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首页> 外文期刊>Journal of the European Ceramic Society >Synthesis of nitrogen and lanthanum codoped barium titanate with a novel thermal ammonolysis reactor
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Synthesis of nitrogen and lanthanum codoped barium titanate with a novel thermal ammonolysis reactor

机译:新型热氨解反应器合成氮镧镧共掺杂钛酸钡

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Lanthanum doped barium titanate was nitridated by thermal ammonolysis with a newly designed reactor, which performs extended efficiency to supply ammonia with less decomposition at elevated temperatures above 600 degrees C. The kinetics of nitrogen-uptake was studied systematically at elevated temperatures. Nitrogen-content, thermal stability and crystallographic phase of nitridated lanthanum doped barium titanate were characterized by several techniques. The final nitrogen-content of nitridated lanthanum doped barium titanate was much higher than the content of lanthanum, resulting in the formation of oxygen vacancies compensating the additional negative electrical charge of nitrogen anions occupying regular oxygen sites in the lattice. Through thermal ammonolysis, strongly reducing conditions because of the decomposition of ammonia generating hydrogen gas causes the formation of barium orthotitanate as a secondary phase. Ammonolysis temperature below 800 degrees C and suppression of thermal decomposition of ammonia gas are essential to realize a nitridated lanthanum doped barium titanate as a single phase. (C) 2016 Elsevier Ltd. All rights reserved.
机译:掺杂镧的钛酸钡通过新设计的反应器通过热氨解进行氮化,该反应器在600摄氏度以上的高温下可提供更高的效率以提供较少分解的氨。在高温下系统地研究了氮的吸收动力学。用几种技术对氮化镧掺杂钛酸钡的氮含量,热稳定性和结晶相进行了表征。氮化镧掺杂钛酸钡的最终氮含量远高于镧含量,导致氧空位的形成,补偿了占据晶格中规则氧位的氮阴离子的额外负电荷。通过热氨解,由于产生氨的氢气分解而导致的强烈还原条件导致形成原钛酸钡作为第二相。氨解温度低于800摄氏度,抑制氨气的热分解对于将氮化镧掺杂的钛酸钡实现为单相至关重要。 (C)2016 Elsevier Ltd.保留所有权利。

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