Spontaneous growth of diamond from MnNi solvent-catalyst using opposed anvil-type high-pressure apparatus
arXiv:1404.3618 · doi:10.1016/j.jcrysgro.2014.03.002
Abstract
In this paper an overview of the application of opposed anvil-type high-pressure high-temperature apparatus for spontaneous growth of diamond crystals by solvent-catalyst technique is presented. The process makes use of a molten Mn47Ni53 catalyst to initiate the graphite-diamond transformation reaction. The pressure and temperature requirements to obtain reproducible spontaneous diamond crystallization were around 52.5-54 kbar and 1270-1320 C. The crystals had well-shaped cubo-structured morphology with the 100 and 111 faces and grain sizes of 0.2-0.5 mm. This work can stimulate future experimental exploration of spontaneous diamond crystallization by using other solvent-catalyst metals.
References in corpus (1)
Cited by in corpus (10)
- Crystal growth of hexagonal boron nitride (hBN) from Mg-B-N solvent system under high pressure
- Growth of bulk single-crystal MnP helimagnet and its structural and NMR characterization
- High pressure crystal growth of the antiperovskite centrosymmetric superconductor SrPt3P
- High-pressure growth and characterization of bulk MnAs single crystals
- Exploring 2D Materials by High Pressure Synthesis: hBN, Mg-hBN, b-P, b-AsP, and GeAs
- High-pressure hydrothermal growth and characterization of Sr3Os4O14 single crystals
- Crystal growth and characterization of the antiperovskite superconductor MgC1-xNi3-y
- High-pressure high-temperature solution growth, structural, and superconducting properties of Fe-substituted MgB2 single crystals
- High-pressure self-flux growth and characterization of Li-deficient Li0.95FeAs single crystals
- Discovery of a new magnesium iron boride Mg4Fe1.1B13.9 in the Mg-Fe-B-N system