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HNO自由基与O2反应机理的理论研究
引用本文:胡威,陈淑勇,刘伯潭. HNO自由基与O2反应机理的理论研究[J]. 无机化学学报, 2016, 32(10): 1757-1762
作者姓名:胡威  陈淑勇  刘伯潭
作者单位:天津大学化工学院, 天津 300072,蚌埠玻璃工业设计研究院, 浮法玻璃新技术国家重点实验室, 蚌埠 233000,天津科技大学化工与材料科学学院, 天津 300457
基金项目:低成本低能耗CO2捕集技术开发与示范(No.2015BAC04B01)教育部资助项目。
摘    要:采用密度泛函理论(DFT)和从头算方法,在B3LYP/6-311++G(d,p)水平上对反应HNO+O_2做了理论计算研究。优化得到了反应物、中间体、过渡态和产物的几何构型以及相应的能量值、振动频率。通过分析反应路径的能量差异,以及异构化难易程度,发现HNO+O_2反应有2种产物通道:HOONO和HNO_3。其中过氧亚硝酸HOONO是主要产物,有3种稳定的构象。

关 键 词:密度泛函理论计算  反应机理  亚硝酰氢  氧气
收稿时间:2016-03-30
修稿时间:2016-09-06

Theoretical Mechanism Study of the HNO+O2 Reaction
HU Wei,CHEN Shu-Yong and LIU Bo-Tan. Theoretical Mechanism Study of the HNO+O2 Reaction[J]. Chinese Journal of Inorganic Chemistry, 2016, 32(10): 1757-1762
Authors:HU Wei  CHEN Shu-Yong  LIU Bo-Tan
Affiliation:School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China,State Key Laboratory for Advanced Technology of Float Glass, Bengbu Design & Research Institute for Glass Industry, Bengbu, Anhui 233000, China and College of Chemical Engineering & Material Science, Tianjin University of Science & Technology, Tianjin 300457, China
Abstract:In order to figure out the reaction mechanisms of HNO radical with O2,a detailed theoretical study was performed. Reveal the microscopic reaction mechanism and provide theoretical support for the protection of the air. The geometry configurations of reactants,intermediates,transition states and products were optimized so that their harmonic vibration frequencies and energies were obtained at the B3LYP/6-311++G(d, p) level. Intrinsic reaction coordinate calculations at the same level were computed to ensure the connections between transition states and intermediates. The energies were confirmed by single-point calculated at the QCISD/6-311++G(d, p),and all the total energies were corrected by the zero-point energy. Through analyzing the energy and isomerization of the reaction paths,it is found that HNO+O2 possesses two products:HOONO and HNO3. HOONO is the main product,and it has three isomers.
Keywords:density functional calculations  reaction mechanisms  HNO  O2
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