- The RAHIIA project View project Radical Analysis and Reactivity In Cometary ICes (RARICI) View project Grégoire Danger Aix-Marseille Université 80 PUBLICATIONS 720 CITATIONS SEE PROFILEInternational audienceReactivity in astrophysical environments is still poorly understood. In this contribution, we investigate the thermal reactivity of interstellar ice analogs containing acetone ((CH3)2CO), ammonia (NH3), hydrogen cyanide (HCN) and water (H2O) by means of infrared spectroscopy and mass spectrometry techniques, complemented by quantum chemical calculations. We show that no reaction occurs in H2O:HCN:(CH3)2CO ices. Nevertheless, HCN does indeed react with acetone once activated by NH3 into CN- to form 2-hydroxy-2-methylpropanenitrile (HO-C...
Following the discovery of new process and environments, astrochemistry is the subject of a renewed ...
Context. The study of the chemical reactivity in interstellar ices in astrophysical enviro...
The interstellar ices are mainly composed of CO, H2O, NH3, .... Under a luminous flow coming from st...
- The RAHIIA project View project Radical Analysis and Reactivity In Cometary ICes (RARICI) View pro...
International audienceThe understanding of compound formation in laboratory simulated astrophysical ...
WOS:000342922100013International audienceWater is the most abundant compound in interstellar and com...
International audienceWe have developed a new laboratory approach to investigate the evolution of in...
We have developed a new laboratory approach to investigate the evolution of interstellar i...
WOS:000317632700055International audienceWe have developed a new laboratory approach to investigate ...
Context. Studing chemical reactivity in astrophysical environments is an important means f...
Current gas phase models do not account for the abundances of HNCO isomers detected in vari-ous envi...
International audienceThe reactivity in astrophysical environments can be investigated in the labora...
International audienceAstronomy & Astrophysics Experimental investigation of aminoacetonitrile forma...
Following the discovery of new process and environments, astrochemistry is the subject of a renewed ...
Context. The study of the chemical reactivity in interstellar ices in astrophysical enviro...
The interstellar ices are mainly composed of CO, H2O, NH3, .... Under a luminous flow coming from st...
- The RAHIIA project View project Radical Analysis and Reactivity In Cometary ICes (RARICI) View pro...
International audienceThe understanding of compound formation in laboratory simulated astrophysical ...
WOS:000342922100013International audienceWater is the most abundant compound in interstellar and com...
International audienceWe have developed a new laboratory approach to investigate the evolution of in...
We have developed a new laboratory approach to investigate the evolution of interstellar i...
WOS:000317632700055International audienceWe have developed a new laboratory approach to investigate ...
Context. Studing chemical reactivity in astrophysical environments is an important means f...
Current gas phase models do not account for the abundances of HNCO isomers detected in vari-ous envi...
International audienceThe reactivity in astrophysical environments can be investigated in the labora...
International audienceAstronomy & Astrophysics Experimental investigation of aminoacetonitrile forma...
Following the discovery of new process and environments, astrochemistry is the subject of a renewed ...
Context. The study of the chemical reactivity in interstellar ices in astrophysical enviro...
The interstellar ices are mainly composed of CO, H2O, NH3, .... Under a luminous flow coming from st...