收录:
摘要:
A facile colloidal solution method has been developed for the fast, scalable synthesis of orthorhombic@cubic core-shell nonstoichiometric Cu5FeS4 icosahedral nanoparticles. Such nanoparticles contain high-density twin boundaries in the form of fivefold twins. Spark plasma sintering consolidates the nanoparticles into nanostructured pellets, which retain high-density twin boundaries and a tuned fraction of the secondary phase Fe-deficient cubic Cu5FeS4. As a result, the thermal and electrical transport properties are synergistically optimized, leading to an enhanced zT of approximate to 0.62 at 710 K, which is about 51% higher than that of single-phase Cu5FeS4. This study provides an energy-efficient approach to realize twin engineering in nonstoichiometric Cu5FeS4 nanomaterials for high-performance thermoelectrics.
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通讯作者信息:
来源 :
ADVANCED FUNCTIONAL MATERIALS
ISSN: 1616-301X
年份: 2018
期: 10
卷: 28
1 9 . 0 0 0
JCR@2022
ESI学科: MATERIALS SCIENCE;
ESI高被引阀值:260
JCR分区:1