The commissioning of the ALMA array and the next generation of space telescopes heralds the dawn of a new age of Astronomy, in which the role of chemistry in the interstellar medium and in star and planet formation may be quantified. A vital part of these studies will be to determine the molecular complexity in these seemingly hostile regions and explore how molecules are synthesised and survive. The current hypothesis is that many of these species are formed within the ice mantles on interstellar dust grains with irradiation by UV light or cosmic rays stimulating chemical reactions. However, such irradiation releases many secondary electrons which may themselves induce chemistry. In this article we discuss the potential role of such electr...
In 2016, unambiguous evidence for the presence of the amino acid glycine, an important prebiotic mol...
More than 200 molecules have so far been detected in the interstellar medium (ISM), of which close t...
The cross-disciplinary field of astrochemistry exists to understand the formation, destruction, and ...
The commissioning of the ALMA array and the next generation of space telescopes heralds the dawn of ...
Electron-induced reactions play a key-role in astrochemical processes as vast numbers of secondary e...
The region of space between stars, the interstellar medium, has been found to contain over 160 chemi...
Many environments in space contain very low temperature mixed molecular ices that are exposed to ion...
Ices in astrophysical environments are generally dominated by very simple molecules like H2O, CH3OH,...
The chemistry that occurs in space is considerably different from what we are used to in a planetary...
An overview is given of the chemical processes that; occur in primordial systems under the influence...
The organic chemistry occurring in interstellar environments may lead to the production of complex m...
In this thesis chemical and physical processes in the ice mantles on interstellar dust grains are st...
Despite the low temperatures (T less than 20K), low pressures, and low molecular densities found in ...
More than 200 molecules have so far been detected in the interstellar medium (ISM), of which close t...
Astrochemistry and molecular astrophysics are often used as synonyms to define an interdisciplinary...
In 2016, unambiguous evidence for the presence of the amino acid glycine, an important prebiotic mol...
More than 200 molecules have so far been detected in the interstellar medium (ISM), of which close t...
The cross-disciplinary field of astrochemistry exists to understand the formation, destruction, and ...
The commissioning of the ALMA array and the next generation of space telescopes heralds the dawn of ...
Electron-induced reactions play a key-role in astrochemical processes as vast numbers of secondary e...
The region of space between stars, the interstellar medium, has been found to contain over 160 chemi...
Many environments in space contain very low temperature mixed molecular ices that are exposed to ion...
Ices in astrophysical environments are generally dominated by very simple molecules like H2O, CH3OH,...
The chemistry that occurs in space is considerably different from what we are used to in a planetary...
An overview is given of the chemical processes that; occur in primordial systems under the influence...
The organic chemistry occurring in interstellar environments may lead to the production of complex m...
In this thesis chemical and physical processes in the ice mantles on interstellar dust grains are st...
Despite the low temperatures (T less than 20K), low pressures, and low molecular densities found in ...
More than 200 molecules have so far been detected in the interstellar medium (ISM), of which close t...
Astrochemistry and molecular astrophysics are often used as synonyms to define an interdisciplinary...
In 2016, unambiguous evidence for the presence of the amino acid glycine, an important prebiotic mol...
More than 200 molecules have so far been detected in the interstellar medium (ISM), of which close t...
The cross-disciplinary field of astrochemistry exists to understand the formation, destruction, and ...