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Utilization of Ag ions to improve room-temperature TCR of La0.85-xSr0.15AgxMnO3 polycrystalline ceramics

机译:利用Ag离子改善La0.85-xSr0.15AgxMnO3多晶陶瓷的室温TCR

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? 2022 Elsevier Ltd and Techna Group S.r.l.In this work, silver-doped La0.85-xSr0.15AgxMnO3 (LSAMO, 0.05 ≤ x ≤ 0.20) polycrystalline ceramics were prepared by the sol-gel method. The experimental characterization of ceramics revealed that Ag ions were bounded with the lattice matrix. The resistivity and the corresponding peak temperature coefficient (TCR) of LSAMO ceramics were systematically tuned by changing the Ag dopant content. Adjusting the proportion of Ag enabled one to vary the metal-insulator transition temperature (TMI) for LSAMO specimens in a wide range, and their peak resistivity temperature (Tp) was increased from 299.6 to 335.7 K. At the same time, the peak TCR value achieved its maximum of 15.2 K?1 at the doping molar ratio x of 0.15 and the peak resistivity temperature (Tk) of 294.1 K. In addition, the electrical transport was described in the context of the small polaron hopping (SPH) model and the phenomenological percolation model (PP) over the metal-insulator transition region. Under the combined action of the Jahn-Teller (JT) effect, the double exchange (DE) mechanism and the PP model, LSAMO ceramics possessing high TCR at room temperature were obtained by varying the amount of Ag doping. The observed properties suggest LSAMO material can be used in advanced uncooled infrared bolometers.
机译:?2022 Elsevier Ltd 和 Techna Group S.r.l.In 这项工作,采用溶胶-凝胶法制备了银掺杂的La0.85-xSr0.15AgxMnO3(LSAMO,0.05 ≤ x ≤ 0.20)多晶陶瓷。陶瓷的实验表征表明,银离子与晶格基体结合。通过改变银掺杂剂含量,系统地调控了LSAMO陶瓷的电阻率和相应的峰值温度系数(TCR)。通过调整Ag的比例,LSAMO试样的金属-绝缘体转变温度(TMI)在较宽的范围内变化,其峰值电阻率温度(Tp)从299.6 K提高到335.7 K。同时,在掺杂摩尔比x为0.15、电阻率峰值温度(Tk)为294.1 K时,TCR峰值达到最大值15.2% K?1。此外,在金属-绝缘体过渡区的小极化子跳跃(SPH)模型和唯象渗流模型(PP)的背景下描述了电输运。在Jahn-Teller(JT)效应的共同作用下,通过改变Ag掺杂量,利用双交换(DE)机理和PP模型,获得了室温下具有较高TCR的LSAMO陶瓷。观察到的特性表明LSAMO材料可用于先进的非制冷红外辐射热计。

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