Date published: 2025-11-28

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Synthetic Reagents

Santa Cruz Biotechnology now offers a broad range of Synthetic Reagents for use in various applications. Synthetic reagents are vital chemical tools used to facilitate and drive chemical reactions in the synthesis of complex molecules, playing a crucial role in advancing scientific research across a multitude of fields. These reagents include catalysts, reducing agents, oxidizing agents, solvents, and protective groups, all of which are essential for controlling and optimizing chemical transformations. In organic chemistry, synthetic reagents are indispensable for developing new synthetic routes, enabling the creation of novel compounds, and fine-tuning reaction conditions to achieve high yields and selectivity. Researchers utilize these reagents to construct molecular architectures, study reaction mechanisms, and synthesize natural products and new materials with desired properties. The availability of high-purity synthetic reagents ensures that experiments are reproducible and results are reliable, which is fundamental for credible scientific research and publication. These reagents are also crucial in material science, aiding in the development of advanced materials such as polymers, nanomaterials, and composites with unique and valuable characteristics. By providing a comprehensive selection of high-quality synthetic reagents, Santa Cruz Biotechnology supports the scientific community in pushing the boundaries of chemical innovation and discovery. Researchers can confidently conduct their experiments, knowing that the synthetic reagents will perform consistently and effectively, leading to new insights and advancements in chemistry and related disciplines. View detailed information on our available Synthetic Reagents by clicking on the product name.

Items 401 to 410 of 469 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

5-Fluoro-2-methylbenzoxazole

701-16-6sc-290907
sc-290907A
1 g
5 g
$180.00
$475.00
(0)

5-Fluoro-2-methylbenzoxazole serves as a versatile synthetic reagent, notable for its ability to engage in electrophilic aromatic substitution reactions. The presence of the fluorine atom enhances its electrophilicity, allowing for selective functionalization of aromatic systems. Its unique benzoxazole structure promotes strong π-π stacking interactions, which can influence reaction pathways and kinetics. Additionally, this compound exhibits distinct solubility characteristics, facilitating its use in various organic transformations.

1,3-Di-p-tolylcarbodiimide

726-42-1sc-222942
sc-222942A
100 mg
250 mg
$455.00
$1938.00
(0)

1,3-Di-p-tolylcarbodiimide is a specialized synthetic reagent recognized for its role in facilitating amide bond formation through its unique reactivity. The presence of two p-tolyl groups enhances steric hindrance, promoting selective coupling reactions while minimizing side reactions. Its ability to stabilize reactive intermediates through resonance contributes to efficient reaction kinetics. Furthermore, this compound exhibits notable solubility in organic solvents, aiding in diverse synthetic applications.

Tetraethylammonium p-toluenesulfonate

733-44-8sc-251176
sc-251176A
100 g
500 g
$125.00
$390.00
(0)

Tetraethylammonium p-toluenesulfonate serves as a versatile synthetic reagent, notable for its ability to enhance nucleophilicity in various organic reactions. The quaternary ammonium structure facilitates ion-pairing interactions, which can stabilize transition states and improve reaction rates. Its solubility in polar solvents allows for effective phase transfer catalysis, promoting efficient substrate conversion. Additionally, the sulfonate group contributes to its unique reactivity profile, enabling selective transformations in complex synthetic pathways.

Dichlorotitanium Diisopropoxide

762-99-2sc-294304
sc-294304A
5 g
25 g
$176.00
$533.00
(0)

Dichlorotitanium diisopropoxide is a distinctive synthetic reagent characterized by its ability to form strong coordination complexes with various ligands. This property enhances its reactivity in catalytic processes, particularly in the formation of organometallic intermediates. Its unique steric and electronic properties facilitate selective reactions, allowing for precise control over product formation. Additionally, its interactions with Lewis bases can significantly influence reaction kinetics, making it a valuable tool in synthetic chemistry.

2-Bromo-1-ethyl-pyridinium tetrafluoroborate

878-23-9sc-251704
5 g
$133.00
(0)

2-Bromo-1-ethyl-pyridinium tetrafluoroborate is a notable synthetic reagent recognized for its ability to act as a potent electrophile in nucleophilic substitution reactions. Its unique pyridinium structure enhances its reactivity, allowing for efficient formation of quaternary ammonium salts. The presence of the tetrafluoroborate counterion contributes to its solubility in polar solvents, facilitating smooth reaction pathways. This compound's distinct electronic characteristics enable selective interactions with nucleophiles, optimizing reaction rates and yields.

Dimethylthiophosphinoyl Chloride

993-12-4sc-294361
sc-294361A
1 g
2.5 g
$278.00
$940.00
(0)

Dimethylthiophosphinoyl Chloride is a versatile synthetic reagent characterized by its reactivity as an acid chloride. It readily participates in acylation reactions, forming stable thioester intermediates that can further engage in nucleophilic attacks. The presence of the thiophosphinoyl group enhances its electrophilic nature, promoting rapid reaction kinetics. Its ability to form strong covalent bonds with nucleophiles makes it a valuable tool in synthetic organic chemistry, enabling the construction of complex molecular architectures.

Tributylgermanium hydride

998-39-0sc-253738
1 g
$157.00
(0)

Tributylgermanium hydride is a notable synthetic reagent recognized for its unique reactivity profile as a hydride donor. It facilitates reduction reactions, effectively transferring hydride ions to various electrophiles, which can lead to the formation of organometallic compounds. Its bulky tributyl groups enhance steric hindrance, influencing selectivity in reactions. Additionally, it exhibits distinct coordination chemistry, allowing for the stabilization of reactive intermediates in synthetic pathways.

(2-Chloroethyl)trimethylammonium chloride

999-81-5sc-238004
5 g
$32.00
(0)

(2-Chloroethyl)trimethylammonium chloride serves as a versatile synthetic reagent, characterized by its ability to engage in nucleophilic substitution reactions. The presence of the quaternary ammonium group enhances its reactivity, allowing it to act as an alkylating agent. This compound can facilitate the formation of various derivatives through electrophilic attack, showcasing its utility in generating complex molecular architectures. Its ionic nature contributes to solubility in polar solvents, influencing reaction kinetics and pathways.

Bis(trimethylsilyl)carbodiimide

1000-70-0sc-234082
5 g
$93.00
(0)

Bis(trimethylsilyl)carbodiimide is a potent synthetic reagent known for its role in facilitating peptide bond formation and activating carboxylic acids. Its unique structure allows for efficient coupling reactions, where it acts as a dehydrating agent, promoting the formation of amides and esters. The presence of trimethylsilyl groups enhances its stability and solubility in organic solvents, while also influencing reaction kinetics by stabilizing intermediates, leading to improved yields in synthetic pathways.

4-(Dimethylamino)pyridine N-Oxide Hydrate

1005-31-8sc-289578
sc-289578A
1 g
5 g
$160.00
$560.00
(0)

4-(Dimethylamino)pyridine N-Oxide Hydrate serves as a versatile synthetic reagent, particularly in nucleophilic acyl substitution reactions. Its unique electron-donating dimethylamino group enhances nucleophilicity, facilitating the activation of electrophiles. This compound exhibits remarkable solubility in polar solvents, promoting efficient reaction kinetics. Additionally, its N-oxide functionality can stabilize reactive intermediates, making it a valuable tool in organic synthesis for generating complex molecular architectures.