Published July 16, 2021 | Version v1
Journal article

Density functional theory study of the mechanical behavior of silicene and development of a Tersoff interatomic potential model tailored for elastic behavior

  • 1. School of Mechanical Engineering, Yonsei University, Seoul, 03722 (Korea, Republic of)
  • 2. Department of Mechanical Engineering, Kyung Hee University, Yongin-si, Gyeonggi, 17104 (Korea, Republic of)

Description

Silicene, a graphene-like 2D material made from Si atoms, has been fabricated and studied for its promising applications in micro/nanoelectronics. For the reliable function of silicene devices, it is important to investigate silicene's mechanical properties. In this study, the authors conducted density functional theory (DFT) simulations of mechanical tests of silicene and investigated the elastic modulus and mechanical response such as structural transformation. In addition, the authors optimized the Tersoff potential parameters using a gradient-based minimization with a grid search method in hyperdimensional parameter space, to match the DFT calculation results in the elastic regime. With the new parameter set, the elastic moduli of silicene in the zigzag (ZZ) and armchair (AC) directions were computed with molecular statics (MS) simulations and compared with those of other Si interatomic potential models and DFT results. In addition, uniaxial tensile tests along the ZZ and AC directions were performed to examine how far the Tersoff model is transferable with our new parameter set to describe the nonlinear mechanical behavior of silicene. The results of uniaxial tensile tests suggest that the angle penalty function in the Tersoff model needs to be modified and that the stress–strain curve predicted with this modification shows improvement compared to the original function. (paper)

Availability note (English)

Available from http://dx.doi.org/10.1088/1361-6528/abf26d

Additional details

Identifiers

Publishing Information

Journal Title
Nanotechnology (Print)
Journal Volume
32
Journal Issue
29
Journal Page Range
[11 p.]
ISSN
0957-4484

INIS

Country of Publication
United Kingdom
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
53065828
Subject category
S77: NANOSCIENCE AND NANOTECHNOLOGY; S36: MATERIALS SCIENCE;
Descriptors DEI
DENSITY FUNCTIONAL METHOD; GRAPHENE; MECHANICAL PROPERTIES; MECHANICAL TESTS; MINIMIZATION; NANOELECTRONICS; SILICENE; SIMULATION; STRAINS; STRESSES
Descriptors DEC
CALCULATION METHODS; CARBON; ELEMENTS; MATERIALS TESTING; NONMETALS; OPTIMIZATION; SEMIMETALS; SILICON; TESTING; VARIATIONAL METHODS