The electronic structure of samples produced by nanodiamond annealing has been examined using ultra-soft X-ray emission and X-ray absorption spectroscopy. Analysis of spectra of diamond/graphite composites showed that carbon atoms constituting the nanoparticles are at least in three states: diamond-like state, graphitic-like state and interface carbon, characterized by high electron localization. Comparison between theoretical spectra of the models and experimental spectra suggested the latter states correspond to three-coordinated carbon atoms from diamond surface
Carbon exists in many forms, including zero-dimensional fullerenes, one-dimensional nanotubes,two-di...
The C K edge of Orgueil nanodiamonds (C-delta diamonds) was acquired by electron energy-loss spectro...
We present in this work a theoretical framework based on the tight-binding method, which is able to ...
Annealing of nanodiamond at moderate temperature makes it possible to produce structures being inter...
According to theoretical predictions, nano-graphite has unique electronic features associated with t...
X-ray emission spectroscopy has been applied to examine the electronic structure of onion-like carbo...
Electronic structure of graphite nanosheets and (CNCs)@(FePt) carbon nanocapsules was investigated u...
Graphite nanoparticles were prepared by the heat treatment of diamond nanoparticles in the range 900...
Structures and electronic properties are presented for three types of sp 2 /sp 3 mixed nano-carbon s...
Nanometer sized diamond has been found in meteorites, proto-planetary nebulae and interstellar dust...
The electronic properties of disordered carbon-based materials can be discussed in terms of the clus...
Interfaces of diamond with amorphous carbon (a-C) are investigated using tight-binding molecular dyn...
The electronic properties of disordered carbon based materials can be discussed in terms of the clus...
Recently, the scientific community experienced two revolutionary events. The first was the synthesis...
Combined high-resolution transmission electron microscopy, selected area electron diffraction and pa...
Carbon exists in many forms, including zero-dimensional fullerenes, one-dimensional nanotubes,two-di...
The C K edge of Orgueil nanodiamonds (C-delta diamonds) was acquired by electron energy-loss spectro...
We present in this work a theoretical framework based on the tight-binding method, which is able to ...
Annealing of nanodiamond at moderate temperature makes it possible to produce structures being inter...
According to theoretical predictions, nano-graphite has unique electronic features associated with t...
X-ray emission spectroscopy has been applied to examine the electronic structure of onion-like carbo...
Electronic structure of graphite nanosheets and (CNCs)@(FePt) carbon nanocapsules was investigated u...
Graphite nanoparticles were prepared by the heat treatment of diamond nanoparticles in the range 900...
Structures and electronic properties are presented for three types of sp 2 /sp 3 mixed nano-carbon s...
Nanometer sized diamond has been found in meteorites, proto-planetary nebulae and interstellar dust...
The electronic properties of disordered carbon-based materials can be discussed in terms of the clus...
Interfaces of diamond with amorphous carbon (a-C) are investigated using tight-binding molecular dyn...
The electronic properties of disordered carbon based materials can be discussed in terms of the clus...
Recently, the scientific community experienced two revolutionary events. The first was the synthesis...
Combined high-resolution transmission electron microscopy, selected area electron diffraction and pa...
Carbon exists in many forms, including zero-dimensional fullerenes, one-dimensional nanotubes,two-di...
The C K edge of Orgueil nanodiamonds (C-delta diamonds) was acquired by electron energy-loss spectro...
We present in this work a theoretical framework based on the tight-binding method, which is able to ...