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Characterization of the thermal decomposition products of ammonium phosphomolybdate hydrate

机译:磷钼酸铵水合物热分解产物的表征

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In this study, the thermal decomposition mechanism of ammonium phosphomolybdate hydrate in air and inert gas atmospheres was determined and the intermediate and final products formed during the thermal decomposition were characterized using TGA, DTA, FTIR, XRD, EDS and EGA methods. In the first decomposition step, in both atmospheres, ammonium phosphomolybdate hydrate lost only its crystal water. At the following decomposition steps, ammonium phosphomolybdate hydrate acted differently in air and inert gas atmospheres. In air, in the second decomposition step, stoichiometric phosphomolybdenum oxide was formed as the final solid product. The ammonia gas evolved was oxidized with the oxygen present in air to form nitrogen and water. In inert gas atmosphere, in the second decomposition step, a portion of the ammonia gas evolved reduced the stoichiometric oxide formed (phosphorus hydrogen molybdenum oxide) to produce the nonstoichiometric oxide (phosphorus hydrogen molybdenum suboxide). The rest of the ammonia gas was released from the system partly undissociated and partly dissociated as nitrogen and hydrogen. In inert gas atmosphere, in the third decomposition step, the phosphorus hydrogen molybdenum suboxide formed lost its water to produce the phosphomolybdenum suboxide. It was also observed that phosphomolybdenum suboxide had good semiconductive property. The activation energies for the first and second decomposition steps of ammonium phosphomolybdate hydrate were determined in nonisothermal conditions.
机译:在这项研究中,确定了磷钼酸铵水合物在空气和惰性气体气氛中的热分解机理,并使用TGA,DTA,FTIR,XRD,EDS和EGA方法表征了热分解过程中形成的中间产物和最终产物。在第一步分解中,在两种气氛中,磷钼酸铵水合物仅损失其结晶水。在以下分解步骤中,磷钼酸铵水合物在空气和惰性气体气氛中的行为不同。在空气中,在第二个分解步骤中,形成化学计量的氧化钼钼作为最终的固体产物。放出的氨气被空气中存在的氧气氧化,形成氮气和水。在惰性气体气氛中,在第二分解步骤中,放出的一部分氨气将形成的化学计量的氧化物(磷氢钼钼)还原以产生非化学计量的氧化物(磷氢钼低氧化物)。其余的氨气从系统中释放出来,部分未解离,部分解离为氮气和氢气。在惰性气体气氛中,在第三分解步骤中,形成的磷氢钼氢氧化物失去了水分而产生了磷钼氢氧化物。还观察到磷钼低氧化物具有良好的半导体性能。在非等温条件下确定了磷钼酸铵水合物的第一和第二分解步骤的活化能。

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