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First-principles study on the electrical and thermal properties of the semiconducting Sc(3)(CN)F(2) MXene

The two-dimensional materials MXenes have recently attracted interest for their excellent performance from diverse perspectives indicated by experiments and theoretical calculations. For the application of MXenes in electronic devices, the exploration of semiconducting MXenes arouses particular inte...

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Autores principales: Luo, Kan, Zha, Xian-Hu, Zhou, Yuhong, Guo, Zhansheng, Lin, Cheng-Te, Huang, Qing, Zhou, Shenghu, Zhang, Ruifeng, Du, Shiyu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9081388/
https://www.ncbi.nlm.nih.gov/pubmed/35539724
http://dx.doi.org/10.1039/c8ra03424a
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author Luo, Kan
Zha, Xian-Hu
Zhou, Yuhong
Guo, Zhansheng
Lin, Cheng-Te
Huang, Qing
Zhou, Shenghu
Zhang, Ruifeng
Du, Shiyu
author_facet Luo, Kan
Zha, Xian-Hu
Zhou, Yuhong
Guo, Zhansheng
Lin, Cheng-Te
Huang, Qing
Zhou, Shenghu
Zhang, Ruifeng
Du, Shiyu
author_sort Luo, Kan
collection PubMed
description The two-dimensional materials MXenes have recently attracted interest for their excellent performance from diverse perspectives indicated by experiments and theoretical calculations. For the application of MXenes in electronic devices, the exploration of semiconducting MXenes arouses particular interest. In this work, despite the metallic properties of Sc(3)C(2)F(2) and Sc(3)N(2)F(2), we find that Sc(3)(CN)F(2) is a semiconductor with an indirect band gap of 1.18 eV, which is an expansion of the semiconducting family members of MXene. Using first-principles calculations, the electrical and thermal properties of the semiconducting Sc(3)(CN)F(2) MXene are studied. The electron mobilities are determined to possess strong anisotropy, while the hole mobilities show isotropy, i.e. 1.348 × 10(3) cm(2) V(−1) s(−1) along x, 0.319 × 10(3) cm(2) V(−1) s(−1) along the y directions for electron mobilities, and 0.517 × 10(3) cm(2) V(−1) s(−1) along x, 0.540 × 10(3) cm(2) V(−1) s(−1) along the y directions for hole mobilities. The room-temperature thermal conductivity along the Γ → M direction is determined to be 123–283 W m(−1) K(−1) with a flake length of 1–100 μm. Besides, Sc(3)(CN)F(2) presents a relatively high specific heat of 547 J kg(−1) K(−1) and a low thermal expansion coefficient of 8.703 × 10(−6) K(−1). Our findings suggest that the Sc(3)(CN)F(2) MXene might be a candidate material in the design and application of 2D nanoelectronic devices.
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spelling pubmed-90813882022-05-09 First-principles study on the electrical and thermal properties of the semiconducting Sc(3)(CN)F(2) MXene Luo, Kan Zha, Xian-Hu Zhou, Yuhong Guo, Zhansheng Lin, Cheng-Te Huang, Qing Zhou, Shenghu Zhang, Ruifeng Du, Shiyu RSC Adv Chemistry The two-dimensional materials MXenes have recently attracted interest for their excellent performance from diverse perspectives indicated by experiments and theoretical calculations. For the application of MXenes in electronic devices, the exploration of semiconducting MXenes arouses particular interest. In this work, despite the metallic properties of Sc(3)C(2)F(2) and Sc(3)N(2)F(2), we find that Sc(3)(CN)F(2) is a semiconductor with an indirect band gap of 1.18 eV, which is an expansion of the semiconducting family members of MXene. Using first-principles calculations, the electrical and thermal properties of the semiconducting Sc(3)(CN)F(2) MXene are studied. The electron mobilities are determined to possess strong anisotropy, while the hole mobilities show isotropy, i.e. 1.348 × 10(3) cm(2) V(−1) s(−1) along x, 0.319 × 10(3) cm(2) V(−1) s(−1) along the y directions for electron mobilities, and 0.517 × 10(3) cm(2) V(−1) s(−1) along x, 0.540 × 10(3) cm(2) V(−1) s(−1) along the y directions for hole mobilities. The room-temperature thermal conductivity along the Γ → M direction is determined to be 123–283 W m(−1) K(−1) with a flake length of 1–100 μm. Besides, Sc(3)(CN)F(2) presents a relatively high specific heat of 547 J kg(−1) K(−1) and a low thermal expansion coefficient of 8.703 × 10(−6) K(−1). Our findings suggest that the Sc(3)(CN)F(2) MXene might be a candidate material in the design and application of 2D nanoelectronic devices. The Royal Society of Chemistry 2018-06-19 /pmc/articles/PMC9081388/ /pubmed/35539724 http://dx.doi.org/10.1039/c8ra03424a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Luo, Kan
Zha, Xian-Hu
Zhou, Yuhong
Guo, Zhansheng
Lin, Cheng-Te
Huang, Qing
Zhou, Shenghu
Zhang, Ruifeng
Du, Shiyu
First-principles study on the electrical and thermal properties of the semiconducting Sc(3)(CN)F(2) MXene
title First-principles study on the electrical and thermal properties of the semiconducting Sc(3)(CN)F(2) MXene
title_full First-principles study on the electrical and thermal properties of the semiconducting Sc(3)(CN)F(2) MXene
title_fullStr First-principles study on the electrical and thermal properties of the semiconducting Sc(3)(CN)F(2) MXene
title_full_unstemmed First-principles study on the electrical and thermal properties of the semiconducting Sc(3)(CN)F(2) MXene
title_short First-principles study on the electrical and thermal properties of the semiconducting Sc(3)(CN)F(2) MXene
title_sort first-principles study on the electrical and thermal properties of the semiconducting sc(3)(cn)f(2) mxene
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9081388/
https://www.ncbi.nlm.nih.gov/pubmed/35539724
http://dx.doi.org/10.1039/c8ra03424a
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