首页> 外文OA文献 >Determination of Oxygen Nonstoichiometry and Diffusivity in Mixed Conducting Oxides by Oxygen Coulometric Titration I: Chemical Diffusion in La0.8Sr0.2CoO3-δ
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Determination of Oxygen Nonstoichiometry and Diffusivity in Mixed Conducting Oxides by Oxygen Coulometric Titration I: Chemical Diffusion in La0.8Sr0.2CoO3-δ

机译:氧气库仑滴定法测定混合导电氧化物中氧的非化学计量和扩散系数I:La0.8sr0.2CoO3-δ中的化学扩散

摘要

Oxygen coulometric titration has been applied to measure chemical diffusion in La0.8Sr0.2CoO3-δ between 700 and 1000°C. The transient current response to a potentiostatic step has been transformed from the time domain to the frequency domain. The equivalent circuit used to fit the resulting impedance data contains the element that describes the finite-length diffusion of oxygen into the sample specimen. Other elements included are the gas-phase capacitance and the sum of the gas-phase diffusion resistance and that associated with the limited surface exchange kinetics of the sample. The chemical diffusion coefficient of perovskite La0.8Sr0.2CoO3-δ has been determined as a function of temperature and oxygen partial pressure. Its value can be represented by ~D (cm2/s) = 5.91 x exp [(-135 kJ/mol)/RT], and turns out to be practically independent of oxygen partial pressure in the range 10-2 - 0.209 bar.
机译:氧气库仑滴定法已用于测量La0.8Sr0.2CoO3-δ在700至1000°C之间的化学扩散。对恒电位阶跃的瞬态电流响应已从时域转换到频域。用于拟合所得阻抗数据的等效电路包含描述氧气进入样品样本的有限长度扩散的元素。包括的其他元素是气相电容和气相扩散阻力的总和以及与样品有限的表面交换动力学有关的元素。钙钛矿La0.8Sr0.2CoO3-δ的化学扩散系数已确定为温度和氧分压的函数。其值可以用〜D(cm2 / s)= 5.91 x exp [(-135 kJ / mol)/ RT]表示,并且实际上与氧气分压在10-2-0.209 bar范围内无关。

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