Thermodynamic Functions for N2 from the Total Partition Sum and its Moments

IF 4.4 2区 工程技术 Q2 CHEMISTRY, MULTIDISCIPLINARY Journal of Physical and Chemical Reference Data Pub Date : 2023-05-09 DOI:10.1063/5.0137083
R. Gamache, Nicholas G. Orphanos
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引用次数: 1

Abstract

The total partition sum, Q(T), and its first and second moments, Q′(T) and Q″(T), were determined in terms of the total internal partition sum, Qint(T), and the translational partition sum, Qtrans(T), for 14N2, 14N15N, and 15N2. The total internal partition sum was computed using term values determined using the molecular constants of Le Roy et al. [J. Chem. Phys. 125, 164310 (2006)] for the ground electronic state and molecular constants for the first eight excited electronic states. The work of Le Roy et al. provides the best term values available and, hence, the most accurate total internal partition sums and their first and second moments. The convergence of Qint(T) and its moments were carefully studied and resulted in values with small uncertainty to 9000 K. From these quantities, the isobaric heat capacity, the Helmholtz energy, the entropy, the enthalpy, the Gibbs function, and the JANAF functions S0, hef, and gef, were computed on a 1 K grid from 1 to 9000 K. The resulting thermodynamic quantities are the most accurately determined from the direct summation of Q(T), Q′(T) and Q″(T). These data are compared with literature values.
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由总配分和及其矩求N2的热力学函数
对于14N2、14N15N和15N2,总配分和Q(T)及其一阶和二阶矩Q′(T)和Q〃(T)是根据总内部配分和Qint(T)以及平移配分和Qtrans(T)确定的。使用使用Le Roy等人[J.Chem.Phys.125164310(2006)]的基态分子常数和前八个激发电子态的分子常数确定的项值来计算总内部分配和。Le Roy等人的工作提供了可用的最佳项值,因此提供了最准确的总内部划分和及其一阶和二阶矩。对Qint(T)及其矩的收敛性进行了仔细的研究,得到了不确定度小到9000K的值。根据这些量,等压热容、亥姆霍兹能量、熵、焓、吉布斯函数和JANAF函数S0、hef和gef在1到9000K的1K网格上计算。由此产生的热力学量是由Q(T)、Q′(T)和Q〃(T)的直接求和最准确地确定的。将这些数据与文献值进行比较。
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来源期刊
CiteScore
6.90
自引率
11.60%
发文量
14
审稿时长
>12 weeks
期刊介绍: The Journal of Physical and Chemical Reference Data (JPCRD) is published by AIP Publishing for the U.S. Department of Commerce National Institute of Standards and Technology (NIST). The journal provides critically evaluated physical and chemical property data, fully documented as to the original sources and the criteria used for evaluation, preferably with uncertainty analysis. Critical reviews may also be included if they document a reference database, review the data situation in a field, review reference-quality measurement techniques, or review data evaluation methods.
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