Nanocrystalline diamond (NCD) has attracted much attention in recent years because of improvements in growth methodologies that have provided increases in both film thickness and growth rate, while preserving the outstanding mechanical properties of diamond material. We provide here some evidence, based on combined experimental and first-principles analyses, that ultralow friction of nanocrystalline diamond in the presence of water vapor is associated with OH and H passivation of sliding surfaces, resulting from the dissociative adsorption of H 2O molecules. The presence of these adsorbates (OH and H fragments) keeps the surfaces far apart preventing the formation of covalent bonds across the interface. H-passivated surfaces, resulting from...
Ab initio molecular dynamics offers an unexpected tool to understand many aspects of complex and mac...
Tribological properties of ultrananocrystalline diamond nanowall (UNCD NW) films were investigated q...
The physical and chemical adsorption of water at the (1 Ã 1) and (2 Ã 1)-reconstructed C(111) surfac...
Nanocrystalline diamond (NCD) has attracted much attention in recent years because of improvements i...
Large-scale quantum molecular dynamics simulations unveil eight friction regimes of water-lubricated...
Experimental findings indicate that the impressively low friction and wear of diamond in humid envir...
Large-scale quantum molecular dynamics of water-lubricated diamond (111) surfaces in sliding contact...
none3noTribochemical reactions are chemical processes, usually involving lubricant or environment mo...
Understanding water interaction with diamond surfaces is fundamental for applications in tribology, ...
Strong attractive interaction between two clean diamond (001) slabs turns repulsive upon the hydroge...
The impressively low friction and wear of diamond in humid environments is debated to originate from...
The impressively low friction and wear of diamond in humid environments is debated to originate from...
Ab initio molecular dynamics offers an unexpected tool to understand many aspects of complex and mac...
Tribological properties of ultrananocrystalline diamond nanowall (UNCD NW) films were investigated q...
The physical and chemical adsorption of water at the (1 Ã 1) and (2 Ã 1)-reconstructed C(111) surfac...
Nanocrystalline diamond (NCD) has attracted much attention in recent years because of improvements i...
Large-scale quantum molecular dynamics simulations unveil eight friction regimes of water-lubricated...
Experimental findings indicate that the impressively low friction and wear of diamond in humid envir...
Large-scale quantum molecular dynamics of water-lubricated diamond (111) surfaces in sliding contact...
none3noTribochemical reactions are chemical processes, usually involving lubricant or environment mo...
Understanding water interaction with diamond surfaces is fundamental for applications in tribology, ...
Strong attractive interaction between two clean diamond (001) slabs turns repulsive upon the hydroge...
The impressively low friction and wear of diamond in humid environments is debated to originate from...
The impressively low friction and wear of diamond in humid environments is debated to originate from...
Ab initio molecular dynamics offers an unexpected tool to understand many aspects of complex and mac...
Tribological properties of ultrananocrystalline diamond nanowall (UNCD NW) films were investigated q...
The physical and chemical adsorption of water at the (1 Ã 1) and (2 Ã 1)-reconstructed C(111) surfac...