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一系列硝酰基化合物、硝烯、相应的亚硝酸盐及其碳中心自由基的结构、内转子势和热化学性质。

Structures, internal rotor potentials, and thermochemical properties for a series of nitrocarbonyls, nitroolefins, corresponding nitrites, and their carbon centered radicals.

机构信息

Department of Chemistry and Environmental Science, New Jersey Institute of Technology University Heights, Newark, New Jersey 07102, USA.

出版信息

J Phys Chem A. 2011 Dec 1;115(47):13921-30. doi: 10.1021/jp207622p. Epub 2011 Nov 8.

Abstract

Structures, enthalpy (Δ(f)H°(298)), entropy (S°(T)), and heat capacity (C(p)(T)) are determined for a series of nitrocarbonyls, nitroolefins, corresponding nitrites, and their carbon centered radicals using the density functional B3LYP and composite CBS-QB3 calculations. Enthalpies of formation (Δ(f)H°(298)) are determined at the B3LYP/6-31G(d,p), B3LYP/6-31+G(2d,2p), and composite CBS-QB3 levels using several work reactions for each species. Entropy (S) and heat capacity (C(p)(T)) values from vibration, translational, and external rotational contributions are calculated using the rigid-rotor-harmonic-oscillator approximation based on the vibration frequencies and structures obtained from the density functional studies. Contribution to Δ(f)H(T), S, and C(p)(T) from the analysis on the internal rotors is included. Recommended values for enthalpies of formation of the most stable conformers of nitroacetone cc(═o)cno2, acetonitrite cc(═o)ono, nitroacetate cc(═o)no2, and acetyl nitrite cc(═o)ono are -51.6 kcal mol(-1), -51.3 kcal mol(-1), -45.4 kcal mol(-1), and -58.2 kcal mol(-1), respectively. The calculated Δ(f)H°(298) for nitroethylene c═cno2 is 7.6 kcal mol(-1) and for vinyl nitrite c═cono is 7.2 kcal mol(-1). We also found an unusual phenomena: an intramolecular transfer reaction (isomerization) with a low barrier (3.6 kcal mol(-1)) in the acetyl nitrite. The NO of the nitrite (R-ONO) in CH(3)C(═O')ONO moves to the C═O' oxygen in a motion of a stretching frequency and then a shift to the carbonyl oxygen (marked as O' for illustration purposes).

摘要

使用密度泛函 B3LYP 和组合 CBS-QB3 计算方法,确定了一系列硝羰基化合物、硝烯烃、相应的亚硝酸盐及其碳中心自由基的结构、焓(Δ(f)H°(298))、熵(S°(T))和热容(C(p)(T))。使用每种物质的几个工作反应,在 B3LYP/6-31G(d,p)、B3LYP/6-31+G(2d,2p)和组合 CBS-QB3 水平上确定生成焓(Δ(f)H°(298))。利用刚性转子-简谐振荡器近似,根据从密度泛函研究中获得的振动频率和结构,计算了来自振动、平动和外部旋转贡献的熵(S)和热容(C(p)(T))值。包括了对内旋转体分析对Δ(f)H(T)、S 和 C(p)(T)的贡献。最稳定构象的硝丙酮 cc(═o)cno2、乙腈 cc(═o)ono、硝乙酸 cc(═o)no2 和乙酰亚硝 cc(═o)ono 的生成焓的推荐值分别为-51.6、-51.3、-45.4 和-58.2 kcal mol-1。计算的硝基乙烯 c═cno2 的Δ(f)H°(298)为 7.6 kcal mol-1,乙烯基亚硝 c═cono 的为 7.2 kcal mol-1。我们还发现了一种异常现象:在乙酰亚硝中存在一个低能垒(3.6 kcal mol-1)的分子内转移反应(异构化)。亚硝酸盐(R-ONO)中的 NO 在 CH3C(═O')ONO 中向 C═O'氧移动,以拉伸频率的运动,然后向羰基氧(为说明目的标记为 O')移动。

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