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the claim
Diamond and graphite have different crystal structures despite both consisting of carbon
the verdict
COMMON KNOWLEDGE
no citation needed for this one
refutedsupported
the weight of evidence
no sources on either side

The statement that diamond and graphite have different crystal structures despite both consisting of carbon is a matter of basic scientific definition and everyday observation in materials science, requiring no citation.

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The analysis

The claim is a foundational scientific fact regarding carbon allotropes (diamond and graphite) and polymorphism. It is common knowledge in chemistry and physics, so no papers need to be attached.

Everything we examined (12)
  1. Carbon allotropes: beyond graphite and diamondpeer-reviewedno side takennot shown: read and judged not to bear on this claim
  2. Polymorphism of pyrene on compression to 35 GPa in a diamond anvil cell.peer-reviewedno side takennot shown: read and judged not to bear on this claim
  3. Frustration of H-Bonding and Frustrated Packings in a Hexamorphic Crystal System with Reversible Crystal-Crystal Transitions.peer-reviewedno side takennot shown: read and judged not to bear on this claim
  4. The semi-empirical tight-binding model for carbon allotropes “between diamond and graphite”peer-reviewedno side takennot shown: read and judged not to bear on this claim
  5. Lennard-Jones interatomic potentials for the allotropes of carbon.peer-reviewedno side takennot shown: read and judged not to bear on this claim
  6. SUPERCRITICAL FLUID SYNTHESIS AND STRUCTURE OF A NEW CUBIC С96 PHASE AS CARBON KFI ZEOLITE WITH sp3/sp2 HYBRIDIZATIONpeer-reviewedno side takennot shown: read and judged not to bear on this claim
  7. Low-energy tetrahedral networks for carbon and silicon from (2+1)-regular bipartite-like graphs.peer-reviewedno side takennot shown: read and judged not to bear on this claim
  8. Experimental demonstration and transformation mechanism of quenchable two-dimensional diamond.peer-reviewedno side takennot shown: read and judged not to bear on this claim
  9. Polymorphism Crystal Structure Prediction with Adaptive Space Group Diversity Control.peer-reviewedno side takennot shown: read and judged not to bear on this claim
  10. Polymorphism and flexibility of six-porphyrin nanorings in the solid state.peer-reviewedno side takennot shown: read and judged not to bear on this claim
  11. Unraveling Polymorphic Control in the Solid-State [2 + 2] Cycloaddition of Vitamin K<sub>3</sub>: Insights from Single-Crystal Irradiation.peer-reviewedno side takennot shown: read and judged not to bear on this claim
  12. Silicon allotropes by large-volume high-pressure techniques: crystal growth mechanisms, phase diagrams and hexagonal nanostructured Si-6H by in situ X-ray diffraction and computational methods.peer-reviewedno side takennot shown: read and judged not to bear on this claim
The paper trail · every fact has a biography
first checked05 Aug 2026
judged → COMMON KNOWLEDGE · 9505 Aug 2026
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