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Journal ArticleDOI

Boron carbide structure by Raman spectroscopy

TLDR
Comparison of boron carbide Ramen spectra with the Raman spectra of {alpha}-rhombohedralboron, borons phosphide, and bor on arsenide has confirmed the following structural model derived from theoretical considerations and electrical and thermal transport data.
Abstract
We have obtained and analyzed Raman spectra of single-crystal, hot-pressed, and chemical-vapor-deposited boron carbide materials over their single-phase region (from {similar to}9 to {similar to}20 at. % carbon). These spectra provide insight into the substitutional disorder that characterizes these structurally ordered solids. In particular, although icosahedra and chain structures occupy regular lattice positions, there is local substitutional disorder resulting from the occupancy of certain sites within the icosahedra and chains by either boron or carbon atoms. Comparison of boron carbide Raman spectra with the Raman spectra of {alpha}-rhombohedral boron, boron phosphide, and boron arsenide has confirmed the following structural model derived from theoretical considerations and electrical and thermal transport data. The boron carbide composition with nearly 20 at. % carbon is composed of B{sub 11}C icosahedra linked by carbon-boron-carbon chains. As the carbon content is reduced toward approximately 13 at. %, carbon-boron-carbon chains are progressively replaced by carbon-boron-boron chains. Further reduction in the carbon content results in the replacement of B{sub 11}C icosahedra with B{sub 12} icosahedra.

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Journal ArticleDOI

Boron carbide ― a comprehensive review

TL;DR: Boron carbide has high melting point, outstanding hardness, good mechanical properties, low specific weight, great resistance to chemical agents and high neutron absorption cross-section (10BxC, x>4) is currently used in high-technology industries as discussed by the authors.
Journal ArticleDOI

Boron Carbide: Structure, Properties, and Stability under Stress

TL;DR: A comprehensive review of the recent advances in understanding of structural and chemical variations in boron carbide and their influence on electronic, optical, vibrational, mechanical and ballistic properties is provided in this article.
Journal ArticleDOI

Synthesis and consolidation of boron carbide: a review

TL;DR: In this article, all the techniques on synthesis and consolidation of boron carbide are discussed in detail and critically reviewed, including hot pressing and hot isostatic pressing are the main processes employed for densification.
Patent

Systems and methods of forming refractory metal nitride layers using disilazanes

TL;DR: In this paper, a method of forming (and apparatus for forming) refractory metal nitride layers (including silicon nitride layer), such as a tantalum (silicon) nitride barrier layer, on a substrate by using a vapor deposition process with a refined metal precursor compound, a disilazane, and an optional silicon precursor compound.
Journal ArticleDOI

Examination of the factors affecting the electrochemical performance of oxygen-terminated polycrystalline boron-doped diamond electrodes.

TL;DR: Alumina polishing of lapped, NDC free, freestanding, BDD electrodes was found to be an effective way to produce well-defined, stable, and reproducible surfaces, which support fast (reversible) HET for Fe(CN)6(4-) electrolysis, the first time this has been reported at an oxygen-terminated surface.
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