化学
水溶液
硫酸盐
过氧化物
Atom(片上系统)
反应机理
过氧化氢
反应速率
化学反应
光化学
无机化学
催化作用
有机化学
计算机科学
嵌入式系统
作者
Hao Li,Xiao Wang,Jie Zhong,Biwu Chu,Qingxin Ma,Xiao Cheng Zeng,Joseph S. Francisco,Hong He
标识
DOI:10.1002/anie.202105416
摘要
Abstract Aqueous reactions between organic peroxides and SO 2 are of intense interest in atmospheric science because of their ubiquitous implications for sulfate formation in secondary aerosols. However, the relative yields of the reaction products (inorganic vs. organic sulfates) remain controversial (i.e., 90 % vs. 40–70 % for inorganic sulfate) due in part to the lack of understanding of the underlying reaction mechanisms. Here, our computational results suggest that the reactions of HSO 3 − (dissolved SO 2 ) with organic peroxides are initiated on the surface of water nanodroplets and then proceed under two reaction pathways, in which the S atom of HSO 3 − attacks either the O1 or O2 atom of the peroxide group ‐O(O2)O(O1)H, leading to the formation of inorganic and organic sulfates, respectively. Notably, we find that thse reaction initiated by O1 atom exhibits a relatively low energy barrier and high reaction rate, which favours the formation of inorganic sulfate.
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