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=== Carbon-based === In 1991 Hebard et al. discovered [[Fullerides|Fulleride]] superconductors,<ref name=Heba1991> {{cite journal |last1=Hebard |first1=A. F. |last2=Rosseinsky |first2=M. J. |last3=Haddon |first3=R. C. |last4=Murphy |first4=D. W. |last5=Glarum |first5=S. H. |last6=Palstra |first6=T. T. M. |last7=Ramirez |first7=A. P. |last8=Kortan |first8=A. R. |year=1991 |title=Superconductivity at 18 K in potassium-doped C<sub>60</sub> |journal=[[Nature (journal)|Nature]] |volume=350 |issue=6319 |pages=600β601 |doi=10.1038/350600a0 |bibcode=1991Natur.350..600H |s2cid=4350005 |url=https://pure.rug.nl/ws/files/14557724/1991NatureHebard.pdf |hdl=11370/3709b8a7-6fc1-4b32-8842-ce9b5355b5e4|hdl-access=free}} </ref> where alkali-metal atoms are intercalated into C<sub>60</sub> molecules. In 2008 Ganin et al. demonstrated superconductivity at temperatures of up to {{cvt|38|K|C}} for Cs<sub>3</sub>C<sub>60</sub>.<ref name=ganin08> {{cite journal |last1=Ganin |first1=A. Y. |last2=Takabayashi |first2=Y. |last3=Khimyak |first3=Y. Z. |last4=Margadonna |first4=S. |last5=Tamai |first5=A. |last6=Rosseinsky |first6=M. J. |last7=Prassides |first7=K. |year=2008 |title=Bulk superconductivity at 38 K in a molecular system |journal=[[Nature Materials]] |volume=7 |issue=5 |pages=367β71 |doi=10.1038/nmat2179 |pmid=18425134 |bibcode=2008NatMa...7..367G }} </ref> P-doped [[Graphane]] was proposed in 2010 to be capable of sustaining high-temperature superconductivity.<ref name=savini10>{{Cite journal |last1=Savini |first1=G. |last2=Ferrari |first2=A. C. |last3=Giustino |first3=F. |year=2010 |title=First-principles prediction of doped graphane as a high-temperature electron-phonon superconductor |journal=[[Physical Review Letters]] |volume=105 |issue=3 |pages=037002 |arxiv=1002.0653 |bibcode=2010PhRvL.105c7002S |doi=10.1103/PhysRevLett.105.037002 |pmid=20867792|s2cid=118466816 }}</ref> On 31st of December 2023 "Global Room-Temperature Superconductivity in Graphite" was published in the journal "Advanced Quantum Technologies" claiming to demonstrate superconductivity at room temperature and ambient pressure in [[Highly oriented pyrolytic graphite]] with dense arrays of nearly parallel line defects.<ref>{{cite journal | url=https://onlinelibrary.wiley.com/doi/10.1002/qute.202300230?ref=upstract.com | doi=10.1002/qute.202300230 | title=Global Room-Temperature Superconductivity in Graphite | date=2024 | last1=Kopelevich | first1=Yakov | last2=Torres | first2=JosΓ© | last3=Da Silva | first3=Robson | last4=Oliveira | first4=Felipe | last5=Diamantini | first5=Maria Cristina | last6=Trugenberger | first6=Carlo | last7=Vinokur | first7=Valerii | journal=Advanced Quantum Technologies | volume=7 | issue=2 | arxiv=2208.00854 }}</ref>
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