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Advances in Applied Ceramics
Structural, Functional and Bioceramics
Volume 119, 2020 - Issue 2
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Research Articles

Thermoelectric properties of phase pure boron carbide prepared by a solution-based method

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Pages 97-106 | Received 12 Oct 2019, Accepted 11 Dec 2019, Published online: 26 Dec 2019
 

ABSTRACT

In this work, we report the thermoelectric properties of phase-pure carbon-rich boron carbide B4.05C synthesised from a sucrose precursor (here noted as ‘High Purity’ boron carbide) by a solution-based method. Three different kinds of commercially available boron carbide powders were also investigated as references. All samples were densified by spark plasma sintering at 50 MPa and at temperatures ranging from 1800°C to 2000°C. The newly synthesised boron carbide showed good sintering behaviour thanks to its small spherical grains, resulting in excellent relative densities >99%. Measurement of thermoelectric performance gave results comparable to previous reports of carbon-rich boron carbides. The High Purity boron carbide sample as well as investigated commercial reference materials showed high positive Seebeck coefficients close to 250 μVK−1 over the whole temperature range. Electrical conduction mechanisms of boron carbide is also discussed. The nearest-neighbour hopping conduction model may be a better description compared to the often-used bipolaron model.

Disclosure statement

No potential conflict of interest was reported by the authors.

Additional information

Funding

This work was supported by Core Research for Evolutional Science and Technology: [Grant Number JPMJCR15Q6]; Core Research for Evolutional Science and Technology: [Grant Number JPMJCR19Q4]; Japan Society for the Promotion of Science: [Grant Number JP16H06441]; Japan Society for the Promotion of Science: [Grant Number JP17H02749].

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