[[abstract]]The effect of pretreatment bias on the nucleation and growth mechanisms of the ultrananocrystalline diamond (UNCD) films on the Si substrate via bias-enhanced nucleation and bias-enhanced growth (BEN-BEG) was investigated using cross-sectional high-resolution transmission electron microscopy, chemical bonding mapping, and Raman spectroscopy. The mirror-polished substrate surface showed the formation of a triangular profile produced by a dominant physical sputtering mechanism induced by ion bombardment of ions from the hydrogen plasma accelerated toward the substrate due to biasing and a potential hydrogen-induced chemical reaction component before synthesizing the UNCD films. The BEN-BEG UNCD films grown on the Si substrate with...
[[abstract]]The evolution of diamond films in bias-enhanced-nucleation (BEN) and bias-enhanced-growt...
Deposition of thin and smooth nanocrystalline diamond films requires a high degree of control of the...
The synthesis of thin diamond films using various chemical vapor deposition methods has received sig...
[[abstract]]Ultrananocrystalline diamond (UNCD) films, which possess very smooth surface, were synth...
[[abstract]]This letter describes the fundamental process underlying the synthesis of ultrananocryst...
[[abstract]]This letter describes the fast growth of ultrananocrystalline diamond (UNCD) films by bi...
We have investigated the effect of surface modification on the dispersion of nanodiamond seeds on th...
[[abstract]]Methods for seeding silicon substrates with pretreatments and the in situ generation of ...
We investigated the influence of a hydrogenated disordered carbon (a-C:H) layer on the nucleation of...
Various mechanisms for the growth and renucleation of ultrananocrystalline diamond ͑UNCD͒ films are ...
With the large differences in surface energy between film and substrate in combination with the low...
[[abstract]]Microstructural evolution of ultrananocrystalline diamond (UNCD) films in the bias-enhan...
The effects of the bias current density and the filament-to-substrate distance on the nucleation of ...
[[abstract]]Effect of pre-nucleation techniques on enhancing nucleation density and the adhesion of ...
In this paper, we show that silicon dimples are suitable samples to study diamond nucleation on a co...
[[abstract]]The evolution of diamond films in bias-enhanced-nucleation (BEN) and bias-enhanced-growt...
Deposition of thin and smooth nanocrystalline diamond films requires a high degree of control of the...
The synthesis of thin diamond films using various chemical vapor deposition methods has received sig...
[[abstract]]Ultrananocrystalline diamond (UNCD) films, which possess very smooth surface, were synth...
[[abstract]]This letter describes the fundamental process underlying the synthesis of ultrananocryst...
[[abstract]]This letter describes the fast growth of ultrananocrystalline diamond (UNCD) films by bi...
We have investigated the effect of surface modification on the dispersion of nanodiamond seeds on th...
[[abstract]]Methods for seeding silicon substrates with pretreatments and the in situ generation of ...
We investigated the influence of a hydrogenated disordered carbon (a-C:H) layer on the nucleation of...
Various mechanisms for the growth and renucleation of ultrananocrystalline diamond ͑UNCD͒ films are ...
With the large differences in surface energy between film and substrate in combination with the low...
[[abstract]]Microstructural evolution of ultrananocrystalline diamond (UNCD) films in the bias-enhan...
The effects of the bias current density and the filament-to-substrate distance on the nucleation of ...
[[abstract]]Effect of pre-nucleation techniques on enhancing nucleation density and the adhesion of ...
In this paper, we show that silicon dimples are suitable samples to study diamond nucleation on a co...
[[abstract]]The evolution of diamond films in bias-enhanced-nucleation (BEN) and bias-enhanced-growt...
Deposition of thin and smooth nanocrystalline diamond films requires a high degree of control of the...
The synthesis of thin diamond films using various chemical vapor deposition methods has received sig...