Correlation between Orbital Hybridizations, Phonon Spectra, and Thermal Properties of Graphene, Germanene, and Plumbene

Author:

Dien Vo Khuong1ORCID,Thi Han Nguyen1,Bang-Li Wei1,Lin Kuang-I2,Lin Ming-Fa13

Affiliation:

1. Department of Physics National Cheng Kung University 701 Tainan Taiwan

2. Core Facility Center National Cheng Kung University 701 Tainan Taiwan

3. Hierarchical Green-Energy Material (Hi-GEM) Research Center National Cheng Kung University 701 Tainan Taiwan

Abstract

Based on first‐principles calculations within the harmonic approximation, the phonon properties and specific heat capacities of 2D honeycomb lattices are investigated. Graphene, germanene, and plumbene manifest interesting phonon properties. The similarities and differences in their nature, for example, the total phonon bandwidth, low‐frequency phonon dispersion, and phonon bandgap mostly arise from the significant orbital interactions. These features are reflected in the phonon branch‐dependent specific heat capacity. The information obtained in this work about the relative contributions of distinct phonons to different temperature ranges is crucial for energy storage and heat management applications.

Funder

Ministry of Science and Technology

Publisher

Wiley

Subject

Condensed Matter Physics,General Materials Science

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