Interesting facts
Insights into 2,5-Dihydroxybenzenesulfonic Acid and N-Ethylethanamine
2,5-Dihydroxybenzenesulfonic acid is a fascinating compound known for its unique structure and properties. Here are some interesting facts about this compound:
- Functional versatility: This compound features both hydroxyl and sulfonic acid groups, making it a valuable intermediate in organic synthesis.
- Role in dyes: It is particularly important in the production of azo dyes, which are widely used in textiles and inks. The presence of multiple hydroxy groups aids in the dyeing process.
- pH regulation: Due to its acid nature, it is utilized in various formulations that require pH adjustment, notably in laboratory settings.
N-Ethylethanamine, on the other hand, adds a different perspective to our understanding of amines:
- Amine applications: N-Ethylethanamine is a primary amine that plays a critical role in the synthesis of pharmaceuticals and agrochemicals.
- Safeguards in production: As a building block in organic chemistry, it is essential for creating larger, more complex molecules.
- Toxicity considerations: While useful, it is important to handle this compound with care due to its potential toxicity, especially in concentrated forms.
Both of these compounds highlight the importance of functional groups in determining chemical behavior and application. In the words of a notable chemist, "The beauty of chemistry lies in the complexity of simplicity." Understanding such compounds not only enriches our knowledge but also broadens the horizons of industrial applications.
Synonyms
Etamsylate
ETHAMSYLATE
2624-44-4
Cyclonamine
Aglumin
Ciclonamina
Dicynene
Etamsilato
Eselin
Etamsylatum
Etamsilate
MD 141
E 141
Diethylamine dobesilate
Etamsylatum [INN-Latin]
Etamsilato [INN-Spanish]
EINECS 220-090-7
UNII-24YL531VOH
24YL531VOH
DTXSID4045559
Diethylammonium 2,5-dihydroxybenzenesulfonate
MD-141
2,5-Dihydroxybenzenesulfonic acid compound with diethylamine (1:1)
Diethylammonium cyclohexadien-4-ol-1-one-4-sulfonate
DTXCID2025559
E-141
Diidroxi-1,4-benzenesulfonato-3-di-etilammonium
Etamsylatum (INN-Latin)
Etamsilato (INN-Spanish)
ETAMSYLATE (MART.)
ETAMSYLATE [MART.]
ETAMSYLATE (EP MONOGRAPH)
ETAMSYLATE [EP MONOGRAPH]
B02BX01
220-090-7
Ethamsylate [USAN]
Etamsylate [INN]
diethylamine 2,5-dihydroxybenzenesulfonate
2,5-Dihydroxybenzenesulfonic acid N-ethylethanamine (1:1)
Altodor
2,5-Dihydroxybenzenesulfonic acid N-ethylethanamine
Ethamsylate (USAN)
Nordihydrocapsaicin-d3
NCGC00017041-01
Dicynone
CAS-2624-44-4
2,5-dihydroxybenzenesulfonic acid;N-ethylethanamine
Ciclonamina [Italian]
N-[(4-Hydroxy-3-methoxyphenyl)methyl]-7-methyl-octanamide-d3; 7-Methyl-N-vanillyl-octanamide-d3; Norhydrocapsaicin-d3
MFCD00867499
Diidroxi-1,4-benzenesulfonato-3-di-etilammonium [Italian]
Ethamsylate (Standard)
Etamsylate (JAN/INN)
ETAMSYLATE [JAN]
ETHAMSYLATE [MI]
ETAMSILATE [WHO-DD]
SCHEMBL34303
CHEMBL1514715
CHEBI:31563
HY-B1074R
HMS1571K11
HMS2098K11
HMS3652I22
HMS3715K11
BCP12254
HY-B1074
Tox21_110752
s4152
AKOS005267176
CCG-221015
CS-4630
DB13483
FD22852
KS-1169
NCGC00017041-02
NCGC00017041-04
AC-32031
Etamsylate 100 microg/mL in Acetonitrile
diethylamine 2,5-dihydroxy benzene sulfonate
E1145
NS00083251
SW197271-3
D01282
F20533
SR-01000838306
Q2000876
SR-01000838306-2
2,5-Dihydroxybenzene- sulfonic Acid Diethylamine Salt
2,5-Dihydroxybenzenesulfonic Acid N-Ethylethanamine Salt
Etamsylate;2,5-Dihydroxybenzene-sulfonic acid diethylamine salt;Diethylamine 2,5-dihydroxybenzenesulfonate;Aglumin
Solubility of 2,5-Dihydroxybenzenesulfonic Acid and N-Ethylethanamine
The solubility of compounds is a critical factor in determining their utility in various applications. For 2,5-dihydroxybenzenesulfonic acid (often referred to as a sulfonic acid derivative), we observe notable properties:
In contrast, N-ethylethanamine (also known as ethanolamine) presents a different solubility profile:
In summary, the solubility of both 2,5-dihydroxybenzenesulfonic acid and N-ethylethanamine is significantly influenced by their respective functional groups, polarity, and environmental factors such as pH. Understanding these properties is key for their applications in chemical synthesis and formulation.