Open Journal of Inorganic Chemistry

Volume 4, Issue 1 (January 2014)

ISSN Print: 2161-7406   ISSN Online: 2161-7414

Google-based Impact Factor: 1.08  Citations  

Crystallization of amorphous boron by the calorimetric method

HTML  Download Download as PDF (Size: 202KB)  PP. 18-20  
DOI: 10.4236/ojic.2014.41003    4,559 Downloads   8,470 Views  Citations

ABSTRACT

The kinetics of formation of crystal boron was studied by X-ray structure and differential-thermal analyses. The enthalpy of transition of amorphous boron to crystal boron with formation of an intermediate non-equilibrium phase was determined by the calorimetric method. Studies were carried out by using the differential scanning calorimeter SETARAM. Amorphous boron received by diboron cracking was used as the starting material. The test sample is cha- racterized by stability even at a high temperature. When heated, amorphous boron first transforms to crystal boron of α-modification, and during a further heating, there occur several phase transitions, which means the transition of α-rhombohedric crystal boron to the β' and β'' metastable states. Studies of various modifications were carried out by radiographic and electro-optic methods. The high sensitiveness of the calorimeter made it possible to control temperature in the oven, make records and detect even the smallest thermal effects.

Share and Cite:

Machaladze, T. , Samkharadze, M. , Kakhidze, N. and Makhviladze, M. (2014) Crystallization of amorphous boron by the calorimetric method. Open Journal of Inorganic Chemistry, 4, 18-20. doi: 10.4236/ojic.2014.41003.

Cited by

[1] High power diode laser alloying of TiB2 and amorphous-boron with titanium: Phase, microstructure and hardness analyses
2021
[2] Rapid synthesis of thermoelectric YB22C2N via spark plasma sintering with gas/solid reaction technology
2020
[3] Development of New Synthesis Routes for High Temperature Thermoelectric Materials via Spark Plasma Sintering Utilizing Solid-State Reaction, Liquid Phase …
2020
[4] JCS-Japan
2020
[5] Вплив мікроструктури та напружено-деформованого стану на фізико-механічні властивості композитів систем LaB6-MeB2-Cu (Al)
2018
[6] Механическая активация кристаллизации аморфного бора и синтеза Al₃Ti при холодном изостатическом прессовании порошка состава В–Al–(LaB₆–TiB₂)
2017
[7] Phase diagram of boron crystals
Japanese Journal of Applied Physics, 2017
[8] Mechanical activation of crystallization of amorphous boron and synthesis of Al 3 Ti under cold isostatic pressing of B–Al–(LaB 6–TiB 2) powder
Journal of Superhard Materials, 2017
[9] Liquid boron and amorphous boron: An ab initio molecular dynamics study
Journal of Non-Crystalline Solids, 2015

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.