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Name:O-Carborane
CAS:16872-09-6
EINECS: 240-897-8
MF: C2H12B10
MW: 144.23g/mol
MP: 285-287?C
Density:0.95
Appearance: white powder
Name:O-Carborane
Other name: 1,2-dicarba-closo-dodecaborane;
1,2-closo-C2B10H12;
ortho-carbaborane;
ortho-dicarbadodecaborane;
1,2-Dicarbadodecaborane;
closo-1,2-C2B10H12;
barene;
decarborinene;
dekene;
o-baren;
o-barene;
o-carbaboran
CAS: 16872-09-6
EINECS: 240-897-8
MF: C2H12B10
MW: 144.23g/mol
MP: 285-287?C
Density:0.95
Appearance: white powder
Purity: 97% min
Package: 25g, 100g, 500g, bulk package
Storage:store at 2¡ãC - 8¡ãC
The self-assembly of cucurbit uril (Q7) with o-Carborane CAS: 16872-09-6
produces a molecular ball bearing nanostructure.
o-Carborane CAS: 16872-09-6 could assisted Lewis acidity enhancement of triarylboranes.
Dimethoxyethane is a reliable solvent for the synthesis of monosubstituted derivatives of o-Carborane CAS: 16872-09-6. The reaction of o-Carborane CAS: 16872-09-6 with 1 equiv of BuLi and the appropriate electrophile in dimethoxyethane yields the desired monosubstituted derivative.
The effect of o-Carborane CAS: 16872-09-6 on the Optoelectronic and Device-Level Properties of Poly(fluorene)s,Carboranes have been previously noted to distinctively affect the luminescent properties of semiconducting polymers when incorporated into the conjugated backbone.Use carborane-based poly(fluorene) derivatives as active materials for polymer light-emitting diodes and transistors. Optoelectronic analysis unequivocally shows that carborane does not participate in the ¦Ð-conjugated network, yet their presence causes major red-shifting in device electroluminescence as well as in thin film photoluminescence. In field effect transistors, they also improve charge carrier mobility by an order of magnitude despite disrupting ¦Ð-conjugation. This use of carborane-containing conjugated polymers in active devices holds promise as new responsive materials in electronic polymer applications.
There are a variety of potential future directions for the use of O-Carborane. One potential application is in the field of drug delivery, as O-Carborane has been shown to be able to bind to drugs and increase their solubility and stability. Additionally, O-Carborane could be used in the development of new materials for use in nanotechnology. Additionally, it could be used to study the structure and function of proteins and to investigate the mechanism of action of various drugs. Finally, O-Carborane could be used to develop new catalysts for use in organic synthesis.
o-Carborane CAS£º16872-09-6 is a molecule that has been synthesized in the form of anhydrous sodium salt. It is a stable chemical, with photochemical properties and can be used as a molecular enhancer. o-Carborane has been shown to enhance the light emission of boron nitride and copper complexes. This molecule is also able to absorb ultraviolet radiation, which is why it can be used for chemical stability.
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