Interesting facts
Interesting Facts about N-[2-(cyclohexoxy)-4-nitro-phenyl]methanesulfonamide
N-[2-(cyclohexoxy)-4-nitro-phenyl]methanesulfonamide, often referred to in shorthand as the sulfonamide compound, is an intriguing chemical with diverse applications in medicinal chemistry. Here are some fascinating insights about this compound:
- Pharmaceutical Relevance: Sulfonamides are known for their antibacterial properties. This particular compound's structure can contribute to antimicrobial activity, potentially serving as a useful candidate in infection treatments.
- Unique Functional Groups: The presence of the cyclohexoxy group strengthens molecular interactions. The nitro group (–NO2) can also enhance the compound's reactivity, making it a target in synthetic organic chemistry.
- Versatile Synthesis: This compound can be synthesized through various methods, making it a valuable compound in organic synthesis courses for students seeking hands-on experience with relevant reactions.
- Therapeutic Potential: Studies have indicated that modifying the aromatic rings and incorporating different functional groups can lead to compounds with varied therapeutic potentials, widening the scope of medicinal applications.
- Environmental Impact: As with many pharmaceutical compounds, understanding the environmental impact of N-[2-(cyclohexoxy)-4-nitro-phenyl]methanesulfonamide is critical, particularly in the context of drug metabolization and potential contamination in water sources.
As you delve into the molecular aspects of this compound, consider the fascinating balance between its chemical structure and biological activity, emphasizing the symbiotic relationship between chemistry and biology that continues to evolve in research and application.
Synonyms
ns-398
123653-11-2
NS 398
N-(2-Cyclohexyloxy-4-nitrophenyl)methanesulfonamide
NS398
N-[2-(Cyclohexyloxy)-4-nitrophenyl]methanesulfonamide
Taisho NS 398
9SP55KM2KS
CCRIS 8523
CHEBI:73458
N-(2-(cyclohexyloxy)-4-nitrophenyl)methanesulfonamide
MFCD00882995
CHEMBL7162
n-[2-(cyclohexyloxy)-4-nitrophenyl]-methanesulfonamide
Methanesulfonamide, N-(2-(cyclohexyloxy)-4-nitrophenyl)-
DTXSID8041084
NS-398 (NS398)
SR-01000597479
Methanesulfonamide, N-[2-(cyclohexyloxy)-4-nitrophenyl]-
Taisho NS 398; N-[2-(Cyclohexyloxy)-4-nitrophenyl]methanesulfonamide
Taisho NS-398
Tocris-0942
UNII-9SP55KM2KS
BSPBio_001264
KBioGR_000604
KBioSS_000604
SCHEMBL214213
n-(2-cyclohexyloxy-4-nitrophenyl)methane sulfonamide
GTPL8976
N-(2-Cyclohexyloxy-4-nitro-phenyl)-methanesulfonamide
DTXCID6021084
KBio2_000604
KBio2_003172
KBio2_005740
KBio3_001067
KBio3_001068
Bio2_000472
Bio2_000952
HMS1362P05
HMS1792P05
HMS1990P05
HMS3403P05
HMS3649O13
HMS3886L10
BCP18285
EX-A2402
BDBM50029593
s8433
AKOS015900136
AKOS015965848
CCG-267631
CS-5335
DB14060
NS-398?
IDI1_002227
NCGC00024892-01
NCGC00024892-02
NCGC00024892-03
AC-32669
BN163753
HY-13913
NS-398, >=98% (HPLC), solid
N1152
NS00069203
C71930
Q6955228
SR-01000597479-1
SR-01000597479-2
BRD-K53364951-001-02-6
NS-398 - CAS 123653-11-2
Methanesulfonamide,N-[2-(cyclohexyloxy)-4-nitrophenyl]-
N-[2-(cyclohexyloxy)-4-nitrophenyl]methane sulfonamide
CYCLOHEXYLOXY-4-NITROPHENYL)METHANESULFONAMIDE, N-(2-
N- [2- (Cyclohexyloxy) - 4- nitrophenyl] methanesulfonamide
N-(2-Cyclohexyloxy-4-nitro-phenyl)-methanesulfonamide(NS-398)
N-[2-(CYCLOHEXYLOXY)-4-NITROPHENYL]METHANE-SULFONAMIDE
N-{2-(cyclohexyloxy)-4-[hydroxy(oxido)amino]phenyl}methanesulfonamide
NS4
Solubility of N-[2-(cyclohexoxy)-4-nitro-phenyl]methanesulfonamide
N-[2-(cyclohexoxy)-4-nitro-phenyl]methanesulfonamide, with the chemical formula C13H16N2O5S, exhibits specific solubility characteristics that are important for its chemical behavior and applications. The solubility of this compound can be influenced by several factors:
It's worth noting that "like dissolves like," so compounds with similar polarities will tend to be more soluble in each other. Therefore, the diverse structure of N-[2-(cyclohexoxy)-4-nitro-phenyl]methanesulfonamide allows for the potential to be soluble in multiple solvent systems.
The extent of solubility may also require empirical testing under various conditions, such as temperature and pH, to obtain precise values critical for practical applications.