Date published: 2025-9-25

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Epoxides

Santa Cruz Biotechnology now offers a broad range of epoxides for use in various applications. Epoxides, also known as oxiranes, are a class of highly reactive compounds characterized by a three-membered ring structure containing an oxygen atom. These versatile molecules are pivotal in scientific research due to their unique reactivity and ability to form various chemical bonds. In organic synthesis, epoxides are used as intermediates to create a wide array of complex molecules, including alcohols, glycols, and polymers, thus playing a critical role in the development of new materials and fine chemicals. Researchers in polymer science utilize epoxides to produce epoxy resins, which are essential for creating strong adhesives, coatings, and composite materials. In environmental science, the reactivity of epoxides makes them useful for studying the degradation and transformation of pollutants, contributing to the development of cleaner technologies and remediation strategies. Analytical chemists employ epoxides in various techniques to investigate reaction mechanisms and to develop new analytical methods. Moreover, epoxides serve as valuable tools in biochemistry for studying enzyme-catalyzed reactions and the formation of biochemical intermediates. By offering a diverse selection of epoxides, Santa Cruz Biotechnology supports a wide range of scientific endeavors, enabling researchers to select the appropriate epoxide for their specific experimental needs. This extensive range of epoxides facilitates innovation and discovery across multiple scientific disciplines, including organic chemistry, materials science, environmental science, and analytical chemistry. View detailed information on our available epoxides by clicking on the product name.

Items 191 to 200 of 202 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

(2S,3S)-2,3-Oxiranedicarboxylic Acid Monoethyl Ester

89886-73-7sc-477851A
sc-477851
25 mg
100 mg
$280.00
$700.00
(0)

(2S,3S)-2,3-Oxiranedicarboxylic Acid Monoethyl Ester exhibits remarkable reactivity due to its epoxide structure, which is prone to nucleophilic attack. The presence of two carboxylate groups contributes to its ability to stabilize transition states, influencing reaction kinetics favorably. This compound's stereochemical configuration allows for regioselective reactions, leading to tailored products. Its unique properties make it an intriguing candidate for exploring novel synthetic routes and enhancing molecular diversity.

Ethylene Glycol Diglycidyl Ether (Mixture)

2224-15-9sc-486434
sc-486434A
25 g
500 g
$48.00
$182.00
1
(0)

Ethylene Glycol Diglycidyl Ether is a versatile epoxide characterized by its ability to undergo ring-opening reactions, leading to the formation of cross-linked networks. Its unique structure promotes strong intermolecular interactions, enhancing adhesion and mechanical properties in polymer matrices. The compound exhibits rapid reaction kinetics, making it suitable for applications requiring quick curing times. Additionally, its reactivity with various nucleophiles allows for diverse functionalization, expanding its utility in material science.

Squalene 2,3:22,23-Dioxide

31063-19-1sc-473286
25 mg
$306.00
(0)

Squalene 2,3:22,23-Dioxide exhibits intriguing reactivity due to its epoxide functional groups, which facilitate nucleophilic attack and ring-opening reactions. This compound's unique conformation allows for specific steric effects, influencing reaction kinetics and selectivity in synthetic pathways. Its ability to form stable intermediates enhances its role in complex organic transformations, while its distinct physical properties, such as viscosity and density, further impact its behavior in various chemical environments.

Benzo[a]pyrene Diol Epoxide

58917-67-2sc-503767
sc-503767A
2.5 mg
25 mg
$612.00
$2950.00
2
(0)

Benzo[a]pyrene Diol Epoxide is a highly reactive epoxide that forms through the metabolic activation of polycyclic aromatic hydrocarbons. Its unique structure allows for electrophilic interactions with nucleophiles, leading to the formation of DNA adducts. This compound exhibits distinct reaction kinetics, characterized by rapid binding to cellular macromolecules, which can disrupt normal cellular functions. Its ability to induce specific conformational changes in biomolecules highlights its role in mutagenesis and carcinogenesis.

Carbamazepine-10,11-epoxide-d10 (rings-d10)

1219804-16-6sc-507165
5 mg
$400.00
1
(0)

Carbamazepine-10,11-epoxide-d10 (rings-d10) is a distinctive epoxide known for its unique stereochemistry and reactivity. The presence of deuterium-labeled rings enhances its stability and alters reaction kinetics, making it a valuable tool in mechanistic studies. Its epoxide functionality allows for selective ring-opening reactions, which can lead to diverse product formation. Additionally, the compound's molecular interactions are influenced by its rigid structure, affecting solubility and reactivity in various solvents.

FR901464

146478-72-0sc-507352
5 mg
$1800.00
(0)

Resorcinol diglycidyl ether

101-90-6sc-272285
10 g
$107.00
(0)

Resorcinol diglycidyl ether is a versatile epoxide known for its dual epoxide functionalities, which promote high reactivity in cross-linking and polymerization processes. The presence of hydroxyl groups enhances hydrogen bonding, influencing its solubility and interaction with other compounds. Its unique structure allows for selective reactions with amines and thiols, leading to the formation of robust networks. The compound's kinetic behavior in curing processes is notable, as it exhibits a balance between rapid reactivity and controlled processing.

2-[(2-Cyclopentylphenoxy)methyl]-oxirane

28163-40-8sc-501812
100 mg
$380.00
(0)

2-[(2-Cyclopentylphenoxy)methyl]-oxirane is a distinctive epoxide known for its unique three-membered ring structure, which imparts significant strain and reactivity. The cyclopentylphenoxy substituent enhances its electrophilic character, enabling rapid ring-opening reactions with nucleophiles. This compound exhibits notable regioselectivity in reactions, influenced by steric and electronic factors, making it a versatile intermediate in synthetic organic chemistry. Its ability to participate in various cycloaddition reactions further underscores its reactivity profile.

Nor Scopolamine

4684-28-0sc-478714
5 mg
$450.00
(0)

Nor Scopolamine, as an epoxide, exhibits intriguing reactivity due to its strained three-membered ring structure, which facilitates nucleophilic attack. This compound's unique stereochemistry allows for selective interactions with various nucleophiles, leading to diverse reaction pathways. Its ability to undergo ring-opening reactions under mild conditions enhances its versatility in synthetic applications. Additionally, the presence of functional groups influences its solubility and reactivity, making it a subject of interest in organic synthesis.

1,2-Epoxy-4-vinylcyclohexane, mixture of isomers

106-86-5sc-485199
sc-485199A
25 ml
250 ml
$43.00
$164.00
(0)

1,2-Epoxy-4-vinylcyclohexane, a mixture of isomers, showcases remarkable reactivity as an epoxide, characterized by its strained three-membered ring structure. This strain enhances its susceptibility to nucleophilic attack, facilitating ring-opening reactions. The vinyl group introduces unique stereoelectronic effects, influencing regioselectivity in subsequent reactions. Its ability to participate in polymerization processes and form cross-linked networks further highlights its versatility in synthetic applications.