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相关论文: Rate constants and product yields for the C + CH3C…

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Atomic carbon in its ground electronic state, C(3P), is expected to be present at high abundances during the evolution of dense molecular clouds. Consequently, its reactions with other interstellar species could have a strong influence on…

星系天体物理 · 物理学 2024-05-03 Kevin M. Hickson , Jean-Christophe Loison , Valentine Wakelam

The reactions of ground state atomic carbon, C(3P), are likely to be important in astrochemistry due to the high abundance levels of these atoms in the dense interstellar medium. Here we present a study of the gas-phase reaction between…

星系天体物理 · 物理学 2023-09-15 Kevin M. Hickson , Jean-Christophe Loison , Valentine Wakelam

Rate constants have been measured for the C(3P) + CH3CN reaction between 50 K and 296 K using a continuous-flow supersonic reactor. C(3P) atoms were created by the in-situ pulsed laser photolysis of CBr4 at 266 nm, while the kinetics of…

星系天体物理 · 物理学 2021-03-26 Kevin M. Hickson , Jean-Christophe Loison , Valentine Wakelam

Rate constants for the C(3P) + CH3OH reaction have been measured in a continuous supersonic flow reactor over the range 50 K to 296 K. C(3P) was created by the in-situ pulsed laser photolysis of CBr4, a multiphoton process which also…

The reaction between atomic carbon in its ground electronic state, C(3P), and nitrous oxide, N2O, has been studied below room temperature due to its potential importance for astrochemistry, with both species considered to be present at high…

A continuous supersonic flow reactor has been used to measure rate constants for the C + NH3 reaction over the temperature range 50 to 296 K. C atoms were created by the pulsed laser photolysis of CBr4. The kinetics of the title reaction…

Context: Hydrogenation reactions are expected to be among the most important surface reactions on interstellar ices. However, solid state astrochemical laboratory data on reactions of H-atoms with common interstellar ice constituents are…

天体物理学 · 物理学 2009-11-13 S. E. Bisschop , G. W. Fuchs , E. F. van Dishoeck , H. Linnartz

The product formation channels of ground state carbon atoms, C(3P), reacting with ammonia, NH3, have been investigated using two complementary experiments and electronic structure calculations. Reaction products are detected in a gas flow…

We sought to determine which are the main hydrogenation paths of acetaldehyde (CH3CHO). As a partially unsaturated molecule, CH3CHO can have links with more hydrogenated species, like ethanol (C2H5OH) or with more unsaturated ones, like…

星系天体物理 · 物理学 2025-02-26 Germán Molpeceres , Thanh Nguyen , Yasuhiro Oba , Naoki Watanabe

Atomic oxygen in its first excited singlet state, O(1 D), is an important species in the photochemistry of several planetary atmospheres and has been predicted to be a potentially important reactive species on interstellar ices. Here, we…

化学物理 · 物理学 2022-07-25 Kevin K. M. Hickson , Jean-Christophe Loison

Rate coefficients have been measured for the reaction of CH radicals with formaldehyde, CH$_{2}$O, over the temperature range 31 - 133 K using a pulsed Laval nozzle apparatus combined with pulsed laser photolysis and laser induced…

太阳与恒星天体物理 · 物理学 2020-01-08 Niclas A. West , Tom J. Millar , Marie Van de Sande , Edward Rutter , Mark A. Blitz , Leen Decin , Dwayne E. Heard

The atomic hydrogen formation channels of the C + C2H2 reaction have been investigated using a continuous supersonic flow reactor over the 52 K 296 K temperature range. H-atoms were detected directly at 121.567 nm by vacuum ultraviolet…

星系天体物理 · 物理学 2016-08-03 Kevin M. Hickson , Jean-Christophe Loison , Valentine Wakelam

Interstellar grains are known to be important actors in the formation of interstellar molecules such as H$_2$, water, ammonia, and methanol. It has been suggested that the so-called interstellar complex organic molecules (iCOMs) are also…

In the last years, ultra-low temperature chemical kinetic experiments have demonstrated that some gas-phase reactions are much faster than previously thought. One example is the reaction between OH and CH3OH, which has been recently found…

星系天体物理 · 物理学 2016-05-25 M. Antinolo , M. Agundez , E. Jimenez , B. Ballesteros , A. Canosa , G. El Dib , J. Albaladejo , J. Cernicharo

Rate constants for the N + C2 reaction have been measured in a continuous supersonic flow reactor over the range 57 K to 296 K by the relative rate technique employing the N + OH - H + NO reaction as a reference. Excess concentrations of…

星系天体物理 · 物理学 2017-09-13 Jean-Christophe Loison , Xixi Hu , Shanyu Han , Kevin M. Hickson , Hua Guo , Daiqian Xie

The kinetics of the reactions of nitrogen dioxide, NO$_2$, with atomic oxygen and atomic carbon in their ground triplet states ($^3$P) have been studied at room temperature and below using a supersonic flow (Laval nozzle) reactor. O($^3$P)…

星系天体物理 · 物理学 2024-12-03 Kevin M. Hickson , Jean-Christophe Loison

The radicals HCO and CH$_3$ on carbon monoxide ice surfaces were simulated using density functional theory. Their binding energy on amorphous CO ice shows broad distributions, with approximative average values of 500 K for HCO and 200 K for…

星系天体物理 · 物理学 2019-04-16 Thanja Lamberts , Max N. Markmeyer , Florian J. Kolb , Johannes Kästner

We have investigated the chemistry of ${\rm C + H_3^+}$ forming CH$^+$, CH$_2^+$, and CH$_3^+$. These reactions are believed to be some of the key gas-phase astrochemical processes initiating the formation of organic molecules in molecular…

天体物理仪器与方法 · 物理学 2015-07-15 A. P. O'Connor , X. Urbain , J. Stützel , K. A. Miller , N. de Ruette , M. Garrido , D. W. Savin

Rate constants for the potentially important interstellar N(4S) + CH(X2{\Pi}r) reaction have been measured in a continuous supersonic flow reactor over the range 56 K < T < 296 K using the relative rate technique employing both the N(4S) +…

Acetaldehyde (CH$_3$CHO) is one of the most detected interstellar Complex Organic Molecule (iCOM) in the interstellar medium (ISM). These species have a potential biological relevance, as they can be precursors of more complex species from…

星系天体物理 · 物理学 2023-08-15 Jessica Perrero , Piero Ugliengo , Cecilia Ceccarelli , Albert Rimola
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