The results of neutron and x-ray diffraction experiments performed on a range of nitrogen-doped amorphous hydrogenated carbon (a-C:N-x:H, where x = 0, 6, 8 and 10 at.%) samples are presented. Changes in the average bond lengths and bond angles are observed as the nitrogen content is varied; however, no qualitative structural differences are seen between the samples. Both CH and NH correlations are seen directly, and N-H bonds are shown to be favoured over C-H at the highest N concentration. Also for the sample with the highest N content, the data provide evidence for the presence of a small quantity of C=N triple bonds, although this is not the dominant bonding environment of N. The data indicate that N incorporation may result in some tran...
A range of amorphous hydrogenated carbon (a-C:H) samples have been studied using inelastic neutron s...
A series of thin film and powder samples of amorphous hydrogenated carbon (a-CH) have been deposited...
The application of the reverse Monte Carlo method to modeling a covalently bonded amorphous material...
A range of nitrogen-doped amorphous hydrogenated carbon samples (a-C:N-x:H, where x = 3 at.% and x =...
The results of neutron-diffraction experiments performed on two samples of amorphous CNx, with nitro...
Current structural models for amorphous hydrogenated carbon (a-C:H) are called into question on the ...
The structure of samples of amorphous hydrogenated carbon, prepared from acetylene and propane precu...
The effects of nitrogen incorporation on the atomic-scale structure of amorphous CNx samples have be...
The presence of molecular hydrogen in a-C:H has been demonstrated by a series of neutron scattering ...
Whilst the short-range order in a-C:H is of central importance in explaining its mechanical properti...
The results of a neutron diffraction study on the structure of amorphous hydrogenated carbon alpha-C...
The structure of a common batch of amorphous hydrogenated carbon samples (a-C:H) has been studied in...
Our NMR studies give experimental evidence of bonding heterogeneity in samples of a-C:H on the nanom...
Two a-C:H samples were prepared using a fast-atom deposition system from acetylene and an acetylene/...
The atomic scale structure of amorphous hydrogenated carbon (a-C:H) films prepared from an acetylene...
A range of amorphous hydrogenated carbon (a-C:H) samples have been studied using inelastic neutron s...
A series of thin film and powder samples of amorphous hydrogenated carbon (a-CH) have been deposited...
The application of the reverse Monte Carlo method to modeling a covalently bonded amorphous material...
A range of nitrogen-doped amorphous hydrogenated carbon samples (a-C:N-x:H, where x = 3 at.% and x =...
The results of neutron-diffraction experiments performed on two samples of amorphous CNx, with nitro...
Current structural models for amorphous hydrogenated carbon (a-C:H) are called into question on the ...
The structure of samples of amorphous hydrogenated carbon, prepared from acetylene and propane precu...
The effects of nitrogen incorporation on the atomic-scale structure of amorphous CNx samples have be...
The presence of molecular hydrogen in a-C:H has been demonstrated by a series of neutron scattering ...
Whilst the short-range order in a-C:H is of central importance in explaining its mechanical properti...
The results of a neutron diffraction study on the structure of amorphous hydrogenated carbon alpha-C...
The structure of a common batch of amorphous hydrogenated carbon samples (a-C:H) has been studied in...
Our NMR studies give experimental evidence of bonding heterogeneity in samples of a-C:H on the nanom...
Two a-C:H samples were prepared using a fast-atom deposition system from acetylene and an acetylene/...
The atomic scale structure of amorphous hydrogenated carbon (a-C:H) films prepared from an acetylene...
A range of amorphous hydrogenated carbon (a-C:H) samples have been studied using inelastic neutron s...
A series of thin film and powder samples of amorphous hydrogenated carbon (a-CH) have been deposited...
The application of the reverse Monte Carlo method to modeling a covalently bonded amorphous material...