Date published: 2025-9-26

1-800-457-3801

SCBT Portrait Logo
Seach Input

Piperidines

Santa Cruz Biotechnology now offers a broad range of piperidines for use in various applications. Piperidines, a class of heterocyclic organic compounds characterized by a six-membered ring containing one nitrogen atom, play a pivotal role in scientific research due to their versatile chemical properties and wide-ranging applications. These compounds are essential intermediates in organic synthesis, enabling the creation of complex molecules and serving as building blocks for agrochemicals, catalysts, and materials science. Piperidines are extensively used in the development of polymers and resins, contributing to advances in material durability and performance. Environmental scientists utilize piperidines to explore novel methods for pollutant degradation and environmental remediation, helping address pressing ecological challenges. In analytical chemistry, piperidines are employed as reagents and calibration standards in chromatographic and spectroscopic techniques, facilitating the precise identification and quantification of various substances. Additionally, in the field of biochemistry, piperidines are studied for their interactions with enzymes and proteins, providing insights into fundamental biological processes and aiding in the design of biochemical assays. The broad applicability and unique reactivity of piperidines make them indispensable tools in driving innovation and expanding our understanding of chemical and biological systems. Their role in multiple disciplines underscores their importance in advancing research and developing new technologies. View detailed information on our available piperidines by clicking on the product name.

Items 1 to 10 of 480 total

Display:

Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Mito-TEMPO

1569257-94-8sc-221945
sc-221945A
5 mg
25 mg
$65.00
$250.00
136
(2)

Mito-TEMPO, a piperidine derivative, features a distinctive nitroxide moiety that imparts unique redox properties, enabling it to engage in electron transfer processes. Its structural configuration promotes strong hydrogen bonding interactions, influencing solubility and reactivity in polar environments. The compound's ability to stabilize radical species enhances its role in oxidative stress studies, while its conformational adaptability allows for varied interactions with other molecular entities, impacting reaction pathways and kinetics.

TEMPOL

2226-96-2sc-200825
1 g
$36.00
33
(3)

TEMPOL, a piperidine derivative, exhibits remarkable stability due to its nitroxide radical structure, which facilitates unique spin dynamics and electron delocalization. This compound demonstrates significant solvation effects, enhancing its reactivity in diverse solvent systems. Its capacity to form transient complexes through π-π stacking and dipole-dipole interactions allows for intricate molecular assemblies, influencing reaction mechanisms and kinetics in various chemical environments.

4-[(3-methylbutoxy)methyl]piperidine hydrochloride

sc-348567
sc-348567A
250 mg
1 g
$288.00
$584.00
(0)

4-[(3-methylbutoxy)methyl]piperidine hydrochloride showcases intriguing steric and electronic properties due to its branched alkyl substituent. This compound engages in hydrogen bonding and dipole interactions, which can modulate its solubility and reactivity in polar and nonpolar environments. Its piperidine ring contributes to conformational flexibility, allowing for diverse molecular interactions that can influence reaction pathways and kinetics, making it a versatile participant in various chemical processes.

Ketotifen fumarate

34580-14-8sc-201094A
sc-201094
100 mg
1 g
$45.00
$72.00
3
(1)

Ketotifen fumarate, a piperidine derivative, exhibits notable conformational dynamics due to its cyclic structure, which facilitates unique intramolecular interactions. The presence of the fumarate moiety enhances its ability to form stable complexes through π-π stacking and electrostatic interactions. This compound's reactivity is influenced by its electron-donating and withdrawing groups, allowing for selective participation in nucleophilic and electrophilic reactions, thereby affecting its overall chemical behavior.

Flavopiridol

146426-40-6sc-202157
sc-202157A
5 mg
25 mg
$78.00
$254.00
41
(3)

Flavopiridol, a piperidine derivative, showcases intriguing electronic properties stemming from its unique heterocyclic framework. The compound's ability to engage in hydrogen bonding and π-π interactions contributes to its stability and reactivity. Its structure allows for selective coordination with metal ions, influencing catalytic pathways. Additionally, the presence of various functional groups modulates its electron density, impacting reaction kinetics and facilitating diverse chemical transformations.

Dorsomorphin dihydrochloride

1219168-18-9sc-361173
sc-361173A
10 mg
50 mg
$182.00
$736.00
28
(2)

Dorsomorphin dihydrochloride, a piperidine-based compound, exhibits distinctive conformational flexibility due to its cyclic structure, enabling it to adopt multiple spatial arrangements. This adaptability enhances its interaction with various substrates through non-covalent forces, such as van der Waals and dipole-dipole interactions. The compound's unique electronic distribution allows for selective reactivity, influencing its participation in complex reaction mechanisms and facilitating the formation of diverse intermediates.

Cycloheximide

66-81-9sc-3508B
sc-3508
sc-3508A
100 mg
1 g
5 g
$40.00
$82.00
$256.00
127
(5)

Cycloheximide, a piperidine derivative, showcases intriguing steric hindrance due to its cyclic framework, which influences its reactivity and interaction with ribosomal components. This compound's unique electron-donating properties facilitate hydrogen bonding, enhancing its affinity for specific binding sites. Its structural rigidity contributes to selective inhibition of protein synthesis, impacting various biochemical pathways. The compound's hydrophobic regions also play a crucial role in membrane interactions, affecting its solubility and distribution in biological systems.

STO-609 acetate salt

1173022-21-3sc-202820
5 mg
$101.00
19
(2)

STO-609 acetate salt, a piperidine derivative, exhibits notable selectivity in modulating enzyme activity through its unique structural conformation. The presence of acetate enhances its solubility, promoting efficient molecular interactions. Its ability to form stable complexes with target proteins is influenced by specific hydrogen bonding patterns, which can alter reaction kinetics. Additionally, the compound's spatial arrangement allows for distinct conformational changes, impacting its overall reactivity in biochemical pathways.

Isofagomine D-Tartrate

957230-65-8sc-207767
sc-207767A
sc-207767C
sc-207767B
5 mg
10 mg
50 mg
25 mg
$379.00
$710.00
$1975.00
$1199.00
(1)

Isofagomine D-Tartrate, a piperidine derivative, showcases intriguing properties through its ability to engage in diverse molecular interactions. Its unique stereochemistry facilitates specific binding to target sites, enhancing its reactivity. The compound's capacity for intramolecular hydrogen bonding contributes to its stability and influences reaction pathways. Furthermore, its solvation dynamics play a crucial role in modulating interaction rates, making it a fascinating subject for studying molecular behavior in complex systems.

Loratadine

79794-75-5sc-203117
sc-203117A
10 mg
50 mg
$107.00
$455.00
1
(1)

Loratadine, a piperidine derivative, exhibits notable characteristics through its unique electronic structure, which allows for effective π-π stacking interactions with aromatic systems. This compound's conformational flexibility enables it to adopt various spatial arrangements, influencing its reactivity in nucleophilic substitution reactions. Additionally, its hydrophobic regions enhance solubility in organic solvents, affecting its diffusion properties and interaction kinetics in diverse chemical environments.