FULLERENE CAS#: 131159-39-2; ChemWhat Code: 65228

IdentificationPhysical DataSpectra
Route of Synthesis (ROS)Safety and HazardsOther Data

Identification

Product NameFULLERENE
IUPAC Name(C60-Ih)[5,6]fullerene
Molecular StructureStructure of Fullerene C60 CAS 131159-39-2
CAS Registry Number 131159-39-2
SynonymsBuckminsterfullerene
99685-96-8
Fullerene
Fullerene-C60
Fullerene C60
C60 Fullerene
Buckyball
Footballene
Fullerite
131159-39-2
Fullerene 60
[5,6]fullerene-C60-Ih
[60]fullerene
C60 Compound
(C60-Ih)[5,6]fullerene
soccerballene
C60
Buckminsterfullerene C60
Fullerene powder
buckminsterfulereno
Buckminsterfulleren
(5,6)Fullerene-C60-Ih
UNII-NP9U26B839
CCRIS 9349
Fullerene C60 (pure)
ICOSAHEDRAL C60
FOLLENE-60
FOOTBALLENE (C60)
FULLERENE C60 CLUSTER
DTXSID4031772
(60)fullerene
NP9U26B839
(60-Ih)fullerene
[60-Ih]fullerene
Carbon C60
MFCD00151408
MFCD00282904
(C_{60}-I_{h})[5,6]fullerene
(C60-Ih)(5,6)fullerene
Fullerenes
Fullerene C60(Purity: 99.95wt%)
fullerenes C76
fullerenes C78
fullerenes C84
Carboxyl Fullerene
Fullerenes C60
60C
Fullerene – C60
Polyhydroxylated fullerene
FULLERENES [INCI]
Fullerene C60, (pure)
Fullerene powder, sublimed
Graphitized Carbon Nanofibers
Fullerene-C60 (Buckeyballs)
DTXCID2011772
BUCKMINSTERFULLERENE [MI]
CHEBI:33128
Fullerene Nanotubes, Multi-Walled
Fullerene Nanotubes, Single-Walled
Giant Fullerene(Purity: 95.0wt%)
Fullerene C60(Purity: 99.5wt%)
Fullerene C60(Purity: 99.9wt%)
Fullerene C70(Purity: 98.0wt%)
Fullerene C70(Purity: 99.0wt%)
Fullerene C70(Purity: 99.5wt%)
fullerenes C76(Purity: 95.0wt%)
fullerenes C76(Purity: 98.0wt%)
fullerenes C78(Purity: 95.0wt%)
fullerenes C78(Purity: 98.0wt%)
fullerenes C84(Purity: 95.0wt%)
fullerenes C84(Purity: 98.0wt%)
fullerenes C84(Purity: 99.0wt%)
Fullerenes C60(Purity: 99.5wt%)
AKOS040758507
Fullerene powder, 99.9+% C{60}
Fullerenes C60(Purity: 99.9 wt%)
LS-15519
B1641
B1642
B1660
F1232
NS00074083
Fullerene powder, sublimed, 99.9+% C{60}
D81921
Fullerene – C60, 99.9+% (Buckminsterfullerene)
Fullerene Extract, C60 (contains ca. 20% C70)
Fullerene – C60, min. 99% (Buckminsterfullerene)
Q1075376
W-204191
Fullerene powder, mixed, typically 98% C{60}, 2% C{70}
Fullerene C60 (purified by sublimation) [for organic electronics]
Fullerene carbon soot (contains 5-8wt% C60/C70 and higher fullerenes)
Fullerene powder, mixed refined, typically 70% C{60}, 28% C{70}, higher 2%
Fullerene powder, mixed refined, typically 77% C{60}, 22% C{70}, <2% higher
Molecular FormulaC60 
Molecular Weight720.6
InChIInChI=1S/C60/c1-2-5-6-3(1)8-12-10-4(1)9-11-7(2)17-21-13(5)23-24-14(6)22-18(8)28-20(12)30-26-16(10)15(9)25-29-19(11)27(17)37-41-31(21)33(23)43-44-34(24)32(22)42-38(28)48-40(30)46-36(26)35(25)45-39(29)47(37)55-49(41)51(43)57-52(44)50(42)56(48)59-54(46)53(45)58(55)60(57)59
InChI KeyXMWRBQBLMFGWIX-UHFFFAOYSA-N
Isomeric SMILESC12=C3C4=C5C6=C1C7=C8C9=C1C%10=C%11C(=C29)C3=C2C3=C4C4=C5C5=C9C6=C7C6=C7C8=C1C1=C8C%10=C%10C%11=C2C2=C3C3=C4C4=C5C5=C%11C%12=C(C6=C95)C7=C1C1=C%12C5=C%11C4=C3C3=C5C(=C81)C%10=C23

Physical Data

Appearanceblack powder

Spectra

No data available


Route of Synthesis (ROS)

No data available


Safety and Hazards

Pictogram(s)exclamation-mark
SignalWarning
GHS Hazard StatementsH315 (22.81%): Causes skin irritation [Warning Skin corrosion/irritation]
H319 (100%): Causes serious eye irritation [Warning Serious eye damage/eye irritation]
H335 (100%): May cause respiratory irritation [Warning Specific target organ toxicity, single exposure; Respiratory tract irritation]
Precautionary Statement CodesP261, P264, P264+P265, P271, P280, P302+P352, P304+P340, P305+P351+P338, P319, P321, P332+P317, P337+P317, P362+P364, P403+P233, P405, and P501
(The corresponding statement to each P-code can be found at the GHS Classification page.)

Other Data

HS Code
StorageUnder the room temperature and keep in dry
Shelf Life2 years
Market Price
Use Pattern
The fullerene C60 molecule itself is non-conductive and an insulator, but when alkali metals are embedded in the gaps between C60 molecules, the resulting series of compounds with alkali metals, such as K3C60, transform into superconductors with high critical temperatures. In comparison to oxide superconductors, C60 superconductors exhibit perfect three-dimensional superconductivity, high current density, stability, and are easy to form into wires, making them valuable for various applications. Additionally, the three-dimensional non-localized electron conjugation structure in C60 imparts excellent optical and nonlinear optical properties, making it suitable for optical limiters.

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