Interesting facts
Interesting Facts about 2-amino-4-(3-amino-4-hydroxy-phenyl)arsanylidenearsanyl-phenol; dihydrochloride
The compound 2-amino-4-(3-amino-4-hydroxy-phenyl)arsanylidenearsanyl-phenol; dihydrochloride is quite fascinating for multiple reasons:
- Dual Functionalities: This compound contains both amine and phenolic groups, allowing it to engage in various chemical reactions. This makes it a potential candidate for use in organic synthesis.
- Arsenic Chemistry: The presence of arsenic within its structure can be linked to both environmental concerns and medicinal applications. The *arsanylidene* group can exhibit unique reactivity patterns that differ from both traditional organic compounds and inorganic arsenic species.
- Biological Relevance: Compounds such as this one can be of interest in pharmacology, particularly when investigating bioactive compounds derived from arsenic. Research has shown that certain organoarsenic compounds can possess anticancer properties.
- Structure Activity Relationship (SAR): The molecular structure of this compound provides insights into the relationship between its intricate arrangement and its biological activities, enhancing our understanding of similar compounds in pharmaceuticals.
As a student or scientist, one can delve deeper into the characterization and mechanisms of this compound, exploring how its unique attributes contribute to its chemical behavior and potential applications in medicine and material science.
Quote: "The more we study complex compounds like 2-amino-4-(3-amino-4-hydroxy-phenyl)arsanylidenearsanyl-phenol, the more we uncover the intricate tapestry of interactions that define the very essence of chemistry!"
Synonyms
ARSPHENAMINE
Salvarsan
Six hundred six
Arsfenamin [Czech]
Arsfenamin
139-93-5
Arsabenzosol
Phenarsenamine
Arsaminol
Diarsenol
Ehrlich 606
Eparsenol
Kharsivan
Novarsol
Salavarsan
Sanluol
Tanvarsan
Arsphenamine [USP]
Arsenobenzol dihydrochloride
UNII-8BAJ8WP85I
Arsenphenolamine hydrochloride
NSC 3097
Phenol, 4,4'-arsenobis(2-amino-
EINECS 205-386-6
8BAJ8WP85I
Arsphenamine (dihydrochloride)
X 109
CHEBI:9016
6,6'-Dihydroxy-3,3'-diarsene-1,2-diyldianilinium dichloride
Arsenobenzene, 3,3'-diamino-4,4'-dihydroxy-, dihydrochloride
Phenol, 4,4'-arsenobis(2-amino-, dihydrochloride
Arsphenamine (USP)
Phenol, 4,4'-(1,2-diarsenediyl)bis(2-amino-, dihydrochloride
3,3'-Diamino-4,4'-dihydroxyarsenobenzene dihydrochloride
ARSPHENAMINE (MART.)
ARSPHENAMINE [MART.]
4,4'-(1,2-Diarsenediyl)bis(2-aminophenol) dihydrochloride
2-amino-4-(3-amino-4-hydroxyphenyl)arsanylidenearsanylphenol;dihydrochloride
NSC-3097
Phenol, (4,4'-arsenobis(2-amino-,) dihydrochloride
Phenol, {4,4'-arsenobis[2-amino-,} dihydrochloride
4,4'-arsenobis(2-aminophenol) dihydrochloride
2-amino-4-(2-(3-amino-4-hydroxyphenyl)diarsen-1-yl)phenol dihydrochloride
2-amino-4-[2-(3-amino-4-hydroxyphenyl)diarsen-1-yl]phenol dihydrochloride
3,3'-(diarsene-1,2-diyl)bis(6-hydroxybenzenaminium) dichloride
Phenol, 4,4'-(1,2-diarsenediyl)bis(2-amino)-, dihydrochloride
ARSPHENAMINE [MI]
SCHEMBL35374
ARSPHENAMINE [WHO-DD]
VLAXZGHHBIJLAD-UHFFFAOYSA-N
4,4-Arsenobis(2-aminophenol) dihydrochloride
Q410762
3,3'-Diamino-4, 4'-dihydroxyarsenobenzene dihydrochloride
2-amino-4-(3-amino-4-hydroxy-phenyl)arsanylidenearsanyl-phenol
Phenol, 4,4'-(1,2-diarsenediyl)bis(2-amino-, dihydrochloride (9CI)
Phenol, 4,4'-(1,2-diarsenediyl)bis[2-amino-, hydrochloride (1:2)
2-amino-4-(3-amino-4-hydroxy-phenyl)arsanylidenearsanyl-phenol;dihydrochloride
Solubility of 2-amino-4-(3-amino-4-hydroxy-phenyl)arsanylidenearsanyl-phenol;dihydrochloride
The solubility of 2-amino-4-(3-amino-4-hydroxy-phenyl)arsanylidenearsanyl-phenol;dihydrochloride is influenced by a variety of factors, particularly its ionic and polar characteristics. Understanding its solubility can be broken down into several key points:
The compound's intricate structure containing both arsenic and phenolic groups means its solubility can behave unpredictably under varying conditions. In many cases, empirical testing is essential to ascertain precise solubility values, exemplifying the statement that "solubility is not just a property, but a keen interaction of chemistry." Understanding these characteristics is crucial for applications in pharmaceuticals and materials science.