Numerous experiments showed that on cold compression graphite transforms into a new superhard and transparent allotrope. Several structures with different topologies have been proposed for this phase. While experimental data are compatible with most of these models, the only way to solve this puzzle is to find which structure is kinetically easiest to form. Using state-of-the-art molecular-dynamics transition path sampling simulations, we investigate kinetic pathways of the pressure-induced transformation of graphite to various superhard candidate structures. Unlike hitherto applied methods for elucidating nature of superhard graphite, transition path sampling realistically models nucleation events necessary for physically meaningful transf...
Although the transformation from fullerene bulk into various functional carbon materials at high tem...
Carbon is an element with extremely versatile bonding properties and theoretical calculations have s...
The mechanism and kinetics of graphene formation from amorphous nickel carbides have been investigat...
Numerous experiments showed that on cold compression graphite transforms into a new superhard and tr...
Recently, sophisticated theoretical computational studies have proposed several new crystal structur...
Room temperature compression of graphitic materials leads to interesting superhard sp3 rich phases w...
A body-centered tetragonal carbon (bct-Carbon) allotrope has been predicted to be a transparent carb...
Carbon is the fourth most abundant element in the solar system, which can exist in diverse polymorph...
It is well established that graphite can be transformed into superhard carbons under cold compressio...
Carbon is the fourth most abundant element in the universe, commonly found in stars, comet...
Molecular dynamics simulations show that graphite will transform into a superhard phase under cold c...
Carbon is a surprising material in all respects. In this Review, we present results of metadynamics ...
Natural diamonds that have been partially replaced by graphite have been observed to occur in natura...
We present a series of molecular dynamics simulations of the shock compression of copper matrices co...
High-pressure structural transformations of carbon at terapascal pressures are studied using metadyn...
Although the transformation from fullerene bulk into various functional carbon materials at high tem...
Carbon is an element with extremely versatile bonding properties and theoretical calculations have s...
The mechanism and kinetics of graphene formation from amorphous nickel carbides have been investigat...
Numerous experiments showed that on cold compression graphite transforms into a new superhard and tr...
Recently, sophisticated theoretical computational studies have proposed several new crystal structur...
Room temperature compression of graphitic materials leads to interesting superhard sp3 rich phases w...
A body-centered tetragonal carbon (bct-Carbon) allotrope has been predicted to be a transparent carb...
Carbon is the fourth most abundant element in the solar system, which can exist in diverse polymorph...
It is well established that graphite can be transformed into superhard carbons under cold compressio...
Carbon is the fourth most abundant element in the universe, commonly found in stars, comet...
Molecular dynamics simulations show that graphite will transform into a superhard phase under cold c...
Carbon is a surprising material in all respects. In this Review, we present results of metadynamics ...
Natural diamonds that have been partially replaced by graphite have been observed to occur in natura...
We present a series of molecular dynamics simulations of the shock compression of copper matrices co...
High-pressure structural transformations of carbon at terapascal pressures are studied using metadyn...
Although the transformation from fullerene bulk into various functional carbon materials at high tem...
Carbon is an element with extremely versatile bonding properties and theoretical calculations have s...
The mechanism and kinetics of graphene formation from amorphous nickel carbides have been investigat...