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Enhanced electrocaloric analysis and energy-storage performance of lanthanum modified lead titanate ceramics for potential solid-state refrigeration applications

机译:镧改性钛酸铅陶瓷的增强的电热分析和储能性能可用于潜在的固态制冷应用

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摘要

The unique properties and great variety of relaxer ferroelectrics make them highly attractive in energy-storage and solid-state refrigeration technologies. In this work, lanthanum modified lead titanate ceramics are prepared and studied. The giant electrocaloric effect in lanthanum modified lead titanate ceramics is revealed for the first time. Large refrigeration efficiency (27.4) and high adiabatic temperature change (1.67 K) are achieved by indirect analysis. Direct measurements of electrocaloric effect show that reversible adiabatic temperature change is also about 1.67 K, which exceeds many electrocaloric effect values in current direct measured electrocaloric studies. Both theoretical calculated and direct measured electrocaloric effects are in good agreements in high temperatures. Temperature and electric field related energy storage properties are also analyzed, maximum energy-storage density and energy-storage efficiency are about 0.31 J/cm3 and 91.2%, respectively.
机译:弛豫铁电材料的独特特性和种类繁多,使它们在储能和固态制冷技术中极具吸引力。在这项工作中,制备了镧改性的钛酸铅陶瓷。镧改性钛酸铅陶瓷具有巨大的电热效应。通过间接分析可实现较大的制冷效率(27.4)和较高的绝热温度变化(1.67 K)。电热效应的直接测量表明,可逆绝热温度变化也约为1.67 K,超过了当前直接测量的电热研究中的许多电热效应值。理论计算值和直接测量的电热效应在高温下都吻合良好。分析了与温度和电场有关的储能性能,最大储能密度和储能效率分别约为0.31 J / cm 3 和91.2%。

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