在前期工作基础上,采用湿化学合成与放电等离子烧结相结合的方法,对适合高温工况条件下的层状钴基氧化物热电材料进行深入探索和研究,通过性能测试和显微结构分析,研究合成方法对材料组织取向度和性能的影响,重点从工艺和组成上探索提高材料性能的最佳方法和机理,揭示组织取向度与性能关联规律,为下一步提高热电器件能量转换效率奠定基础。
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数据更新时间:2023-05-31
Enhanced piezoelectric properties of Mn-modified Bi5Ti3FeO15 for high-temperature applications
Unusual mechanical and electronic behaviors of bulk layered hydrogen substituted graphdiyne under biaxial strain
The integration of Mo2C-embedded nitrogen-doped carbon with Co encapsulated in nitrogen-doped graphene layers derived from metal–organic-frameworks as a multi-functional electrocatalyst
Experimental study on thermal and mechanical properties of cemented paste backfill with phase change material
Converting natural diatomite into nanoporous silicon for eco-friendly thermoelectric energy conversion
用于废热发电的高温层状钴钙基氧化物热电材料的研究
新型层状Bi-Co-O基氧化物材料的制备与热电性能研究
层状钴氧化物薄膜光诱导的横向热电效应研究
服役环境下方钴矿基热电材料结构演化与力学性能研究