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  diamond nucleation and growth
Experiments at 6.0-7.1 GPa and 1500-1700°C were carried out to explore the boundary conditions of diamond nucleation and growth in pyrrhotite-carbon melt-solutions.
      
Mechanisms of CVD diamond nucleation and growth on mechanically scratched Si(100) surfaces
      
The presence of various hydrocarbon species in the plasma and their reaction with atomic, excited or molecular hydrogen on the substrate surface decide the mechanism of diamond nucleation and growth.
      
Effect of deposition conditions on diamond nucleation and growth.
      
In this effort, static magnetic fields in excess of 15 T are observed to direct these carbon and metal intermediary microstates to promote nano-diamond nucleation and growth at atmospheric pressure and temperature of 900°C.
      
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  diamond nucleation and growth
Experiments at 6.0-7.1 GPa and 1500-1700°C were carried out to explore the boundary conditions of diamond nucleation and growth in pyrrhotite-carbon melt-solutions.
      
Mechanisms of CVD diamond nucleation and growth on mechanically scratched Si(100) surfaces
      
The presence of various hydrocarbon species in the plasma and their reaction with atomic, excited or molecular hydrogen on the substrate surface decide the mechanism of diamond nucleation and growth.
      
Effect of deposition conditions on diamond nucleation and growth.
      
In this effort, static magnetic fields in excess of 15 T are observed to direct these carbon and metal intermediary microstates to promote nano-diamond nucleation and growth at atmospheric pressure and temperature of 900°C.
      
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