed a new laboratory approach to investigate the evolution of interstellar i...
Context. Formamide (NH2HCO) and isocyanic acid (HNCO) have been observed as gaseous species in sever...
More than 140 gas-phase molecules have been detected in the interstellar (IS) medium or in circumste...
International audienceInterstellar ices are submitted to energetic processes (thermal, UV, and cosmi...
Context. The increasing sensitivity and resolution of ground-based telescopes have enabled the detec...