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采用模拟退火和密度泛函理论计算了氯化铵团簇(NH4Cl)n、(NH4+)(NH4Cl)n 和(Cl-)(NH4Cl)n(n=1-13)的结构和能量性质。

Simulated annealing and density functional theory calculations of structural and energetic properties of the ammonium chloride clusters (NH4Cl)n, (NH4+)(NH4Cl)n, and (Cl-)(NH4Cl)n, n = 1-13.

机构信息

Department of Chemistry, The Cooper Union for the Advancement of Science and Art, 41 Cooper Square, New York, New York 10003, USA.

出版信息

J Phys Chem A. 2011 Sep 29;115(38):10423-32. doi: 10.1021/jp2069732. Epub 2011 Aug 31.

DOI:10.1021/jp2069732
PMID:21851071
Abstract

Simulated annealing Monte Carlo conformer searches using the "mag-walking" algorithm are employed to locate the global minima of molecular clusters of ammonium chloride of the types (NH(4)Cl)(n), (NH(4)(+))(NH(4)Cl)(n), and (Cl(-))(NH(4)Cl)(n) with n = 1-13. The M06-2X density functional theory method is used to refine and predict the structures, energies, and thermodynamic properties of the neutral, cation, and anion clusters. For selected small clusters, the resulting structures are compared to those obtained from a variety of models and basis sets, including RI-MP2 and B3LYP calculations. M06-2X calculations predict enhanced stability of the (NH(4)(+))(NH(4)Cl)(n) clusters when n = 3, 6, 8, and 13. This prediction corresponds favorably to anomalies previously observed in thermospray mass spectroscopy experiments. The (NH(4)Cl)(n) clusters show alternations in stability between even and odd values of n. Clusters of the type (Cl(-))(NH(4)Cl)(n) display a magic number distribution different from that of the cation clusters, with enhanced stability predicted for n = 2, 6, and 11. None of the observed cluster structures resemble the room-temperature CsCl structure of NH(4)Cl(s), which is consistent with previous work. Numerous clusters have structures reminiscent of the higher-temperature, rock-salt phase of the solid ammonium halides.

摘要

采用“磁游走”算法的模拟退火蒙特卡罗构象搜索用于定位氯化铵分子簇(NH(4)Cl)(n)、(NH(4)(+))(NH(4)Cl)(n)和(Cl(-))(NH(4)Cl)(n)的类型,其中 n = 1-13 的全局最小值。使用 M06-2X 密度泛函理论方法来细化和预测中性、阳离子和阴离子簇的结构、能量和热力学性质。对于选定的小簇,将得到的结构与各种模型和基组(包括 RI-MP2 和 B3LYP 计算)获得的结构进行比较。M06-2X 计算预测当 n = 3、6、8 和 13 时,(NH(4)(+))(NH(4)Cl)(n) 簇的稳定性增强。这一预测与先前在热喷雾质谱实验中观察到的异常情况相符。(NH(4)Cl)(n) 簇在 n 为偶数和奇数时显示出稳定性的交替。(Cl(-))(NH(4)Cl)(n) 类型的簇显示出与阳离子簇不同的魔术数字分布,预测 n = 2、6 和 11 时稳定性增强。观察到的簇结构都不像 NH(4)Cl(s)的室温 CsCl 结构,这与以前的工作一致。许多簇的结构让人联想到固体卤化铵的高温岩盐相。

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