Fast Blue B Salt structure
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Common Name | Fast Blue B Salt | ||
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CAS Number | 14263-94-6 | Molecular Weight | 475.492 | |
Density | N/A | Boiling Point | N/A | |
Molecular Formula | C14H12Cl4N4O2Zn | Melting Point | >300ºC(lit.) | |
MSDS | USA | Flash Point | N/A | |
Symbol |
GHS08 |
Signal Word | Danger |
Use of Fast Blue B SaltFast Blue B Salt is a coloring agent that dissolves fats and phenolic compounds extracted from rye, as well as diazonium. Fast Blue B Salt can be used for the semiquantification of alkylresorcinols in rye and produces a color precipitate in the presence of acetone[1]. |
Name | fast blue salt B |
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Synonym | More Synonyms |
Description | Fast Blue B Salt is a coloring agent that dissolves fats and phenolic compounds extracted from rye, as well as diazonium. Fast Blue B Salt can be used for the semiquantification of alkylresorcinols in rye and produces a color precipitate in the presence of acetone[1]. |
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Related Catalog | |
References |
Melting Point | >300ºC(lit.) |
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Molecular Formula | C14H12Cl4N4O2Zn |
Molecular Weight | 475.492 |
Exact Mass | 471.900574 |
PSA | 74.76000 |
Storage condition | 2-8°C |
Stability | Stable. Incompatible with strong oxidizing agents, alkaline hydroxides. May discolour on exposure to light. |
Water Solubility | H2O: soluble1mg/mL |
Symbol |
GHS08 |
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Signal Word | Danger |
Hazard Statements | H350 |
Precautionary Statements | P201-P308 + P313 |
Personal Protective Equipment | Eyeshields;full-face particle respirator type N100 (US);Gloves;respirator cartridge type N100 (US);type P1 (EN143) respirator filter;type P3 (EN 143) respirator cartridges |
Hazard Codes | T |
Risk Phrases | R45 |
Safety Phrases | 53-45 |
RIDADR | NONH for all modes of transport |
WGK Germany | 3 |
An intermolecular electrostatic interaction controls the prepore-to-pore transition in a cholesterol-dependent cytolysin.
Proc. Natl. Acad. Sci. U. S. A. 112(7) , 2204-9, (2015) β-Barrel pore-forming toxins (βPFTs) form an obligatory oligomeric prepore intermediate before the formation of the β-barrel pore. The molecular components that control the critical prepore-to-pore tr... |
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Vimentin filament organization and stress sensing depend on its single cysteine residue and zinc binding.
Nat. Commun. 6 , 7287, (2015) The vimentin filament network plays a key role in cell architecture and signalling, as well as in epithelial-mesenchymal transition. Vimentin C328 is targeted by various oxidative modifications, but i... |
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NADPH-dependent lipid peroxidation capacity in unfixed tissue sections: characterization of the pro-oxidizing conditions and optimization of the histochemical detection.
Histochem. J. 26(3) , 189-96, (1994) Factors which influence the iron-stimulated lipid peroxidation in rat liver have been studied by incubating unfixed cryostat sections with a pro-oxidant system and using an optimized histochemical det... |
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EINECS 283-430-3 |
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