首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Studies on thermal decomposition of uranium(VI) and thorium(IV) complexes of o-carboxy N,N '-dimethylbenzylamine by thermoanalytical techniques in static air atmosphere
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Studies on thermal decomposition of uranium(VI) and thorium(IV) complexes of o-carboxy N,N '-dimethylbenzylamine by thermoanalytical techniques in static air atmosphere

机译:静态空气中热分析技术研究邻羧基N,N'-二甲基苄胺的铀(VI)和th(IV)配合物的热分解

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摘要

The o-carboxy N-N'-dimethylbenzylamine uranium(VI) and thorium(IV) complexes, o-C6H4COOHCH2N(CH3)(2)UO2SO4 (I), O-C6H4COOHCH2N(CH3)(2)UO2(NO3)(2) (II), o-C6H4COOHCH2N(CH3)(2)UO2Cl2 (III), and o-C6H4COOHCH2N(CH3)(2)Th(NO3)(4) (IV) were prepared and studied by means of thermoanalytical techniques in static air atmosphere to understand their mode of decomposition and thermal stability. Their compositions were investigated by elemental analysis in order to ensure their purity, and structure elucidations were based on proton NMR and IR spectra. Study of their thermal decomposition showed that they pyrolyzed in stages: the degradation of square bipyramidal complexes (I and III) occurred in four stages; hexagonal bipyramidal complex (II) also followed the same pattern. The decomposition of bicapped square antiprism complex (IV) proceeded in three steps. The thermal decomposition of these complexes occurred with the loss of inorganic and organic fragments and exhibited almost the same mode of decomposition. The composition of the intermediate formed during degradation was confirmed by microanalysis and IR spectroscopy. The residue after heating above 480 degrees C corresponded to metal oxide. It follows from the results that the thermal stability of the complexes increases in the following sequence:
机译:邻羧基N-N'-二甲基苄胺铀(VI)和or(IV)络合物,o-C6H4COOHCH2N(CH3)(2)UO2SO4(I),O-C6H4COOHCH2N(CH3)(2)UO2(NO3)(2) )(II),通过热分析技术在静态下制备并研究了o-C6H4COOHCH2N(CH3)(2)UO2Cl2(III)和o-C6H4COOHCH2N(CH3)(2)Th(NO3)(4)(IV)了解大气中它们的分解方式和热稳定性。为了确保其纯度,通过元素分析研究了它们的组成,并基于质子NMR和IR光谱对结构进行了阐明。对它们的热分解研究表明它们是分阶段热解的:方形双锥体络合物(I和III)的降解分为四个阶段;六角形双锥体络合物(II)也遵循相同的模式。二阶方形反棱镜配合物(IV)的分解过程分为三个步骤。这些配合物的热分解发生了无机和有机碎片的损失,并表现出几乎相同的分解方式。降解过程中形成的中间体的组成通过微分析和红外光谱确认。加热到480℃以上的残留物相当于金属氧化物。从结果可以看出,配合物的热稳定性按以下顺序增加:

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