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微波烧结制备钛酸锶钡红外探测器材料
引用本文:范茂彦,姜胜林,谢甜甜,张清峰,张丽芳.微波烧结制备钛酸锶钡红外探测器材料[J].电子元件与材料,2009,28(6).
作者姓名:范茂彦  姜胜林  谢甜甜  张清峰  张丽芳
作者单位:1. 华中科技大学,电子科学与技术系,湖北,武汉,430074;玉溪师范学院,云南,玉溪,653100
2. 华中科技大学,电子科学与技术系,湖北,武汉,430074
3. 玉溪师范学院,云南,玉溪,653100
基金项目:国家重点基础研究发展规划(973计划),新世纪人才支持计划基金 
摘    要:以乙酸盐为原料,聚乙烯吡咯烷酮(PVP)为稳定剂,采用sol-gel法制备了Mn掺杂Ba0.6Sr0.4TiO3(BST)凝胶,分析了凝胶的热演化过程,分别用传统烧结和微波烧结技术制备BST纳米粉体。与传统烧结相比,900℃微波烧结0.5h即可合成纯钙钛矿相BST粉体,相同烧结温度下所需时间缩短3/4,有效控制晶粒长大,粉体粒径约60nm。采用该粉体制备的BST厚膜材料,εm>1000,tanδ<0.02,弥散指数降低,是制备大阵列非制冷红外焦平面阵列(UFPA)的优选材料。

关 键 词:无机非金属材料  钛酸锶钡  sol-gel法  微波烧结  介温特性

Microwave sintering preparation of barium strontium titanate used as infrared detector materials
FAN Maoyan,JIANG Shenglin,XIE Tiantian,ZHANG Qingfeng,ZHANG Lifang.Microwave sintering preparation of barium strontium titanate used as infrared detector materials[J].Electronic Components & Materials,2009,28(6).
Authors:FAN Maoyan  JIANG Shenglin  XIE Tiantian  ZHANG Qingfeng  ZHANG Lifang
Affiliation:1.Department of Electronic Science and Technology;Huazhong University of Science and Technology;Wuhan 430074;China;2.Yuxi Normal University;Yuxi 653100;Yunnan Province;China
Abstract:Mn doped Ba0.6Sr0.4TiO3(BST) gel was prepared using sol-gel method with acetate as raw material and polyvinylpyrrolidone(PVP) as stabilizer.The thermal evolution process of gel was analyzed,and the BST nanopowder was prepared by both traditional sintering and microwave sintering technology.The pure perovskite phase BST nanopowder with a grain size of about 60 nm can be prepared through microwave sintering at 900 ℃ for 0.5 h.Compared with traditional sintering technology,microwave sintering can shorten the sintering time by 3/4 at the same sintering temperature and can effectively control the coarsening of grains.The BST thick film with εm > 1 000,tanδ < 0.02 and reduced dispersion coefficient prepared using this powder,is a preferred material for fabricating large uncooled focal plane array(UFPA).
Keywords:non-metallic inorganic material  barium strontium titanate  sol-gel method  microwave sintering  dielectric-temperature characteristic  
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