Structure of Fullerene C60 CAS 131159 39 2 - Fullerene C60 CAS 131159-39-2

Iden­ti­fi­ca­tion

CAS Number

131159-39-2

Name

Fullerene C60

Syn­onyms

(5,6)Fullerene-C60-Ih
(C60-Ih)[5,6]Fullerene
131159-39-2 [RN]
99685-96-8 [RN]
Buck­min­ster­fullereen [Dutch]
Buck­min­ster­fulleren [Dan­ish]
Buck­min­ster­fulleren [Pol­ish]
Buck­min­ster­fulleren [Swedish]
Buck­min­ster­fullerene [Wiki]
Buck­min­ster­fullerene [Indone­sian]
Buck­min­ster­fullerene [Ital­ian]
Buck­min­ster­fullerène [French]
Buck­min­ster­fullerene, C60
Buck­min­ster­fulleren­er [Nor­we­gian]
Buck­min­ster­fullereno [Span­ish]
Buk­min­ster­fuleren [Croa­t­ian]
C60 fullerene
fullerene 60
Fullerene C60
fullerene-c60
Mil­líní Bucky [Irish]
soc­cer­bal­lene
Бакминстерфулерен [Mace­don­ian]
Бъкминстърфулерен [Bul­gar­i­an]
バックミンスターフラーレン [Japan­ese]
فولرن باکمینستر [Per­sian]
버크민스터풀러렌 [Kore­an]
(C60-Ih)[5,6]fullerene
[5,6]fullerene-C60-Ih
[60]fullerene
[60-Ih]fullerene
308068-56-6 [RN]
5901022 [Beil­stein]
60C
buck­min­ster­fulereno
Buck­min­ster­fulleren
buck­min­ster­fullerene c60
Buck­y­ball [Wiki]
foot­bal­lene
Fullerene
Fullerene – C60
Fullerene-C60
MFCD00151408 [MDL number]

SMILES

c12c3c4c5c1c6c7c8c2c9c1c3c2c3c4c4c%10c5c5c6c6c7c7c%11c8c9c8c9c1c2c1c2c3c4c3c4c%10c5c5c6c6c7c7c%11c8c8c9c1c1c2c3c2c4c5c6c3c7c8c1c23

Std­InChI

InChI=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

Std­InChIKey

XMWR­BQBLM­FG­WIX-UHF­F­­FAOYSA-N

Mol­e­c­u­lar Formula

C60

Mol­e­c­u­lar Weight

720.642

Prop­er­ties

Appear­ance

black pow­der

Safe­ty Data

Sym­bol

Sig­nal Word

Warn­ing

RIDADR 

WGK Germany

3

MSDS Download

Spec­i­fi­ca­tions and Oth­er Infor­ma­tion of Our 

Iden­ti­fi­ca­tion Methods

HNMR, HPLC

Shelf Life

2 years

Stor­age

Under the room tem­per­a­ture and keep in dry

Known Appli­ca­tion

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.

Gen­er­al View of Documents

This prod­uct is devel­oped by our R&D com­pa­ny Apnoke Sci­en­tif­ic Lim­it­ed (http://​www​.apnoke​.com/).

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