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首页> 外文期刊>Journal of thermal analysis and calorimetry >Thermoanalytical study of linkage isomerism in coordination compounds: Part II: Solid state stepwise thermal interconversion of dinitro and dinitrito linkage isomers of trans-bis(ethylenediamine)cobalt(III) hexafluorophosphate
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Thermoanalytical study of linkage isomerism in coordination compounds: Part II: Solid state stepwise thermal interconversion of dinitro and dinitrito linkage isomers of trans-bis(ethylenediamine)cobalt(III) hexafluorophosphate

机译:配位化合物中键合异构现象的热分析研究:第二部分:六氟磷酸双(乙二胺)钴(III)的二硝基和二腈键合异构体的固态逐步热转化

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摘要

The non-isothermal differential scanning calorimetry (DSC) experiments revealed that linkage isomerization of both pure trans-[Co(en) _2(ONO)_2]PF_6 (dinitrito isomer) and trans-[Co(en)_2(NO_2)_2]PF_6 (dinitro isomer) occurs in the solid state at elevated temperatures. The process was found to be exothermic for the dinitrito isomer and endothermic for dinitro isomer. The pure isomers could be considered to be in metastable states at ambient temperatures which would be converted to an equilibrium mixture of both isomers (stable state) upon heating. Since the isomerization of both isomers may be described as a two stages process, the corresponding DSC peaks have been resolved into two peaks by means of nonlinear curve fitting tools of PeakFit~? software. The resolution of the peaks helped us to determine enthalpy changes of stepwise isomerization of both isomers. A first-order initial rate and Kissinger methods have been employed to estimate kinetic parameters of the stepwise isomerization reactions. The Kissinger method provided more reliable kinetic results. The high activation energy and positive entropy changes of isomerization of both isomers are considered as indication of a dissociative mechanism in solid state.
机译:非等温差示扫描量热法(DSC)实验表明,纯反式-[Co(en)_2(ONO)_2] PF_6(丁二酮异构体)和反式-[Co(en)_2(NO_2)_2]的键合异构化PF_6(二硝基异构体)在高温下呈固态存在。发现该方法对二腈异构体是放热的,对于二硝基异构体是吸热的。可以认为纯异构体在环境温度下处于亚稳态,加热后会转变为两种异构体的平衡混合物(稳态)。由于两种异构体的异构化都可以描述为两个阶段的过程,相应的DSC峰已通过PeakFit ??的非线性曲线拟合工具解析为两个峰。软件。峰的拆分有助于我们确定两种异构体的逐步异构化的焓变。一阶初始速率和基辛格方法已被用来估计逐步异构化反应的动力学参数。 Kissinger方法提供了更可靠的动力学结果。两种异构体的高活化能和异构化的正熵变化被认为是固态解离机理的指示。

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