低温合成LLZO及其离子导电性研究任务书
2020-02-10 23:59:40
1. 毕业设计(论文)主要内容:
研究固相反应法快速低温合成LLZO(Li7La3Zr2O12)陶瓷粉体的可行性及其适宜温度,探究烧结时间、烧结温度与原料配比对LLZO物相的生成和杂相(La2Zr2O7)消除的影响,确定LLZO立方相粉体的最佳合成工艺,结合相关理论对固相反应法快速低温合成LLZO立方相粉体的机理;探索掺杂元素对LLZO立方相陶瓷的离子导电性能的影响;研究固体电解质和电极之间的界面特性,提高LLZO与正负极之间的导电率。
整个过程采用XRD,FESEM, TEM等手段进行材料表征。
2. 毕业设计(论文)主要任务及要求
1. 查阅不少于20篇的相关资料,其中英文文献不少于10篇,完成开题报告,并完成不少于5000字的英文文献翻译;
2. 探究烧结温度、原料比例、掺杂元素种类与含量对llzo立方相粉体合成的影响,提出固相反应法快速低温合成llzo立方相粉体的机理;
3. 探究掺杂元素种类与含量、烧结温度等合成工艺对llzo立方相陶瓷离子导电率的影响;
3. 毕业设计(论文)完成任务的计划与安排
1. 第1-2周:查阅相关文献资料,明确研究内容,确定方案,完成开题报告;
2. 第3-6周:研究固相反应法快速低温合成llzo立方相粉体的可行性及其最佳条件,并进行物相和微观结构表征,结合相关理论对其合成机理进行阐述;
3. 第7-14周:探索掺杂元素对llzo立方相粉体与陶瓷合成及其离子导电率性能的影响,优化电极和固体电解质之间的界面接触,改善li 传导问题;
4. 主要参考文献
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