Date published: 2025-9-5

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Azides

Santa Cruz Biotechnology now offers a broad range of azides for use in various applications. Azides, characterized by the presence of the -N group, are a versatile class of compounds with significant importance in scientific research. These compounds are highly reactive and serve as key intermediates in organic synthesis, facilitating the formation of a wide variety of nitrogen-containing compounds. Azides are particularly valuable in the synthesis of heterocycles, which are essential building blocks in materials science, agrochemicals, and chemical biology. The unique reactivity of azides makes them indispensable in click chemistry, a powerful tool for bioconjugation and the development of complex molecular architectures with applications in materials science and biochemistry. In the field of polymer chemistry, azides are used to create functionalized polymers with tailored properties, enhancing the performance and utility of these materials in industrial applications. Environmental scientists study azides to understand their behavior and impact in the environment, particularly in the context of their use in agricultural chemicals and explosives. Additionally, azides are employed in analytical chemistry as reagents for the detection and quantification of various substances, improving the sensitivity and specificity of analytical techniques such as mass spectrometry and chromatography. By offering a diverse selection of azides, Santa Cruz Biotechnology supports a wide range of scientific endeavors, enabling researchers to select the appropriate azide for their specific experimental needs. This extensive range of azides facilitates innovation and discovery across multiple scientific disciplines, including chemistry, biology, environmental science, and materials science. View detailed information on our available azides by clicking on the product name.

Items 131 to 136 of 136 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

3-Azido-2,3-dideoxy-D-erythropentose

138168-21-5sc-503224
5 mg
$430.00
(0)

3-Azido-2,3-dideoxy-D-erythropentose exhibits intriguing properties as an azide, particularly in its ability to participate in cycloaddition reactions. The azido group enhances its electrophilic character, allowing for efficient interactions with various nucleophiles. This compound's unique stereochemistry influences its reactivity, leading to distinct pathways in synthetic transformations. Additionally, its stability under certain conditions makes it a versatile intermediate in organic synthesis, facilitating diverse chemical explorations.

rac-1-Azido-3-(1-naphthalenyloxy)-2-propanol

87102-64-5sc-503225
25 mg
$360.00
(0)

Rac-1-Azido-3-(1-naphthalenyloxy)-2-propanol showcases remarkable reactivity as an azide, particularly in its propensity for click chemistry. The presence of the naphthalenyloxy moiety enhances its solubility and facilitates π-π stacking interactions, which can influence reaction kinetics. This compound's azido group serves as a robust electrophile, enabling selective functionalization and diverse coupling reactions, making it a valuable tool for exploring complex molecular architectures.

(1S,2S,3S,5S)-5-Azido-3-(phenylmethoxy)-2-[(phenylmethoxy)methyl]cyclopentanol

110567-23-2sc-503226
2.5 mg
$430.00
(0)

(1S,2S,3S,5S)-5-Azido-3-(phenylmethoxy)-2-[(phenylmethoxy)methyl]cyclopentanol exhibits intriguing reactivity as an azide, particularly in its ability to engage in cycloaddition reactions. The dual phenylmethoxy groups enhance steric hindrance, influencing the compound's reactivity profile and selectivity in nucleophilic attacks. Its unique cyclopentanol framework allows for conformational flexibility, potentially affecting the kinetics of azide-alkyne reactions and enabling the formation of diverse molecular constructs.

(1R,2R,3R,5S)-2-Azido-4-(phenylmethoxy)-3-[(phenylmethoxy)methyl]-cyclopentanol

117641-40-4sc-503227
2.5 mg
$380.00
(0)

(1R,2R,3R,5S)-2-Azido-4-(phenylmethoxy)-3-[(phenylmethoxy)methyl]-cyclopentanol showcases distinctive reactivity as an azide, particularly in its propensity for click chemistry. The presence of multiple phenylmethoxy substituents introduces significant steric effects, which modulate its electrophilic character and influence reaction pathways. This compound's cyclopentanol structure contributes to its conformational diversity, potentially enhancing its reactivity in various coupling reactions and facilitating the formation of complex molecular architectures.

(3-Azidopropyl)triphenylphosphonium Bromide

127611-39-6sc-503228
250 mg
$380.00
(0)

(3-Azidopropyl)triphenylphosphonium Bromide exhibits intriguing reactivity as an azide, characterized by its ability to engage in nucleophilic substitution reactions. The triphenylphosphonium moiety enhances its lipophilicity and stabilizes the azide group, promoting efficient azide-alkyne cycloadditions. Its unique phosphonium salt structure facilitates rapid electron transfer processes, making it a versatile intermediate in synthetic pathways, particularly in the formation of diverse organophosphorus compounds.

5-Azido Uridine

1355028-82-8sc-503229
5 mg
$400.00
(0)

5-Azido Uridine is a unique azide compound that showcases remarkable reactivity due to its nucleophilic properties. The presence of the azide group allows for efficient participation in click chemistry, particularly in cycloaddition reactions. Its structural configuration promotes specific hydrogen bonding interactions, influencing solubility and reactivity in various environments. Additionally, the compound's ability to undergo selective transformations makes it a valuable building block in synthetic organic chemistry.