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sp 2 - sp 3 Hybridized Carbons from Curved Carbon Precursors of Fullerenes and Single-Walled Carbon Nanotubes

作者:Di Jin, Xinyang Li, Shicong Ding, Guochun Yang · 发表于:ACS Materials Letters · 年份:2025 · DOI:10.1021/acsmaterialslett.4c02264 · 被引用次数:7 · 研究领域:Fullerene Chemistry and Applications、Carbon Nanotubes in Composites、Graphene research and applications

sp 2 - sp 3 hybridized carbons have garnered attention for their diverse configurations and tunable properties. However, the atomic-level transformation mechanism, particularly the precursor configurations and the six-membered (6-M) ring ratio, remains not fully understood. This study investigated the phase transformations of fullerenes (C 20, C 60, C 70 ) and single-walled carbon nanotubes (SWCNTs) into sp 2 - sp 3 hybridized carbon using molecular dynamics simulations. Fullerenes transform into amorphous carbon, while SWCNTs evolve into graphite-diamond hybrids with a semicoherent interface. Temperature controls product type, and pressure modulates sp 3 / sp 2 ratio. A higher 6-M rings ratio in fullerene precursors increases the structural order manifested by graphite and diamond-like characteristics. A “pinning effect” caused by edge dislocations in SWCNTs facilitates the semicoherent interface formation by increasing the interlayer spacing and altering the stacking order of graphite. The proposed sp 2 - sp 3 hybridized carbons demonstrate tunable mechanical properties. This study advances our understanding of the atomic-level mechanism underlying sp 2 - sp 3 hybridized carbon transformations and their potential applications.