International audienceComplex organic molecules (COMs) are detected in many regions of the interstellar medium, including prestellar cores. However, their formation mechanisms in cold (~10 K) cores remain to this date poorly understood. The formyl radical HCO is an important candidate precursor for several O-bearing terrestrial COMs in cores, as an abundant building block of many of these molecules. Several chemical routes have been proposed to account for its formation: on grain surfaces, as an incompletely hydrogenated product of H addition to frozen-out CO molecules; and in the gas phase, either as the product of the reaction between H2CO and a radical or as a product of dissociative recombination of protonated formaldehyde H2COH+. The d...
Context. Complex organic molecules (COMs) have long been detected in the interstellar medium, especi...
International audienceComplex organic molecules (COMs) have been detected in a variety of environmen...
International audienceMany complex organic molecules (hereafter COMs) have been detected in differen...
International audienceComplex organic molecules (COMs) are detected in many regions of the interstel...
Complex organic molecules (COMs) are detected in many regions of the interstellar medium, including ...
International audienceContext. The recent unexpected detection of terrestrial complex organic molecu...
Context. The recent unexpected detection of terrestrial complex organic molecules in the cold (~10 K...
Complex organic molecules (COMs) have long been observed in the warm regions surrounding nascent pro...
Author Institution: Herzberg Institute of Astrophysics, National Research Council of CanadaFormaldeh...
A new interstellar molecular ion, H2COH+ (protonated formaldehyde), has been detected toward Sgr B2,...
Context. Formic acid (HCOOH) and carbon dioxide (CO2) are simple species that have been detected in ...
International audienceContext. Complex organic molecules (COMs) have long been detected in the inter...
In the interstellar cold gas, the chemistry of formaldehyde (H$_2$CO) can be essential to explain th...
Context. Complex organic molecules (COMs) have long been detected in the interstellar medium, especi...
International audienceComplex organic molecules (COMs) have been detected in a variety of environmen...
International audienceMany complex organic molecules (hereafter COMs) have been detected in differen...
International audienceComplex organic molecules (COMs) are detected in many regions of the interstel...
Complex organic molecules (COMs) are detected in many regions of the interstellar medium, including ...
International audienceContext. The recent unexpected detection of terrestrial complex organic molecu...
Context. The recent unexpected detection of terrestrial complex organic molecules in the cold (~10 K...
Complex organic molecules (COMs) have long been observed in the warm regions surrounding nascent pro...
Author Institution: Herzberg Institute of Astrophysics, National Research Council of CanadaFormaldeh...
A new interstellar molecular ion, H2COH+ (protonated formaldehyde), has been detected toward Sgr B2,...
Context. Formic acid (HCOOH) and carbon dioxide (CO2) are simple species that have been detected in ...
International audienceContext. Complex organic molecules (COMs) have long been detected in the inter...
In the interstellar cold gas, the chemistry of formaldehyde (H$_2$CO) can be essential to explain th...
Context. Complex organic molecules (COMs) have long been detected in the interstellar medium, especi...
International audienceComplex organic molecules (COMs) have been detected in a variety of environmen...
International audienceMany complex organic molecules (hereafter COMs) have been detected in differen...