“…Most of the experimental studies were carried out in the mid-70s to mid-80s (Margitan et al, 1975;Smith and Zellner, 1975;Wine et al, 1981;Jourdain et al, 1982;Kurylo et al, 1982;Margitan and Watson, 1982;Marinelli and Johnston, 1982;Ravishankara et al, 1982;Devolder et al, 1984;Smith et al, 1984;Connell and Howard, 1985;Jolly et al, 1985;Stachnik et al, 1986) with only the most recent and comprehensive studies of the reaction (Brown et al, 1999(Brown et al, , 2001) extending the temperature range to those found at the tropopause. Experimental (Carl et al, 2001;McCabe et al, 2003;O'Donnell et al, 2008b) and theoretical (Xia and Lin, 2001;Gonzalez and Anglada, 2010) work examining the details of the reaction mechanism highlight continuing interest in this complex reaction, which proceeds via formation of a pre-reaction complex, HO-HNO 3 (Aloisio and Francisco, 1999;Brown et al, 1999Brown et al, , 2001Xia and Lin, 2001;O'Donnell et al, 2008a). HO-HNO 3 can (a) dissociate into reactants, (b) rearrange to form products via a transition state which lies somewhat higher in energy than the reactants or (c) experience collisional deactivation by bath gas molecules.…”