应用化学
應用化學
응용화학
CHINESE JOURNAL OF APPLIED CHEMISTRY
2009年
11期
1320-1323
,共4页
程继海%鲍巍涛%朱德春%王华林%田长安%尹奇异
程繼海%鮑巍濤%硃德春%王華林%田長安%尹奇異
정계해%포외도%주덕춘%왕화림%전장안%윤기이
CaZr_(0.1)Ti_(0.9)O_3%溶胶-燃烧法%钙钛矿结构%电导率
CaZr_(0.1)Ti_(0.9)O_3%溶膠-燃燒法%鈣鈦礦結構%電導率
CaZr_(0.1)Ti_(0.9)O_3%용효-연소법%개태광결구%전도솔
CaZr_(0.1) Ti_(0.9) O_3%sol-combustion method%perovskite structure%electrical conductivity
采用溶胶-燃烧法合成了可用于固体氧化物燃料电池(SOFC)的新型固体电解质材料CaZr_(0.1)Ti_(0.9)O_3.通过XRD、交流复阻抗等电化学方法对样品的结构、电导性能进行了表征,并考察了材料的烧结性能. 结果表明,溶胶-燃烧法可以成功制备出具有良好烧结性能的CaZr_(0.1)Ti_(0.9)O_3电解质粉末,1 400 ℃下得到的烧结体的相对密度可达到95%. 电性能测试表明,CaZr_(0.1)Ti_(0.9)O_3烧结体在中温范围内具有较高的氧离子电导率(σ_(800 ℃)=2.24×10~(-3)S/cm)、低的电导活化能(0.89 eV).
採用溶膠-燃燒法閤成瞭可用于固體氧化物燃料電池(SOFC)的新型固體電解質材料CaZr_(0.1)Ti_(0.9)O_3.通過XRD、交流複阻抗等電化學方法對樣品的結構、電導性能進行瞭錶徵,併攷察瞭材料的燒結性能. 結果錶明,溶膠-燃燒法可以成功製備齣具有良好燒結性能的CaZr_(0.1)Ti_(0.9)O_3電解質粉末,1 400 ℃下得到的燒結體的相對密度可達到95%. 電性能測試錶明,CaZr_(0.1)Ti_(0.9)O_3燒結體在中溫範圍內具有較高的氧離子電導率(σ_(800 ℃)=2.24×10~(-3)S/cm)、低的電導活化能(0.89 eV).
채용용효-연소법합성료가용우고체양화물연료전지(SOFC)적신형고체전해질재료CaZr_(0.1)Ti_(0.9)O_3.통과XRD、교류복조항등전화학방법대양품적결구、전도성능진행료표정,병고찰료재료적소결성능. 결과표명,용효-연소법가이성공제비출구유량호소결성능적CaZr_(0.1)Ti_(0.9)O_3전해질분말,1 400 ℃하득도적소결체적상대밀도가체도95%. 전성능측시표명,CaZr_(0.1)Ti_(0.9)O_3소결체재중온범위내구유교고적양리자전도솔(σ_(800 ℃)=2.24×10~(-3)S/cm)、저적전도활화능(0.89 eV).
A novel electrolyte CaZr_(0.1)Ti_(0.9)O_3 for solid oxide fuel cell(SOFC) was synthesized by a newly sol-combustion method. The structure and conduction properties of the sample were systematically investigated via XRD and electrochemical methods. The results show that CaZr_(0.1)Ti_(0.9)O_3 powders were successfully prepared by the sol-combustion technique. The powder shows a high sinterability, and a relative density of 95% at a sintering temperature of 1 400 ℃. Electrochemistry measurements show that the CaZr_(0.1)Ti_(0.9)O_3 ceramics has a relatively high oxide ionic conductivity (σ_(800℃) = 2. 24 × 10~(-3) S/cm) , low electrical activation energy (E_a = 0. 89 eV) in the low-temperature range.