The adsorption of low-energy C20 isomers on diamond (001)-(2×1) surface was investigated by molecular dynamics simulation using the Brenner potential. The energy dependence of chemisorption characteristic was studied. We found that there existed an energy threshold for chemisorption of C20 to occur. Between 10 and 20 eV, the C20 fullerene has high probability of chemisorption and the adsorbed cage retains its original structure, which supports the experimental observations of memory effects. However, the structures of the adsorbed bowl and ring C20 were different from their original ones. In this case, the local order in cluster-assembled films would be different from the free clusters.</p
The impact induced chemisorption of hydrocarbon molecules (CH3 and CH2) on H-terminated diamond (001...
The focus of this paper is on the adsorption of unsaturated hydrocarbon molecules on β-SiC (111) sur...
Molecular Dynamics computer simulations have been used to investigate the energy propagation followi...
The adsorption of low-energy C20 isomers on diamond (001)-(2×1) surface was investigated by molecula...
The adsorption of low-energy C-20 isomers on diamond (0 0 1)-(2 x 1) surface was investigated by mol...
In this paper, the collision of a C-36. with D-6h symmetry, on diamond (0 0 1)-(2 x 1) surface was i...
In this paper, the initial stage of films assembled by energetic C-36 fullerenes on diamond (001)-(2...
In this paper, the initial stage of films assembled by energetic C36 fullerenes on diamond (001)–(2 ...
Experimentally, hydrogen-free diamond-like carbon (DLC) films were assembled by means of pulsed lase...
In this paper, the deposition of C20 fullerenes on a diamond (001)-(2 × 1) surface and the fabricati...
We studied the deposition dynamics of C2H2 molecules on diamond reconstructed (001)-(2×1) surface by...
The deposition of hyperthermal CH3 on diamond (001)-(2×1) surface at room temperature has been studi...
Molecular dynamics simulations were carried out to investigate the adsorption of a low-energy C20 on...
The deposition of hyperthermal CH3 on diamond (001)-(2 x 1) surface at room temperature has been stu...
The impact induced chemisorption of hydrocarbon molecules (CH3 and CH2) on H-terminated diamond (001...
The impact induced chemisorption of hydrocarbon molecules (CH3 and CH2) on H-terminated diamond (001...
The focus of this paper is on the adsorption of unsaturated hydrocarbon molecules on β-SiC (111) sur...
Molecular Dynamics computer simulations have been used to investigate the energy propagation followi...
The adsorption of low-energy C20 isomers on diamond (001)-(2×1) surface was investigated by molecula...
The adsorption of low-energy C-20 isomers on diamond (0 0 1)-(2 x 1) surface was investigated by mol...
In this paper, the collision of a C-36. with D-6h symmetry, on diamond (0 0 1)-(2 x 1) surface was i...
In this paper, the initial stage of films assembled by energetic C-36 fullerenes on diamond (001)-(2...
In this paper, the initial stage of films assembled by energetic C36 fullerenes on diamond (001)–(2 ...
Experimentally, hydrogen-free diamond-like carbon (DLC) films were assembled by means of pulsed lase...
In this paper, the deposition of C20 fullerenes on a diamond (001)-(2 × 1) surface and the fabricati...
We studied the deposition dynamics of C2H2 molecules on diamond reconstructed (001)-(2×1) surface by...
The deposition of hyperthermal CH3 on diamond (001)-(2×1) surface at room temperature has been studi...
Molecular dynamics simulations were carried out to investigate the adsorption of a low-energy C20 on...
The deposition of hyperthermal CH3 on diamond (001)-(2 x 1) surface at room temperature has been stu...
The impact induced chemisorption of hydrocarbon molecules (CH3 and CH2) on H-terminated diamond (001...
The impact induced chemisorption of hydrocarbon molecules (CH3 and CH2) on H-terminated diamond (001...
The focus of this paper is on the adsorption of unsaturated hydrocarbon molecules on β-SiC (111) sur...
Molecular Dynamics computer simulations have been used to investigate the energy propagation followi...