First-Principles Study of the Structural, Electronic, Dynamical, and Mechanical Properties of Pd-Nb Binary Systems

24 Pages Posted: 28 Mar 2022

See all articles by Peitao Liu

Peitao Liu

affiliation not provided to SSRN

Mingfeng Liu

affiliation not provided to SSRN

Lei Wang

affiliation not provided to SSRN

Jiantao Wang

affiliation not provided to SSRN

Heyu Zhu

affiliation not provided to SSRN

Hui Ma

Chinese Academy of Sciences (CAS)

Yan Wei

Kunming Institute of Precious Metals

Aimin Zhang

affiliation not provided to SSRN

Li Chen

Kunming Institute of Precious Metals

Xing-Qiu Chen

Chinese Academy of Sciences (CAS)

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Abstract

We study the structural, electronic, dynamical, and mechanical properties of the whole Pd-Nb binary systems based on first-principles density functional theory calculations. Using the variable-composition evolutionary structure search algorithm, we predict eight new ground-state phases (cI32-Pd 15 Nb, oC24-Pd 11 Nb, mC18-Pd 8 Nb, oF60-Pd 13 Nb 2 , mC24-Pd 5 Nb, oF12-PdNb 2 , oC16-PdNb 7 , and oC32-PdNb 15 ) and eight metastable phases (hP9-Pd 8 Nb, mC12-Pd 5 Nb, oC12-Pd 5 Nb, tP2-PdNb, oC20-PdNb, tI10-Pd 2 Nb 3 , oC20-Pd 2 Nb 3 , and mP10-PdNb 4 ) that have not yet been experimentally or theoretically reported. All the predicted phases are dynamically stable in the absence of soft phonon modes in calculated phonon dispersions. The elastic properties calculations show that all these compounds are also mechanically stable. We find that the Young's modulus, bulk modulus as well as shear modulus exhibit similar convex variations with respect to the Nb concentrations, while the Poisson's ratio shows the opposite trend. These trends are found to be highly correlated with the atomic arrangement in crystal structures and associated chemical bondings. Among all the predicted Pd x Nb y compounds, tI8-Pd 3 Nb exhibits the largest elastic moduli due to its relatively close-packed structure induced near homogeneous chemical bondings. The electronic structure calculations reveal that all predicted Pd-Nb compounds are metallic with complex band structures. Interestingly, the oI6-Pd 2 Nb compound hosts nontrivial Dirac nodal lines around the Fermi energy and exhibits topological nodal line surface states on the (001) plane. This work provides the first complete survey on the whole Pd-Nb systems, paving the way to exploring potential candidates for Pd-based eletrocatalysts.

Keywords: First-principles calculationsVariable-composition evolutionary structure searchPd-Nb binary systemIntermetallicsElectronic structuresElastic properties

Suggested Citation

Liu, Peitao and Liu, Mingfeng and Wang, Lei and Wang, Jiantao and Zhu, Heyu and Ma, Hui and Wei, Yan and Zhang, Aimin and Chen, Li and Chen, Xing-Qiu, First-Principles Study of the Structural, Electronic, Dynamical, and Mechanical Properties of Pd-Nb Binary Systems. Available at SSRN: https://ssrn.com/abstract=4068013 or http://dx.doi.org/10.2139/ssrn.4068013

Peitao Liu (Contact Author)

affiliation not provided to SSRN ( email )

No Address Available

Mingfeng Liu

affiliation not provided to SSRN ( email )

No Address Available

Lei Wang

affiliation not provided to SSRN ( email )

No Address Available

Jiantao Wang

affiliation not provided to SSRN ( email )

No Address Available

Heyu Zhu

affiliation not provided to SSRN ( email )

No Address Available

Hui Ma

Chinese Academy of Sciences (CAS) ( email )

Yan Wei

Kunming Institute of Precious Metals ( email )

Aimin Zhang

affiliation not provided to SSRN ( email )

No Address Available

Li Chen

Kunming Institute of Precious Metals ( email )

Xing-Qiu Chen

Chinese Academy of Sciences (CAS) ( email )

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