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首页> 外文期刊>Solid state ionics >Adjusting the conduction properties of La_(0.995)Ca _(0.005)NbO_(4 - δ)by doping for proton conducting fuel cells electrode operation
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Adjusting the conduction properties of La_(0.995)Ca _(0.005)NbO_(4 - δ)by doping for proton conducting fuel cells electrode operation

机译:通过掺杂来调节质子传导燃料电池电极的La_(0.995)Ca _(0.005)NbO_(4-δ)的导电性能

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Structural characterization and transport properties of A- (Ce and Pr) and B-site (Mn) doped La_(0.995)Ca_(0.005)NbO_(4 - δ) (LCN) have been investigated. Conductivity data have been analyzed in the temperature range from 400 to 800 °C as a function of the oxygen partial pressure under dry atmospheres and under different wet atmospheres. All compounds present changes in the activation energy due to a phase transformation at ca. 550 °C. Under wet conditions the conductivity is predominantly protonic in all compounds except for the Ce doped sample under oxidizing atmospheres. The conductivity of Ce doped sample is principally electronic at high pO_2 and high temperatures while it becomes more ionic at low pO2 and temperatures. The combination of n-type electronic and protonic conductivity for Ce doped LCN under reducing atmospheres suggests its potential application as an anode component for LCN-based proton conducting fuel cells (PCFC). Moreover, Pr doped LCN shows remarkable p-type electronic conductivity at high pO_2 in combination with protonic conductivity, which are interesting properties for LCN-based PCFC cathode components. Furthermore, Ce and Pr addition have allowed increasing the sintering activity with respect to LCN powders. The activation energies and the preexponential factors under wet atmospheres have been studied and correlated. It was found that they obey the Meyer-Neldel law and an estimation of the activation energy of protons in both crystal structures has been derived.
机译:研究了A-(Ce和Pr)和B-位(Mn)掺杂的La_(0.995)Ca_(0.005)NbO_(4-δ)(LCN)的结构表征和输运性质。在干燥气氛和不同潮湿气氛下,在400至800°C的温度范围内,根据氧分压对电导率数据进行了分析。由于大约在200℃的相变,所有化合物都呈现出活化能的变化。 550℃。在潮湿条件下,除了掺杂氧化铈的铈样品外,所有化合物的电导率都主要是质子的。铈掺杂样品的电导率主要在高pO_2和高温下是电子的,而在低pO2和低温下变得更具离子性。掺杂Ce的LCN在还原性气氛下的n型电子和质子传导性的组合表明其潜在应用作为基于LCN的质子传导燃料电池(PCFC)的阳极组件。此外,掺Pr的LCN在高pO_2时与质子传导性结合显示出显着的p型电子传导性,这是基于LCN的PCFC阴极组件令人感兴趣的特性。此外,Ce和Pr的添加允许相对于LCN粉末增加烧结活性。已经研究并关联了湿气氛下的活化能和指数因子。发现它们服从Meyer-Neldel定律,并且已经推导了两种晶体结构中质子的活化能的估计。

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