All forms of carbon.
Diamonds, coke, coal, graphite, fullerenes
difference between diamond graphite and fullrene
All forms of carbon.
No, diamonds and graphite are not polymorphs of silicon. Diamonds are a polymorph of carbon, while graphite is also a polymorph of carbon. Silicon does not form diamonds or graphite as polymorphs.
No. They are actually a type of graphite. Diamonds are made of carbon.
Fullerenes are prepared by vaporizing graphite rod in helium atmosphere. A mixture of fullerenes like C60, C70 etc are formed which are separated by solvent extraction method.C60 is obtained by column chromatography using alumina as the adsorbent and hexane as the solvent.
Diamonds and graphite are both allotropes of carbon.
Graphite, fullerenes, and diamond are all allotropes of carbon, differing in their atomic structure and properties. Graphite consists of layers of carbon atoms arranged in a hexagonal lattice, allowing for electrical conductivity and lubricating properties. Fullerenes, such as buckminsterfullerene, are spherical or tubular structures made of carbon atoms, often exhibiting unique chemical properties. In contrast, diamond has a tetrahedral lattice structure that gives it exceptional hardness and optical clarity, making it distinct from both graphite and fullerenes.
Carbon has many forms. Soot, graphite, fullerenes, Buckeyballs, nanotubes, for some examples.
It takes millions to billions of years for diamonds to naturally transform into graphite.
Carbon can form diamond, graphite, amorphous carbon, nanotubes, fullerenes, etc.
Graphite and diamonds