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Prebiotic NH3 Formation: Insights from Simulations
Author(s) -
András Stirling,
Tamás Rozgonyi,
Matthias Krack,
Marco Bernasconi
Publication year - 2016
Publication title -
inorganic chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.348
H-Index - 233
eISSN - 1520-510X
pISSN - 0020-1669
DOI - 10.1021/acs.inorgchem.5b02911
Subject(s) - metadynamics , chemistry , pyrite , abiogenesis , sulfur , reaction mechanism , ab initio , chemical physics , hydrothermal circulation , ammonia , computational chemistry , astrobiology , molecular dynamics , catalysis , chemical engineering , mineralogy , organic chemistry , physics , engineering
Simulations of prebiotic NH₃ synthesis from NO₃⁻ and NO₂⁻ on pyrite surfaces under hydrothermal conditions are reported. Ab initio metadynamics calculations have successfully explored the full reaction path which explains earlier experimental observations. We have found that the reaction mechanism can be constructed from stepwise single atom transfers which are compatible with the expected reaction time scales. The roles of the hot-pressurized water and of the pyrite surfaces have been addressed. The mechanistic picture that emerged from the simulations strengthens the theory of chemoautotrophic origin of life by providing plausible reaction pathways for the formation of ammonia within the iron-sulfur-world scenario.

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