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Effect of Microwave Sintering on Electrical Properties of Sr-deficient and Bi-rich Strontium Bismuth Niobate (Sr0.8Bi2.2Nb2O9) Ferroelectric Ceramic

机译:微波烧结对贫锶双富铌铌酸铋锶(Sr0.8Bi2.2Nb2O9)铁电陶瓷电学性能的影响

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摘要

Nonstoichiometric strontium bismuth niobate (Sr0.8Bi2.2Nb2O9: SBN) ceramic was prepared using conventional solid-state reaction and microwave sintering methods. Complex impedance spectroscopy (CIS) has been used to investigate the intra and intergranular contribution to the impedance SBN ceramics as a function of temperature and frequency. Complex impedance Cole‑Cole plots were used to interpret the relaxation mechanism in SBN ceramic which showed a non-Debye relaxation. The grain and grain boundary contribution to conductivity have been estimated from the Cole‑Cole plots. The bulk (grain) resistance of both samples was found to decrease with rise in temperature indicating negative temperature coefficient of resistance (NTCR) type behavior like that of semiconductors. The microwave sintered SBN was found to have low value of bulk resistance indicating more increase in conductivity as compared to conventionally sintered SBN. The temperature dependence of the relaxation time was found to obey the Arrhenius law. Studies of electrical modulus show the presence of hoping conduction mechanism in SBN.
机译:使用常规的固态反应和微波烧结方法制备了非化学计量的铌酸锶铋(Sr0.8Bi2.2Nb2O9:SBN)陶瓷。复数阻抗谱(CIS)已用于研究温度和频率对SBN陶瓷阻抗的内部和晶间影响。复数阻抗Cole-Cole曲线用于解释SBN陶瓷的弛豫机理,该机理表现出非德拜弛豫。晶粒和晶界对电导率的贡献已根据Cole-Cole图进行了估算。发现两个样品的体电阻(晶粒)均随温度升高而降低,这表明电阻的负温度系数(NTCR)型行为类似于半导体。发现微波烧结的SBN具有低的体电阻值,表明与常规烧结的SBN相比,电导率增加更多。发现弛豫时间的温度依赖性符合阿伦尼乌斯定律。电模量研究表明,SBN中存在跳跃传导机制。

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