In this work we propose a few novel energetically and dynamically stable all- carbon-based architectures with low density obtained by augmenting planar three-coordinated uniform tessellations. Using geometrical packing arguments, we show that such arrangements satisfy the locally–jammed packing condition and represent some of the least dense structures of all- bonded carbon allotropes that could ever be synthesised. We fully characterize from first principles these new architectures, by assessing i) the electronic properties, such as the band structure and the density of states; ii) the dynamical characteristics, such as the phonon dispersion; and iii) the mechanical properties, such as the elastic constants and the stress–strain relationsh...
I 4 ¯ –carbon was first proposed by Zhang et al., this paper will report regarding this phase o...
Carbon has shown itself to be the most flexible of atoms, crystallizing in divergent phases such as ...
The energy landscape of carbon is exceedingly complex, hosting diverse and important metastable phas...
Four sp2–sp3 hybrid carbon allotropes are proposed on the basis of first principles calculations. Th...
The discovery of new carbon allotropes with different building blocks and crystal symmetries has lon...
A new family of carbon crystals in which graphitic strips are interconnected to form tetrahedral bon...
Carbon materials with full sp2-hybridized bonding, e.g. zero-dimensional (0D) fullerenes, 1D carbon ...
A conspicuous amount of theoretical study has been published on the properties of carbon allotropes ...
International audienceNovel ultra-hard carbon allotropes are proposed based on crystal chemistry rat...
By means of ab initio computations and the global minimum structure search method, we have investiga...
The element carbon possesses various stable and metastable allotropes; some of them have been applie...
The structural and the electronic properties of a hypothetical three-dimensional (3D) all-sp(2) carb...
A number of graphene allotropes constructed by sp3, sp2, and sp hybrid orbitals have recently been p...
Using a recently developed approach to constructing covalent network structures from linear carbyne,...
We review the principles of formation, physical properties, and current or envisaged applications fo...
I 4 ¯ –carbon was first proposed by Zhang et al., this paper will report regarding this phase o...
Carbon has shown itself to be the most flexible of atoms, crystallizing in divergent phases such as ...
The energy landscape of carbon is exceedingly complex, hosting diverse and important metastable phas...
Four sp2–sp3 hybrid carbon allotropes are proposed on the basis of first principles calculations. Th...
The discovery of new carbon allotropes with different building blocks and crystal symmetries has lon...
A new family of carbon crystals in which graphitic strips are interconnected to form tetrahedral bon...
Carbon materials with full sp2-hybridized bonding, e.g. zero-dimensional (0D) fullerenes, 1D carbon ...
A conspicuous amount of theoretical study has been published on the properties of carbon allotropes ...
International audienceNovel ultra-hard carbon allotropes are proposed based on crystal chemistry rat...
By means of ab initio computations and the global minimum structure search method, we have investiga...
The element carbon possesses various stable and metastable allotropes; some of them have been applie...
The structural and the electronic properties of a hypothetical three-dimensional (3D) all-sp(2) carb...
A number of graphene allotropes constructed by sp3, sp2, and sp hybrid orbitals have recently been p...
Using a recently developed approach to constructing covalent network structures from linear carbyne,...
We review the principles of formation, physical properties, and current or envisaged applications fo...
I 4 ¯ –carbon was first proposed by Zhang et al., this paper will report regarding this phase o...
Carbon has shown itself to be the most flexible of atoms, crystallizing in divergent phases such as ...
The energy landscape of carbon is exceedingly complex, hosting diverse and important metastable phas...