
CAS 1207461-57-1
:C60 derivative,indene-C60 bisadduct
Description:
Indene-C60 bisadduct, with the CAS number 1207461-57-1, is a derivative of fullerene C60, characterized by the addition of indene units to the fullerene structure. This compound exhibits unique properties due to the combination of the spherical fullerene cage and the planar indene moieties. The structure typically features two indene molecules covalently bonded to the C60 framework, resulting in enhanced stability and solubility compared to unmodified fullerenes. Indene-C60 bisadduct is known for its potential applications in organic photovoltaics, organic light-emitting diodes (OLEDs), and as a building block in organic synthesis. Its electronic properties are influenced by the conjugated indene units, which can facilitate charge transfer and improve the material's conductivity. Additionally, the compound may exhibit interesting photophysical properties, making it a subject of research in materials science and nanotechnology. Overall, the indene-C60 bisadduct represents a significant advancement in the functionalization of fullerenes for various technological applications.
Formula:C78H16
Synonyms:- Icba
- 1',1'',4',4''-Tetrahydro-di[1,4]methanonaphthaleno[1,2,2',3',56,60,2'',3''][5,6]fullerene-C-60
- Indene-C-60 bisadduct
- 1',1'',4',4''-Tetrahydrodi(1,4)methanonaphthaleno(1,2:2',3'
- 56,60:2'',3'')(5,6)fullerene-C60-ih
- Indene-C70 bisadduct
- Lt-S9030
- C60 derivative, indene-C60 bisadduct, mixture of isomers
- 1',1'',4',4''-Tetrahydro-di[1,4]methanonaphthaleno[1,2,2',3',56,60,2'',3''][5,6]fullerene-C-60
- Indene-C-60 bisadduct
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Found 6 products.
ICBA
CAS:Formula:C78H16Purity:>98.5%(HPLC)Color and Shape:Amber to Black powder to crystalMolecular weight:952.991′,1′′,4′,4′′-Tetrahydrodi[1,4]methanonaphtho[2′,3′:1,2;2′′,3′′:56,60][5,6]fullerene-C60-Ih
CAS:<p>1′,1′′,4′,4′′-Tetrahydrodi[1,4]methanonaphtho[2′,3′:1,2;2′′,3′′:56,60][5,6]fullerene-C60-Ih</p>Purity:98%Molecular weight:722.83g/molICBA
CAS:<p>ICBA is a macrocyclic compound that contains two ubiquitin molecules. ICBA can be used as a photoactive material in solar cells due to its ability to absorb light at a wavelength of ~700 nm and generate strong photocurrents. It can also be used as an optical sensor for the detection of otoacoustic emissions, which are sound waves emitted by the inner ear when stimulated by sound. This compound has been shown to inhibit protein degradation through the ubiquitin-proteasome system and increase morphology in cells treated with proteasome inhibitors. ICBA also has a low energy barrier for electron transport, which makes it an ideal candidate for use in low-energy electronic devices such as electrochemical impedance spectroscopy sensors. The phase transition temperature of this compound is around -20°C, which makes it suitable for applications in cryogenics and refrigeration because it does not melt at room temperature.</p>Formula:C78H16Purity:Min. 98.5 Area-%Color and Shape:Brown Black PowderMolecular weight:952.96 g/mol1′,1′′,4′,4′′-Tetrahydrodi[1,4]methanonaphtho[2′,3′:1,2;2′′,3′′:56,60][5,6]fullerene-C60-Ih
CAS:Purity:98%Molecular weight:722.203ICBA
CAS:Controlled Product<p>Applications ICBA is a fullerene based material useful in polymer and organic solar cells.<br>References Shen, Ping, et al.: J. of Mat. Chem. C:, 6(35), 9494-9500 (2018);Xie, Chen, et al.: ACS App. Mat. & Interfaces, 10(27), 23225-23234 (2018)<br></p>Formula:C78H16Color and Shape:NeatMolecular weight:952.962






