Araştırma Makalesi

The First Principles Investigation of Structural, Electronic, Mechanical and Lattice Dynamical Properties of the B and N Doped M2AX Type MAX Phases Ti2AlB0.5C0.5 and Ti2AlN0.5C0.5 Compounds

Cilt: 3 Sayı: 1 26 Mart 2018
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The First Principles Investigation of Structural, Electronic, Mechanical and Lattice Dynamical Properties of the B and N Doped M2AX Type MAX Phases Ti2AlB0.5C0.5 and Ti2AlN0.5C0.5 Compounds

Öz

Ti2AlB0.5C0.5 and Ti2AlN0.5C0.5 compounds which are called M2AX type MAX phases referred to as 211 and have hexagonal crystal structure with conform to P63/mmc space group, have been examined by using Generalized Gradient Approximation (GGA) in the Density Functional Theory (DFT) as implemented in CASTEP software package. In this study, the electronic, elastic, and lattice dynamical properties of these compounds have been investigated within the ab initio study. These compounds show metallic behavior since there is no band gap in the calculated electronic band structures. The estimated elastic constants of these compounds indicate that they are mechanically stable and their bonding nature is ionic and also, Ti2AlN0.5C0.5 compund has anisotropic character in mechanically whereas the behavior of Ti2AlB0.5C0.5 compound is nearly isotropic. Moreover, both of our compounds are brittle materials. Also, these compounds are dynamically stable since there are no soft modes in their plotted phonon dispersion curves. 

Anahtar Kelimeler

Kaynakça

  1. Barsoum M. W., The MN+1AXN phases: A new class of solids: Thermodynamically stable nanolaminates, Progress in Solid State Chemistry, 28, 201-281, 2000.
  2. Dahlqvist M., Alling B., and Rosen J., Stability trends of MAX phases from first principles, Physical Review B, 81, 220102 1-4, 2010.
  3. Yang Z. J., Li J., Linghu R. F., Cheng X. L., and Yang X. D., First-principle investigations on the structural dynamics of Ti2GaN, J. Alloys Comp., 574, 573-579, 2013.
  4. Hea X., Bai Y., Li Y., Zhu C., and Li M., Ab initio calculations for properties of MAX phases Ti2InC, Zr2InC, and Hf2InC, Solid State Communications, 149, 564-566, 2009.
  5. Barsoum M. W., Physical Properties of the MAX Phases Encyclopedia of Materials: Science and Technology Elsevier Amsterdam, 2006.
  6. Barsoum M. W., El-Raghy T., Synthesis and characterization of a remarkable ceramic: Ti3SiC2, J. Am. Ceram. Soc., 79, 1953-1956, 1996.
  7. Yoo H., Barsoum M. W., El-Raghy T., Materials science: Ti3SiC2 has negligible thermopower, Nature, 407, 581-582, 2000.
  8. Barsoum M. W., El-Raghy T., Room-temperature ductile carbides, Metall. Mater. Trans. A, 30(2), 363-369, 1999.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Mühendislik

Bölüm

Araştırma Makalesi

Yazarlar

Aytac Erkisi Bu kişi benim
HACETTEPE ÜNİVERSİTESİ
Türkiye

Yayımlanma Tarihi

26 Mart 2018

Gönderilme Tarihi

10 Ağustos 2017

Kabul Tarihi

4 Ocak 2018

Yayımlandığı Sayı

Yıl 2018 Cilt: 3 Sayı: 1

Kaynak Göster

APA
Surucu, G., & Erkisi, A. (2018). The First Principles Investigation of Structural, Electronic, Mechanical and Lattice Dynamical Properties of the B and N Doped M2AX Type MAX Phases Ti2AlB0.5C0.5 and Ti2AlN0.5C0.5 Compounds. Journal of Boron, 3(1), 24-32. https://doi.org/10.30728/boron.333855
AMA
1.Surucu G, Erkisi A. The First Principles Investigation of Structural, Electronic, Mechanical and Lattice Dynamical Properties of the B and N Doped M2AX Type MAX Phases Ti2AlB0.5C0.5 and Ti2AlN0.5C0.5 Compounds. Journal of Boron. 2018;3(1):24-32. doi:10.30728/boron.333855
Chicago
Surucu, Gokhan, ve Aytac Erkisi. 2018. “The First Principles Investigation of Structural, Electronic, Mechanical and Lattice Dynamical Properties of the B and N Doped M2AX Type MAX Phases Ti2AlB0.5C0.5 and Ti2AlN0.5C0.5 Compounds”. Journal of Boron 3 (1): 24-32. https://doi.org/10.30728/boron.333855.
EndNote
Surucu G, Erkisi A (01 Mart 2018) The First Principles Investigation of Structural, Electronic, Mechanical and Lattice Dynamical Properties of the B and N Doped M2AX Type MAX Phases Ti2AlB0.5C0.5 and Ti2AlN0.5C0.5 Compounds. Journal of Boron 3 1 24–32.
IEEE
[1]G. Surucu ve A. Erkisi, “The First Principles Investigation of Structural, Electronic, Mechanical and Lattice Dynamical Properties of the B and N Doped M2AX Type MAX Phases Ti2AlB0.5C0.5 and Ti2AlN0.5C0.5 Compounds”, Journal of Boron, c. 3, sy 1, ss. 24–32, Mar. 2018, doi: 10.30728/boron.333855.
ISNAD
Surucu, Gokhan - Erkisi, Aytac. “The First Principles Investigation of Structural, Electronic, Mechanical and Lattice Dynamical Properties of the B and N Doped M2AX Type MAX Phases Ti2AlB0.5C0.5 and Ti2AlN0.5C0.5 Compounds”. Journal of Boron 3/1 (01 Mart 2018): 24-32. https://doi.org/10.30728/boron.333855.
JAMA
1.Surucu G, Erkisi A. The First Principles Investigation of Structural, Electronic, Mechanical and Lattice Dynamical Properties of the B and N Doped M2AX Type MAX Phases Ti2AlB0.5C0.5 and Ti2AlN0.5C0.5 Compounds. Journal of Boron. 2018;3:24–32.
MLA
Surucu, Gokhan, ve Aytac Erkisi. “The First Principles Investigation of Structural, Electronic, Mechanical and Lattice Dynamical Properties of the B and N Doped M2AX Type MAX Phases Ti2AlB0.5C0.5 and Ti2AlN0.5C0.5 Compounds”. Journal of Boron, c. 3, sy 1, Mart 2018, ss. 24-32, doi:10.30728/boron.333855.
Vancouver
1.Gokhan Surucu, Aytac Erkisi. The First Principles Investigation of Structural, Electronic, Mechanical and Lattice Dynamical Properties of the B and N Doped M2AX Type MAX Phases Ti2AlB0.5C0.5 and Ti2AlN0.5C0.5 Compounds. Journal of Boron. 01 Mart 2018;3(1):24-32. doi:10.30728/boron.333855

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