首页> 外文期刊>International Journal of Quantum Chemistry >DEFECT CHEMISTRY OF LA2-XSRXCUO4-DELTA - OXYGEN NONSTOICHIOMETRY AND THERMODYNAMIC STABILITY
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DEFECT CHEMISTRY OF LA2-XSRXCUO4-DELTA - OXYGEN NONSTOICHIOMETRY AND THERMODYNAMIC STABILITY

机译:LA2-XSRXCUO4-delta的缺陷化学-氧非化学计量学和热力学稳定性。

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The oxygen nonstoichiometry of La2-xSrxCuO4-delta (x = 0-0.3) was measured as a function of Sr content, temperature (400-1000 degrees C), and oxygen partial pressure (P(O-2)= 1-1x10(-10) atm) using high-temperature gravimetry and coulometric titration. The oxygen nonstoichiometry ranges from oxygen excess to oxygen deficiency one depending on P(O-2) and the Sr content, x. Oxygen excess was observed for specimens with x less than 0.05. The dependence of oxygen excess nonstoichiometry on oxygen partial pressures was found to be explained by a model with interstitial oxygen as a predominant defect. In oxygen-deficient regions, partial molar enthalpy and partial molar entropy of oxygen were calculated from the nonstoichiometry data. It was revealed from the variation in partial molar enthalpy that a strong interaction between the oxygen and its vacancy exists in oxygen-deficient La2-xSrxCuO4-delta. The experimentally obtained partial molar entropy of oxygen was compared with those calculated assuming a so-called metal model, a hopping conduction model, and a narrow band conduction model, where the increase in oxygen vacancies hardly influences the carrier concentration, the holes generated by oxidation of the specimen are trapped by Cu ions, and the holes generated are itinerant, respectively. The variation in partial molar entropy of oxygen could be explained well by either the hopping model or the narrow band conduction model. The oxygen partial pressures required for the decomposition of La2-xSrxCuO4-delta were also measured through the nonstoichiometry measurement. Discontinuity was observed in the dependence of oxygen partial pressures for decomposition on Sr content between x = 0.05 and 0.10, suggesting an abrupt variation in the thermodynamic behavior of La2-xSrxCuO4-delta with the Sr content in this region. (C) 1997 Academic Press. [References: 28]
机译:测量La2-xSrxCuO4-delta(x = 0-0.3)的氧化学计量与Sr含量,温度(400-1000摄氏度)和氧分压(P(O-2)= 1-1x10( -10)atm)使用高温重量法和库仑滴定法。氧的非化学计量比取决于P(O-2)和Sr含量x,从过量氧到缺乏氧。 x小于0.05的样品观察到氧气过量。发现氧过量非化学计量对氧分压的依赖性是由以间隙氧为主要缺陷的模型解释的。在缺氧区域,从非化学计量数据计算出氧的部分摩尔焓和部分摩尔熵。从部分摩尔焓的变化表明,缺氧的La2-xSrxCuO4-δ中氧与空位之间存在强相互作用。将实验获得的氧气的部分摩尔熵与假设金属模型,跳跃传导模型和窄带传导模型的计算结果进行了比较,其中氧空位的增加几乎不会影响载流子浓度,氧化产生的空穴标本中的一部分被铜离子捕获,产生的孔分别是流动的。氧的部分摩尔熵的变化可以用跳跃模型或窄带传导模型很好地解释。还通过非化学计量法测量了La2-xSrxCuO4-δ分解所需的氧分压。在x = 0.05和0.10之间,观察到氧分压对Sr含量的依赖性不连续,这表明La2-xSrxCuO4-δ的热力学行为随该区域的Sr含量而突然变化。 (C)1997学术出版社。 [参考:28]

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