Journal Article

·2019

Formation of composite structure based on boron and indium components under concentrated light in flow of nitrogen

Lina Sartinska , Tarık Eren YTU , Anatoly Efimov

Advances in Applied Ceramics Structural Functional and Bioceramics

Abstract

Transformation of BN and B powders and 25 wt.% In in a high-flux optical furnace in flow of nitrogen was considered. Powders were collected at different distances from a reaction zone. In nanopowder with a thin oxidised layer was formed during heating BN and In at 1000°C. Heating at 1500°C s results in platelike and equiaxed BN particles, compose B inside and H3BO3 layer, nano-petal particles, compose InN and number of fullerene-like particles with complicated ‘core shell’ structure. The last was formed as a result of segregation of transparent shell of B components around crystalline fullerene-like InN. These structures arise from a bubbles evolution of B and In components in conformity with ‘gaseous model for nanotubes and fullerenes formation and growth’. InN prevents the formation of new modifications of BN and shifting stretching band of BN according to FTIR. BN disclosed itself as an excellent getter for InN.

Keywords

Materials science Composite number Fullerene Indium Boron Chemical engineering Equiaxed crystals Layer (electronics) Boron nitride Nitrogen Nanotechnology Composite material Metallurgy Microstructure Organic chemistry

Subject Areas

Chalcogenide Semiconductor Thin Films ·Electrical and Electronic Engineering ·Physical Sciences
Semiconductor materials and interfaces ·Atomic and Molecular Physics, and Optics ·Physical Sciences
Metal and Thin Film Mechanics ·Mechanics of Materials ·Physical Sciences

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