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肼及其衍生物的生成焓。

Enthalpies of Formation of Hydrazine and Its Derivatives.

作者信息

Dorofeeva Olga V, Ryzhova Oxana N, Suchkova Taisiya A

机构信息

Faculty of Chemistry, Lomonosov Moscow State University , 1-3 Leninskie Gory, Moscow 119991, Russia.

出版信息

J Phys Chem A. 2017 Jul 20;121(28):5361-5370. doi: 10.1021/acs.jpca.7b04914. Epub 2017 Jul 5.

Abstract

Enthalpies of formation, ΔH, in both the gas and condensed phase, and enthalpies of sublimation or vaporization have been estimated for hydrazine, NHNH, and its 36 various derivatives using quantum chemical calculations. The composite G4 method has been used along with isodesmic reaction schemes to derive a set of self-consistent high-accuracy gas-phase enthalpies of formation. To estimate the enthalpies of sublimation and vaporization with reasonable accuracy (5-20 kJ/mol), the method of molecular electrostatic potential (MEP) has been used. The value of ΔH(NHNH,g) = 97.0 ± 3.0 kJ/mol was determined from 75 isogyric reactions involving about 50 reference species; for most of these species, the accurate ΔH(g) values are available in Active Thermochemical Tables (ATcT). The calculated value is in excellent agreement with the reported results of the most accurate models based on coupled cluster theory (97.3 kJ/mol, the average of six calculations). Thus, the difference between the values predicted by high-level theoretical calculations and the experimental value of ΔH(NHNH,g) = 95.55 ± 0.19 kJ/mol recommended in the ATcT and other comprehensive reference sources is sufficiently large and requires further investigation. Different hydrazine derivatives have been also considered in this work. For some of them, both the enthalpy of formation in the condensed phase and the enthalpy of sublimation or vaporization are available; for other compounds, experimental data for only one of these properties exist. Evidence of accuracy of experimental data for the first group of compounds was provided by the agreement with theoretical ΔH(g) value. The unknown property for the second group of compounds was predicted using the MEP model. This paper presents a systematic comparison of experimentally determined enthalpies of formation and enthalpies of sublimation or vaporization with the results of calculations. Because of relatively large uncertainty in the estimated enthalpies of sublimation, it was not always possible to evaluate the accuracy of the experimental values; however, this model allowed us to detect large errors in the experimental data, as in the case of 5,5'-hydrazinebistetrazole. The enthalpies of formation and enthalpies of sublimation or vaporization have been predicted for the first time for ten hydrazine derivatives with no experimental data. A recommended set of self-consistent experimental and calculated gas-phase enthalpies of formation of hydrazine derivatives can be used as reference ΔH(g) values to predict the enthalpies of formation of various hydrazines by means of isodesmic reactions.

摘要

利用量子化学计算方法,估算了肼(NHNH)及其36种衍生物在气相和凝聚相中的生成焓(ΔH)以及升华焓或汽化焓。采用复合G4方法并结合等键反应方案,推导出了一组自洽的高精度气相生成焓。为了以合理的精度(5 - 20 kJ/mol)估算升华焓和汽化焓,使用了分子静电势(MEP)方法。通过涉及约50种参考物种的75个等焓反应,确定了ΔH(NHNH,g) = 97.0 ± 3.0 kJ/mol;对于这些物种中的大多数,准确的ΔH(g)值可在活性热化学表(ATcT)中获取。计算值与基于耦合簇理论的最精确模型的报道结果(97.3 kJ/mol,六次计算的平均值)高度吻合。然而,高级理论计算预测值与ATcT及其他综合参考资料中推荐的ΔH(NHNH,g) = 95.55 ± 0.19 kJ/mol的实验值之间的差异足够大,需要进一步研究。本工作还考虑了不同的肼衍生物。对于其中一些衍生物,凝聚相中的生成焓以及升华焓或汽化焓均已获得;对于其他化合物,仅存在这些性质之一的实验数据。第一组化合物实验数据的准确性通过与理论ΔH(g)值的一致性得到了证明。第二组化合物的未知性质则使用MEP模型进行了预测。本文对实验测定的生成焓以及升华焓或汽化焓与计算结果进行了系统比较。由于估算的升华焓存在相对较大的不确定性,并非总能评估实验值的准确性;然而,该模型使我们能够检测到实验数据中的大误差,如5,5'-肼基双四唑的情况。首次预测了10种无实验数据的肼衍生物的生成焓以及升华焓或汽化焓。一组推荐的自洽的肼衍生物实验和计算气相生成焓可作为参考ΔH(g)值,通过等键反应预测各种肼的生成焓。

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