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作 者:李智敏[1] 丁爱宇 张茂林[1] 闫养希 杨子[1] 罗发[2] Li Zhimin;Ding Aiyu;Zhang Maolin;Yan Yangxil;Yang Zi;Luo Fa(Xidian University,Xi'an 710071,China;State Key Laboratory of Solidification Processing,Northwestern Polytechnical University,Xi'an 710072,China)
机构地区:[1]西安电子科技大学,陕西西安710071 [2]西北工业大学凝固技术国家重点实验室,陕西西安710072
出 处:《稀有金属材料与工程》2018年第8期2417-2421,共5页Rare Metal Materials and Engineering
基 金:国家自然科学基金(51602240);高等学校博士学科点专项科研基金新教师类资助课题(20130203120016);陕西省自然科学基础研究计划(2015JQ6252);宁波市自然科学基金(2015A610109;2015A610037;2016A610029)
摘 要:采用传统的固相法,制备了Y、Mn共掺杂的BaTiO_3陶瓷。利用X射线衍射仪、扫描电子显微镜和能谱仪分别对样品的物相、微观结构和化学组分进行表征,并测量了样品的电学参数。结果表明:Y掺杂能有效降低陶瓷的室温电阻,但过量的Y会在晶界处偏析,其与晶界上的Mn相互作用,削弱正温度系数(PTC)效应。通过晶粒和晶界的协同作用,可有效调控BaTiO_3陶瓷的PTC效应。Y and Mn co-doped BaTiO3 ceramics were prepared by the conventional solid state reaction. The phases, microstructures and composition of the prepared samples were characterized by X-ray diffractometer, scanning electron microscope and energy dispersive spectrometer, respectively, and the electrical parameters were measured. Results show that the room temperature resistance of BaTiO3 could be effectively decreased by Y doping. However, the excessive Y would segregate at the grain boundary, which weakens the positive temperature coefficient (PTC) effect of BaTiO3 ceramic, due to the interaction with Mn at the grain boundary. Through the coordinating behavior of grain and grain boundary, the PTC effect of BaTiO3 ceramic could be efficiently regulated.
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