Author:
Pecinatto H.,Rêgo Celso R. C.,Wenzel W.,Frota C. A.,Perrone B. M. S.,Piotrowski Maurício J.,Guedes-Sobrinho Diego,Dias Alexandre C.,Mota Cicero,Gusmão M. S. S.,Frota H. O.
Abstract
AbstractHere, we performed a systematic DFT study assisted by the workflow framework SimStack for the mechanical and thermodynamic properties of the clay mineral lizardite in pristine and six different types of O vacancies configurations. In most cases, the defect caused a structural phase transition in the lizardite from the trigonal (pristine) to the triclinic phase. The results show that oxygen vacancies in lizardite significantly reduce the lattice thermal conductivity, accompanied by an elastic moduli reduction and an anisotropy index increase. Through the P–V relation, an increase in compressibility was evidenced for vacancy configurations. Except for the vacancy with the same crystalline structure as pristine lizardite, the sound velocities of the other vacancy configurations produce a decrease in these velocities, and it is essential to highlight high values for the Grüneisen parameter. We emphasize the great relevance of the punctual-defects introduction, such as O vacancies, in lizardite, since this microstructural design is responsible for the decrease of the lattice thermal conductivity in comparison with the pristine system by decreasing the heat transfer ability, turning lizardite into a promising candidate for thermoelectric materials
Funder
Fundação de Amparo à Pesquisa do Estado do Amazonas
Brazilian Founding Agency − CAPES
German Federal Ministry of Education and Research
Innovation-Platform MaterialDigital
HoreKa supercomputer
Geotechnical Research Group (GEOTEC) at the Federal University of Amazonas
Centro Nacional de Processamento de Alto Desempenho em São Paulo
Lobo Carneiro HPC
Rio Grande do Sul Research Foundation
Conselho Nacional de Desenvolvimento Científico e Tecnológico
CIMATEC and Atos Computers
Laboratory of Material Simulation
Karlsruher Institut für Technologie (KIT)
Publisher
Springer Science and Business Media LLC
Cited by
1 articles.
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