Revealing the photochemical pathways of nitrate in water through first-principles simulations

K Kam-Tung Chan (Department of Chemistry, University of California 1 , Davis, California 95616,) M Margaret L. Berrens (Physical and Life Sciences Directorate) Z Zekun Chen (School of Biomedical Sciences and Engineering, Guangzhou International Campus) C C. William McCurdy (Chemical Sciences Division, Lawrence Berkeley National Laboratory 2 , Berkeley, California 94720,) C Cort Anastasio (Department of Land, Air, and Water Resources, University of California 4 , Davis, California 95616,) D Davide Donadio (Department of Chemistry)

Abstract

The nitrate anion (NO3−) is abundant in environmental aqueous phases, including aerosols, surface waters, and snow, where its photolysis releases nitrogen oxides back into the atmosphere. Nitrate photolysis occurs via two channels: (1) the formation of NO2 and O− and (2) the formation of NO2− and O(3P). The occurrence of two reaction channels with very low quantum yield (∼1%) highlights the critical role of the solvation environment and spin-forbidden electronic transitions, which remain unexplained at the molecular level. We investigate the two photolysis channels in water using quantum chemical calculations and first-principles molecular dynamics simulations with hybrid density functional theory and enhanced sampling. We find that spin-forbidden absorption to the triplet state (T1) is possible but occurs at a rate ∼15 times weaker than the spin-allowed transition to the singlet state (S1). A metastable solvation cage complex requires additional thermal energy to dissociate the N–O bond, allowing for recombination or non-radiative deactivation. Our results explain the temperature dependence of photolysis, linked to hydrogen bond rearrangement in the solvation shell. This work provides new molecular insights into nitrate photolysis and its low quantum yield under environmental conditions.

Article Details

Volume / Issue Vol. 162, Issue 14
Published April 14, 2025
ISSN 0021-9606
Publisher American Institute of Physics

Journal Info

The Journal of Chemical Physics

American Institute of Physics

ISSN: 0021-9606 Physical Sciences

Authors (6)

K

Kam-Tung Chan

Department of Chemistry, University of California 1 , Davis, California 95616,

M

Margaret L. Berrens

Physical and Life Sciences Directorate

Z

Zekun Chen

School of Biomedical Sciences and Engineering, Guangzhou International Campus

C

C. William McCurdy

Chemical Sciences Division, Lawrence Berkeley National Laboratory 2 , Berkeley, California 94720,

C

Cort Anastasio

Department of Land, Air, and Water Resources, University of California 4 , Davis, California 95616,

D

Davide Donadio

Department of Chemistry