Your browser doesn't support javascript.
loading
A systematic first-principles investigation of the structural, electronic, mechanical, optical, and thermodynamic properties of Half-Heusler ANiX (ASc, Ti, Y, Zr, Hf; XBi, Sn) for spintronics and optoelectronics applications.
Tarekuzzaman, Md; Ishraq, Mohammad Hasin; Rahman, Md Atikur; Irfan, Ahmed; Rahman, Md Zillur; Akter, Mist Shamima; Abedin, Sumaya; Rayhan, M A; Rasheduzzaman, Md; Hossen, M Moazzam; Hasan, Md Zahid.
Afiliação
  • Tarekuzzaman M; Materials Research and Simulation Lab, Department of Electrical and Electronic Engineering, International Islamic University Chittagong, Chittagong, Bangladesh.
  • Ishraq MH; Department of Electrical and Electronic Engineering, International Islamic University Chittagong, Chittagong, Bangladesh.
  • Rahman MA; Materials Research and Simulation Lab, Department of Electrical and Electronic Engineering, International Islamic University Chittagong, Chittagong, Bangladesh.
  • Irfan A; Department of Electrical and Electronic Engineering, International Islamic University Chittagong, Chittagong, Bangladesh.
  • Rahman MZ; Department of Physics, Pabna University of Science and Technology, Pabna, Bangladesh.
  • Akter MS; Department of Chemistry, College of Science, King Khalid University, Abha, Saudi Arabia.
  • Abedin S; Materials Research and Simulation Lab, Department of Electrical and Electronic Engineering, International Islamic University Chittagong, Chittagong, Bangladesh.
  • Rayhan MA; Department of Electrical and Electronic Engineering, International Islamic University Chittagong, Chittagong, Bangladesh.
  • Rasheduzzaman M; Materials Research and Simulation Lab, Department of Electrical and Electronic Engineering, International Islamic University Chittagong, Chittagong, Bangladesh.
  • Hossen MM; Department of Electrical and Electronic Engineering, International Islamic University Chittagong, Chittagong, Bangladesh.
  • Hasan MZ; Materials Research and Simulation Lab, Department of Electrical and Electronic Engineering, International Islamic University Chittagong, Chittagong, Bangladesh.
J Comput Chem ; 2024 Jul 05.
Article em En | MEDLINE | ID: mdl-38970309
ABSTRACT
This paper is the first to look at the structural, electronic, mechanical, optical, and thermodynamic properties of the ANiX (ASc, Ti, Y, Zr, Hf; XBi, Sn) half-Heusler (HH) using DFT based first principles method. The lattice parameters that we have calculated are very similar to those obtained in prior investigations with theoretical and experimental data. The positive phonon dispersion curve confirm the dynamical stability of ANiX (ASc, Ti, Y, Zr, Hf; XBi, Sn). The electronic band structure and DOS confirmed that the studied materials ANiX (ASc, Ti, Y, Zr, Hf; XBi, Sn) are direct band gap semiconductors. The investigation also determined significant constants, including dielectric function, absorption, conductivity, reflectivity, refractive index, and loss function. These optical observations unveiled our compounds potential utilization in various electronic and optoelectronic device applications. The elastic constants were used to fulfill the Born criteria, confirming the mechanical stability and ductility of the solids ANiX (ASc, Ti, Y, Zr, Hf; XBi, Sn). The calculated elastic modulus revealed that our studied compounds are elastically anisotropic. Moreover, ANiX (ASc, Ti, Y, Zr, Hf; XBi, Sn) has a very low minimum thermal conductivity (Kmin), and a low Debye temperature (θD), which indicating their appropriateness for utilization in thermal barrier coating (TBC) applications. The Helmholtz free energy (F), internal energy (E), entropy (S), and specific heat capacity (Cv) are determined by calculations derived from the phonon density of states.
Palavras-chave

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: J Comput Chem Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: J Comput Chem Ano de publicação: 2024 Tipo de documento: Article