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首页> 外文期刊>Solid state ionics >Effect of cobalt substitution on thermal stability and electrical conductivity of Sm0.95Ce0.05FeO3-delta in oxidizing and reducing conditions
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Effect of cobalt substitution on thermal stability and electrical conductivity of Sm0.95Ce0.05FeO3-delta in oxidizing and reducing conditions

机译:钴在氧化还原条件下对Sm0.95Ce0.05FeO3-δ热稳定性和电导率的影响

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A series of cobalt doped Sm0.95Ce0.05FeO3-delta perovskites with formula Sm0.95Ce0.05Fe1-xCoxO3-delta (X = 0-0.10) were prepared by thermal decomposition of amorphous citrate precursors followed by calcination at 850 C in air for 24 h. These materials are stable in air even at 1350 C and under reducing conditions (5% v/v H-2/N-2) up to similar to 800 degrees C, when phase separation ensues. Their conductivities were measured both in air and H-2/N-2 by the four point probe method from 25 degrees C to 1000 degrees C. The electrical conductivities increased from x=0 to x= 0.10 in air with an increase in both temperature and cobalt concentration but in H-2/N-2 the trend is non-linear. The higher conductivity in air is due to oxygen vacancies created as a result of cobalt doping. Improved conductivity of Sm0.95Ce0.05Fe1-xCoxO3-delta in 5%v/v H-2/N-2 as compared to air is as high as two orders of magnitude. The specific species responsible for the sensing behavior (conductivity changes) is unclear, but the surface analysis by XPS showed that all these materials have a samarium rich surface. The potential sensing ability of these materials toward reducing atmospheres was probed with variable concentrations of H2/N2 gas. A linear and reversible response was observed with high sensitivity at room temperature.
机译:通过热分解非晶态柠檬酸盐前驱物,然后在空气中于850°C的温度下煅烧24小时,制备了一系列钴掺杂的Sm0.95Ce0.05FeO3-δ钙钛矿,分子式为Sm0.95Ce0.05Fe1-xCoxO3-δ(X = 0-0.10)。 H。当发生相分离时,即使在1350 C和还原条件下(5%v / v H-2 / N-2),这些材料在空气中也很稳定,最高可达800℃。通过四点探针法从25摄氏度到1000摄氏度在空气和H-2 / N-2中测量它们的电导率。随着温度的升高,电导率在空气中从x = 0增加到x = 0.10和钴浓度,但是在H-2 / N-2中,趋势是非线性的。空气中较高的电导率归因于钴掺杂产生的氧空位。与空气相比,Sm0.95Ce0.05Fe1-xCoxO3-δ在5%v / v H-2 / N-2中的电导率提高了两个数量级。尚不清楚引起传感行为(电导率变化)的具体物种,但XPS的表面分析表明,所有这些材料均具有富含rich的表面。用可变浓度的H2 / N2气体探测了这些材料对还原性气氛的潜在感测能力。在室温下以高灵敏度观察到线性和可逆的响应。

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