全氟四苯甲酸二钼和全氟环己酸银:合成、蒸发和热力学特性

IF 1.1 3区 化学 Q4 CHEMISTRY, INORGANIC & NUCLEAR
D. B. Kayumova, I. P. Malkerova, D. S. Yambulatov, A. A. Sidorov, I. L. Eremenko, A. S. Alikhanyan
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引用次数: 0

摘要

摘要 首次合成了无水全氟四苯甲酸二钼 Мо2(ООСС6F5)4 (I) 和全氟环己酸银 AgOOCC6F11 (II)。络合物 I 是通过四乙酸二钼与五氟苯甲酸的反羧化反应合成的。化合物 II 由新制备的氧化银和全氟环己酸合成。利用克努森方法和气相质谱分析法研究了络合物的蒸发过程。Мо2(ООСС6F5)4的升华是全同的。由此可求得升华焓和蒸汽压随温度变化的方程式。AgOOCC6F11 的蒸发伴随着完全热分解,形成 Ag(s)和主要的 С6F12、С6F10 和 CO2 分子。标准热分解焓 (\({{\Delta }_{r}}H_{{298.15}}^{^\circ }\)(5) = 439.5 ± 16.4 kJ/mol, \({{\Delta }_{r}}H_{{298.15}}^{^\circ }\)(6) = 325.2 ± 14.0 kJ/mol)和银复合物的形成(\({{\Delta }_{f}}H_{{298.15}}^{^\circ }\) (AgOOCC6F11, c) = -2751.0 ± 24.4 kJ/mol)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Dimolybdenum Perfluorotetrabenzoate and Silver Perfluorocyclohexanoate: Synthesis, Evaporation, and Thermodynamic Characteristics

Dimolybdenum Perfluorotetrabenzoate and Silver Perfluorocyclohexanoate: Synthesis, Evaporation, and Thermodynamic Characteristics

Dimolybdenum Perfluorotetrabenzoate and Silver Perfluorocyclohexanoate: Synthesis, Evaporation, and Thermodynamic Characteristics

Anhydrous dimolybdenum perfluorotetrabenzoate Мо2(ООСС6F5)4 (I) and silver perfluorocyclohexanoate AgOOCC6F11 (II) are synthesized for the first time. Complex I is synthesized by the transcarboxylation of dimolybdenum tetraacetate with pentafluorobenzoic acid. Compound II is synthesized from freshly prepared silver oxide and perfluorocyclohexanoic acid. The evaporation of the complexes is studied by the Knudsen method with mass spectral analysis of the gas phase. The sublimation of Мо2(ООСС6F5)4 is congruent. The enthalpy of sublimation and the equation of the temperature dependence of the vapor pressure are found. The evaporation of AgOOCC6F11 is accompanied by the complete thermal decomposition with the formation of Ag(s) and mainly С6F12, С6F10, and CO2 molecules. The standard enthalpies of thermal decomposition (\({{\Delta }_{r}}H_{{298.15}}^{^\circ }\)(5) = 439.5 ± 16.4 kJ/mol, \({{\Delta }_{r}}H_{{298.15}}^{^\circ }\)(6) = 325.2 ± 14.0 kJ/mol) and formation of the silver complex (\({{\Delta }_{f}}H_{{298.15}}^{^\circ }\) (AgOOCC6F11, c) = –2751.0 ± 24.4 kJ/mol) are determined.

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来源期刊
Russian Journal of Coordination Chemistry
Russian Journal of Coordination Chemistry 化学-无机化学与核化学
CiteScore
2.40
自引率
15.80%
发文量
85
审稿时长
7.2 months
期刊介绍: Russian Journal of Coordination Chemistry is a journal that publishes reviews, original papers, and short communications on all aspects of theoretical and experimental coordination chemistry. Modern coordination chemistry is an interdisciplinary science that makes a bridge between inorganic, organic, physical, analytical, and biological chemistry.
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