CoSb3-based skutterudite nanocomposites prepared by cold sintering process with enhanced thermoelectric properties
Aida Serrano, Olga Caballero-Calero, Cecilia Granados-Miralles, Giulio, Gorni, Cristina V. Manzano, Marta Rull-Bravo, Alberto Moure, Marisol, Mart\'in-Gonz\'alez, Jos\'e F. Fern\'andez

TL;DR
This paper introduces a novel cold sintering process for CoSb3-based thermoelectric nanocomposites, achieving high density and enhanced thermoelectric performance through scalable, cost-effective methods.
Contribution
It demonstrates the first use of cold sintering for CoSb3 thermoelectrics, showing improved density, microstructure, and thermoelectric properties with post-annealing treatments.
Findings
Achieved 86-92% density in CoSb3 nanocomposites.
Maximum figure of merit of 0.12 at room temperature.
Low thermal conductivity due to morphological and structural features.
Abstract
We show here for the first time the use of a cold sintering process (CSP) to sinter CoSb3-based thermoelectric materials. CSP at 150 {\deg}C for 90 min under a uniaxial pressure of 750 MPa yields pieces with a relative density of 86 %, which is increased to around 92 % after a post-annealing at temperatures > 500 {\deg}C in Ar atmosphere. The reported CSP produces Te doped-CoSb3 nanocomposites with similar morphological and structural characteristics to the starting nanopowders obtained by ball milling in air atmosphere. The post-thermal treatment induces grain coalescence and grain growth, crystallite size growth as well as compositional changes in the nanocomposite, decreasing the amount of the main phase, CoSb3, and increasing the weight of secondary phase, CoSb2, up to a 30 wt% at 600 {\deg}C. Remarkably, the average valence for the Co, Sb and Te absorbing atoms is neither…
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