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Kinetic Analysis of the Thermal Decomposition of Iron(III) Phosphates: Fe(NH3)2PO4 and Fe(ND3)2PO4

机译:磷酸铁(III):Fe(NH3)2PO4和Fe(ND3)2PO4热分解的动力学分析

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摘要

The hydrothermal synthesis and both the chemical and structural characterization of a diamin iron phosphate are reported. A new synthetic route, by using -butylammonium dihydrogen phosphate as a precursor, leads to the largest crystals described thus far for this compound. Its crystal structure is determined from single-crystal X-ray diffraction data. It crystallizes in the orthorhombic system ( space group, = 10.1116(2) Å, = 6.3652(1) Å, = 7.5691(1) Å, = 4) at room temperature and, below 220 K, changes towards the monoclinic system 2 / , space group. The in situ powder X-ray thermo-diffraction monitoring for the compound, between room temperature and 1100 K, is also included. Thermal analysis shows that the solid is stable up to ca. 440 K. The kinetic analysis of thermal decomposition (hydrogenated and deuterated forms) is performed by using the isoconversional methods of Vyazovkin and a modified version of Friedman. Similar values for the kinetic parameters are achieved by both methods and they are checked by comparing experimental and calculated conversion curves.
机译:报道了二氨基磷酸铁的水热合成以及化学和结构表征。通过使用磷酸正丁基铵二氢盐为前体的新合成途径,可制得迄今所描述的该化合物的最大晶体。由单晶X射线衍射数据确定其晶体结构。它在室温下在正交晶系中结晶(空间群= 10.1116(2)Å,= 6.3652(1)Å,= 7.5691(1)Å,= 4),并且在220 K以下时向单斜晶系2转变。 ,太空小组。还包括在室温至1100 K之间对化合物进行原位粉末X射线热衍射监测。热分析表明,该固体稳定至约200℃。 440 K.通过使用Vyazovkin的同等转化方法和Friedman的改进版本进行热分解(氢化和氘代形式)的动力学分析。两种方法均能获得相似的动力学参数值,并通过比较实验和计算的转化曲线进行检查。

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