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Effect of Iron and Vanadium on the Phase Transition of Titanium Dioxide Obtained by Polymeric Precursor Method

机译:铁和钒对聚合前驱体法获得的二氧化钛相变的影响

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The titanium dioxide phase formation is dependent on the synthesis method, temperature of calcination and modifiers insertion. By using chemical methods, such as Polymeric Precursor Method, the organic impurities or extrinsic defects caused by doping play an important rule on the formation of precursor structure before the phase crystallization above 500 ℃. Some dopants can change the decomposition mechanism of the precursor, which affects the anatase-rutile phase transition. In this work, the Polymeric Precursor Method was used to synthesize titanium dioxide powder samples in order to investigate the effects of iron (III) and vanadium (V) dopants on the phase formation. Through thermal analysis of polymeric precursors and X-ray diffractometry for calcined powder samples it was possible to show the existence of antagonistic effects for both investigated dopants. While the iron doping reduces the anatase phase tetragonality and delays the rutile phase conversion, the vanadium one changes the mechanism of decomposition of polymeric precursor and leads to more amount of rutile phase.
机译:二氧化钛相的形成取决于合成方法,煅烧温度和改性剂的插入。通过使用化学方法,例如聚合前体方法,由掺杂引起的有机杂质或外在缺陷在500℃以上相结晶之前对前体结构的形成起重要作用。一些掺杂剂可以改变前体的分解机理,这影响了锐钛矿-金红石相变。在这项工作中,使用聚合物前体法合成二氧化钛粉末样品,以研究铁(III)和钒(V)掺杂剂对相形成的影响。通过对聚合前体的热分析和煅烧粉末样品的X射线衍射,可以证明两种研究掺杂剂均具有拮抗作用。铁掺杂降低了锐钛矿相的四方性并延迟了金红石相的转化,而钒改变了聚合物前体的分解机理并导致了更多的金红石相。

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