Date published: 2025-9-5

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Pyridines

Santa Cruz Biotechnology now offers a broad range of pyridines for use in various applications. Pyridines are aromatic heterocyclic organic compounds consisting of a six-membered ring with one nitrogen atom and five carbon atoms. These versatile compounds are fundamental in scientific research due to their wide array of chemical properties and applications across multiple disciplines. In organic chemistry, pyridines are extensively used as solvents and reagents, playing a crucial role in the synthesis of complex molecules, including agrochemicals, and dyes. Their unique structure and reactivity make them valuable intermediates in numerous chemical reactions, such as nucleophilic substitutions and cross-coupling reactions. In coordination chemistry, pyridines serve as important ligands, forming stable complexes with metal ions, which are essential for studying metal-catalyzed reactions and developing new catalytic processes. Environmental scientists study pyridines to understand their behavior and transformation in natural and contaminated environments, as they are common byproducts of industrial processes and can impact soil and water quality. Additionally, pyridines are used in the study of molecular biology and biochemistry, where their derivatives are involved in the structure and function of vital biomolecules like NADH and NADPH, which are critical for cellular metabolism and energy transfer. The exploration of pyridine-containing compounds also extends to materials science, where they contribute to the development of advanced materials with specific electronic, optical, and mechanical properties. Researchers employ pyridines to create polymers, liquid crystals, and organic semiconductors, expanding the potential for innovative applications in electronics and photonics. The broad applications and significance of pyridines in research underscore their importance in advancing scientific knowledge and driving technological progress. View detailed information on our available pyridines by clicking on the product name.

Items 281 to 290 of 316 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

5-Bromopyridine-2-carboxylic acid

30766-11-1sc-262556
sc-262556A
5 g
25 g
$30.00
$110.00
(0)

5-Bromopyridine-2-carboxylic acid is a distinctive pyridine derivative featuring a bromine substituent that enhances its electrophilic character. The carboxylic acid group introduces acidity, enabling proton transfer reactions and facilitating esterification processes. Its planar structure promotes π-π stacking interactions, which can influence aggregation behavior in solution. Additionally, the presence of the bromine atom can modulate reactivity, allowing for selective substitution reactions in synthetic pathways.

Picotamide

32828-81-2sc-201334
sc-201334A
10 mg
50 mg
$92.00
$366.00
1
(1)

Picotamide is a notable pyridine derivative characterized by its unique nitrogen-containing heterocycle, which contributes to its basicity and potential for hydrogen bonding. The presence of functional groups allows for diverse reactivity, including nucleophilic attacks and coordination with metal ions. Its electron-rich nature enhances interactions with electrophiles, while steric factors influence reaction kinetics, making it a versatile compound in various chemical transformations.

3-Amino-2-hydroxypyridine

33630-99-8sc-298887
sc-298887A
5 g
25 g
$86.00
$408.00
(0)

3-Amino-2-hydroxypyridine is a distinctive pyridine derivative featuring both amino and hydroxyl functional groups, which facilitate intramolecular hydrogen bonding and enhance its solubility in polar solvents. This compound exhibits unique reactivity patterns, including the ability to participate in electrophilic aromatic substitution and form stable chelates with transition metals. Its electron-donating properties influence reaction mechanisms, allowing for selective pathways in synthetic applications.

Piroxicam

36322-90-4sc-200576
sc-200576A
1 g
5 g
$107.00
$369.00
2
(0)

Piroxicam, a notable pyridine derivative, showcases intriguing molecular interactions due to its unique structural features. The presence of a sulfonamide group enhances its ability to engage in hydrogen bonding, influencing solubility and reactivity. This compound exhibits distinct kinetic behavior in reactions, often favoring nucleophilic attack pathways. Its planar structure allows for effective π-π stacking interactions, which can impact its aggregation and stability in various environments.

TMPyP4

36951-72-1sc-204346
sc-204346A
sc-204346B
25 mg
250 mg
500 mg
$108.00
$159.00
$287.00
9
(1)

TMPyP4, a tetracationic porphyrin derivative, exhibits remarkable electronic properties due to its extensive conjugated system. Its ability to form strong π-π interactions and electrostatic interactions with anions enhances its stability and solubility in polar solvents. The compound's unique structure facilitates intercalation with nucleic acids, influencing its photophysical behavior. Additionally, TMPyP4 demonstrates distinct redox activity, making it a subject of interest in various chemical studies.

4-Bromo-2-hydroxypyridine

36953-37-4sc-277140
200 mg
$150.00
(0)

4-Bromo-2-hydroxypyridine is a versatile pyridine derivative characterized by its unique hydrogen bonding capabilities and electron-withdrawing bromine substituent. This compound exhibits enhanced reactivity in nucleophilic substitution reactions, facilitating the formation of diverse derivatives. Its hydroxyl group contributes to strong intermolecular interactions, influencing solubility and stability in various solvents. The compound's distinct electronic properties also allow for selective coordination with metal ions, expanding its potential applications in coordination chemistry.

ACDPP hydrochloride

37804-11-8sc-203494
sc-203494A
10 mg
50 mg
$163.00
$648.00
(0)

ACDPP hydrochloride is a distinctive pyridine derivative notable for its strong electron-donating properties and the presence of a chloride ion, which enhances its reactivity in electrophilic aromatic substitution reactions. The compound's unique structure promotes significant π-π stacking interactions, influencing its aggregation behavior in solution. Additionally, its polar nature affects solubility profiles, making it suitable for various solvent systems and enhancing its kinetic reactivity in synthetic pathways.

2-(Pyridin-2-yl)propan-2-ol

37988-38-8sc-259349
250 mg
$294.00
(0)

2-(Pyridin-2-yl)propan-2-ol is a unique pyridine derivative characterized by its chiral center, which introduces stereochemical complexity. This compound exhibits strong hydrogen bonding capabilities due to its hydroxyl group, facilitating specific molecular interactions in various environments. Its ability to engage in intramolecular interactions can influence reaction pathways, while its moderate polarity affects solubility and reactivity in diverse chemical contexts, enhancing its utility in synthetic applications.

2-Chloro-5-fluoronicotinic acid

38186-88-8sc-259760
sc-259760A
1 g
5 g
$38.00
$196.00
(0)

2-Chloro-5-fluoronicotinic acid is a distinctive pyridine derivative featuring both halogen and carboxylic acid functional groups, which enhance its reactivity. The presence of chlorine and fluorine atoms introduces unique electronic effects, influencing nucleophilic attack and electrophilic substitution reactions. This compound exhibits notable acidity, allowing for efficient proton transfer in various chemical environments. Its polar nature and ability to form strong intermolecular interactions contribute to its behavior in complex reaction mechanisms.

5-Fluoronicotinaldehyde

39891-04-8sc-262619
sc-262619A
1 g
5 g
$152.00
$930.00
(0)

5-Fluoronicotinaldehyde is a unique pyridine derivative characterized by its aldehyde functional group, which significantly influences its reactivity and interaction with nucleophiles. The fluorine atom enhances the electrophilic character of the carbonyl carbon, facilitating rapid condensation reactions. This compound exhibits distinct solubility properties due to its polar nature, allowing for effective participation in diverse chemical pathways. Its ability to engage in hydrogen bonding further impacts its reactivity and stability in various environments.