High-throughput screening for boride superconductors

Fuente: arXiv
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Autori principali: Chen, Shiya, Wu, Zepeng, Zhang, Zhen, Wu, Shunqing, Ho, Kai-Ming, Antropov, Vladimir, Sun, Yang
Natura: Preprint
Pubblicazione: 2024
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author Chen, Shiya
Wu, Zepeng
Zhang, Zhen
Wu, Shunqing
Ho, Kai-Ming
Antropov, Vladimir
Sun, Yang
author_facet Chen, Shiya
Wu, Zepeng
Zhang, Zhen
Wu, Shunqing
Ho, Kai-Ming
Antropov, Vladimir
Sun, Yang
contents A high-throughput screening using density functional calculations is performed to search for stable boride superconductors from the existing materials database. The workflow employs the fast frozen phonon method as the descriptor to evaluate the superconducting properties quickly. 23 stable candidates are identified from the screening. For almost all found binary compounds, the superconductivity was obtained earlier experimentally or computationally. For ternary borides, previous studies are very limited. Our extensive search among ternary systems confirmed superconductivity in known systems and found several new compounds. Among these discovered superconducting ternary borides, Ta(MoB)$_2$ shows the highest superconducting temperature of ~12K. Most predicted compounds were synthesized previously; therefore, our predictions can be examined experimentally. Our work also demonstrates that the boride systems can have diverse structural motifs that lead to superconductivity.
format Preprint
id arxiv_https___arxiv_org_abs_2401_13211
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle High-throughput screening for boride superconductors
Chen, Shiya
Wu, Zepeng
Zhang, Zhen
Wu, Shunqing
Ho, Kai-Ming
Antropov, Vladimir
Sun, Yang
Materials Science
Superconductivity
A high-throughput screening using density functional calculations is performed to search for stable boride superconductors from the existing materials database. The workflow employs the fast frozen phonon method as the descriptor to evaluate the superconducting properties quickly. 23 stable candidates are identified from the screening. For almost all found binary compounds, the superconductivity was obtained earlier experimentally or computationally. For ternary borides, previous studies are very limited. Our extensive search among ternary systems confirmed superconductivity in known systems and found several new compounds. Among these discovered superconducting ternary borides, Ta(MoB)$_2$ shows the highest superconducting temperature of ~12K. Most predicted compounds were synthesized previously; therefore, our predictions can be examined experimentally. Our work also demonstrates that the boride systems can have diverse structural motifs that lead to superconductivity.
title High-throughput screening for boride superconductors
topic Materials Science
Superconductivity
url https://arxiv.org/abs/2401.13211