Date published: 2025-9-5

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Nitro Compounds

Santa Cruz Biotechnology now offers a broad range of nitro compounds for use in various applications. Nitro compounds, characterized by one or more nitro groups (-NO2) attached to a carbon atom, are highly versatile in scientific research due to their wide range of chemical properties and reactivity. These compounds are essential in organic synthesis, serving as intermediates in the production of a variety of chemicals, including dyes, polymers, and explosives. Their ability to undergo reduction to form amines makes them valuable in the synthesis of agrochemicals, and complex organic molecules. In environmental science, nitro compounds are studied for their roles in pollution and their transformation in the environment, contributing to our understanding of nitrogen cycling and the impact of pollutants. Analytical chemists utilize nitro compounds as standards and reagents in chromatographic and spectroscopic methods, enabling the identification and quantification of complex mixtures. In materials science, nitro compounds are employed in the development of advanced materials, such as nitrocellulose and other functional polymers, which are used in coatings, propellants, and other industrial applications. The high energy content and stability of nitro compounds make them crucial in the study of energetic materials and pyrotechnics. Their diverse applications across multiple scientific disciplines highlight their importance in driving innovation and expanding our knowledge of chemical processes and material properties. View detailed information on our available nitro compounds by clicking on the product name.

Items 461 to 469 of 469 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

1-(3-Chloro-4-fluorophenyl)biguanide hydrochloride

sc-286996
1 g
$28.00
(0)

1-(3-Chloro-4-fluorophenyl)biguanide hydrochloride demonstrates intriguing reactivity patterns, particularly through its ability to form stable complexes with metal ions, enhancing its role in catalysis. The presence of halogen substituents influences its electronic properties, promoting unique pathways in electrophilic aromatic substitution. Additionally, its strong hydrogen-bonding capabilities contribute to its solubility in polar solvents, facilitating diverse reaction kinetics in synthetic applications.

2,4,5-Trifluorophenyl isocyanate

sc-288438
1 g
$55.00
(0)

2,4,5-Trifluorophenyl isocyanate exhibits distinctive reactivity due to its trifluoromethyl substituents, which significantly enhance its electrophilic character. This compound readily participates in nucleophilic addition reactions, forming stable urea derivatives. Its strong dipole moment influences intermolecular interactions, leading to unique solvation effects in various solvents. The presence of the isocyanate functional group also allows for rapid polymerization, making it a versatile intermediate in organic synthesis.

4-(Fmoc-amino)butyl bromide

sc-299313
sc-299313A
1 g
5 g
$83.00
$357.00
(0)

4-(Fmoc-amino)butyl bromide is characterized by its unique reactivity stemming from the Fmoc protecting group, which enhances its stability and solubility in organic solvents. This compound acts as a potent electrophile, facilitating nucleophilic substitution reactions. Its bromide moiety promotes rapid halogen exchange, while the butyl chain contributes to steric effects that influence reaction kinetics. Additionally, the compound's ability to form hydrogen bonds can lead to intriguing supramolecular interactions in various chemical environments.

Dimethylaminoethylhydrazine dihydrochloride

sc-300484
5 g
$133.00
(0)

Dimethylaminoethylhydrazine dihydrochloride exhibits distinctive properties as a nitro compound, primarily through its ability to engage in redox reactions. The presence of the dimethylamino group enhances electron donation, facilitating nucleophilic attacks on electrophilic centers. Its hydrazine structure allows for unique coordination with metal ions, potentially influencing catalytic pathways. Furthermore, the dihydrochloride form increases solubility in polar solvents, promoting diverse reaction mechanisms in synthetic chemistry.

HNE-DMA

sc-300801
2 mg
$117.00
(0)

HNE-DMA, as a nitro compound, showcases intriguing reactivity due to its electron-withdrawing nitro group, which significantly influences its electrophilic character. This compound can participate in various substitution reactions, where the nitro group can stabilize intermediates through resonance. Additionally, its unique steric configuration allows for selective interactions with nucleophiles, enhancing reaction specificity. The compound's solubility in organic solvents further facilitates its role in complex synthetic pathways, making it a versatile participant in chemical transformations.

N-Boc-6-azido-L-norleucine cyclohexylammonium Salt

2098497-30-2sc-301296
100 mg
$268.00
(0)

N-Boc-6-azido-L-norleucine cyclohexylammonium Salt, as a nitro compound, exhibits remarkable stability and reactivity due to its azido group, which can engage in click chemistry reactions. The presence of the Boc protecting group enhances its solubility and stability in various solvents, promoting efficient nucleophilic attacks. Its unique structural features allow for selective interactions with electrophiles, facilitating diverse synthetic routes and enabling the formation of complex molecular architectures.

N-tert-Butyl-O-benzoylhydroxylamine hydrochloride

sc-301406
1 g
$75.00
(0)

N-tert-Butyl-O-benzoylhydroxylamine hydrochloride, as a nitro compound, showcases intriguing reactivity through its hydroxylamine moiety, which can participate in nucleophilic substitution reactions. The tert-butyl group enhances steric hindrance, influencing reaction kinetics and selectivity. Its ability to form stable intermediates allows for unique pathways in organic synthesis, while the benzoyl group contributes to its solubility and interaction with various electrophiles, facilitating complex reaction mechanisms.

5-Chloro-2-ethyl-6-nitro-1,3-benzoxazole

sc-318543
sc-318543A
500 mg
1 g
$96.00
$131.00
(0)

5-Chloro-2-ethyl-6-nitro-1,3-benzoxazole, a nitro compound, exhibits notable electronic properties due to the presence of the nitro and chloro substituents, which can significantly influence its reactivity. The nitro group enhances electrophilicity, enabling it to engage in diverse electrophilic aromatic substitution reactions. Additionally, the benzoxazole ring system contributes to its stability and potential for intramolecular interactions, facilitating unique pathways in synthetic applications. Its distinct molecular structure allows for selective interactions with various reagents, making it a versatile compound in organic chemistry.

3,4-Dimethoxy-N-methylbenzylamine

63-64-9sc-232013
1 g
$51.00
(0)

3,4-Dimethoxy-N-methylbenzylamine, a nitro compound, exhibits notable electronic properties stemming from its methoxy substituents, which enhance electron density and influence reactivity. The compound's unique steric configuration allows for selective interactions with electrophiles, promoting distinct reaction pathways. Its ability to engage in hydrogen bonding and π-π interactions contributes to its solubility profile, affecting its behavior in diverse chemical environments and facilitating intricate reaction kinetics.