Date published: 2025-9-5

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Silicon Compounds

Santa Cruz Biotechnology now offers a broad range of silicon compounds for use in various applications. Silicon compounds, encompassing a diverse array of silanes, silicones, and silicates, are integral to numerous fields of scientific research due to their unique chemical and physical properties. These compounds play a critical role in material science, where they are used to develop advanced materials with tailored properties, such as high thermal stability, electrical insulation, and biocompatibility. Researchers utilize silicon compounds to explore novel synthesis routes and to create materials for electronics, optics, and nanotechnology. In organic chemistry, silicon compounds are employed as reagents and catalysts, facilitating reactions that are challenging to achieve with other elements. They are also essential in the study of reaction mechanisms, offering insights into the behavior of silicon in various chemical environments. Furthermore, silicon compounds are pivotal in environmental science for developing materials used in water purification, soil stabilization, and the capture and storage of carbon dioxide. Their versatility extends to the field of biochemistry, where they aid in the study of silicon's role in biological systems and the development of silicon-based biomaterials. By providing a comprehensive selection of silicon compounds, Santa Cruz Biotechnology supports innovative research across multiple scientific disciplines, enabling scientists to push the frontiers of knowledge and technology. View detailed information on our available silicon compounds by clicking on the product name.

Items 341 to 350 of 381 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

1-Dimethylamino-3-(trimethylsilyl)-2-propyne

56849-88-8sc-222689
5 g
$67.00
(0)

1-Dimethylamino-3-(trimethylsilyl)-2-propyne is a silicon compound characterized by its unique alkyne functionality and dimethylamino group, which influence its reactivity in electrophilic addition reactions. The trimethylsilyl moiety enhances its hydrophobicity, promoting solubility in organic solvents. This compound exhibits intriguing kinetic behavior, allowing for rapid formation of intermediates in cross-coupling reactions, and its molecular structure supports diverse coordination chemistry with transition metals.

Trichloro(octadecyl)silane

112-04-9sc-255688
sc-255688A
25 g
250 g
$135.00
$459.00
(0)

Trichloro(octadecyl)silane is a silicon compound notable for its long-chain alkyl group, which imparts significant hydrophobic characteristics and enhances surface modification capabilities. The presence of three chlorine atoms facilitates nucleophilic substitution reactions, enabling the formation of siloxane bonds with various substrates. Its unique molecular architecture promotes self-assembly and film formation, making it effective in creating hydrophobic surfaces and influencing interfacial properties in materials science.

Trichloro(propyl)silane

141-57-1sc-255689
sc-255689A
25 g
100 g
$180.00
$568.00
(0)

Trichloro(propyl)silane is a silicon compound characterized by its propyl group, which contributes to its unique reactivity and interaction with various substrates. The three chlorine atoms enable rapid hydrolysis, leading to the formation of silanol groups that can engage in further condensation reactions. This compound exhibits distinct surface adhesion properties, enhancing the compatibility of silicon-based materials with organic surfaces. Its ability to form robust siloxane networks makes it valuable in modifying surface characteristics and improving material performance.

Potassium trimethylsilanolate

10519-96-7sc-236458
25 g
$69.00
(0)

Potassium trimethylsilanolate is a silicon compound notable for its trimethylsilyl groups, which enhance its nucleophilicity and facilitate unique interactions with electrophiles. This compound exhibits rapid deprotonation, generating reactive silanolate species that can participate in various condensation and polymerization reactions. Its high solubility in organic solvents and ability to form stable siloxane linkages contribute to its effectiveness in modifying surface properties and enhancing material compatibility.

Tetravinylsilane

1112-55-6sc-237082
5 g
$83.00
(1)

Tetravinylsilane is a silicon compound characterized by its unique vinyl groups, which enable versatile polymerization pathways and facilitate cross-linking reactions. Its reactivity is influenced by the presence of multiple double bonds, allowing for rapid addition reactions with various electrophiles. This compound exhibits significant thermal stability and can form robust siloxane networks, making it an important precursor in the synthesis of silicone-based materials with tailored properties.

(3-Aminopropyl)trimethoxysilane

13822-56-5sc-251942
sc-251942C
sc-251942A
sc-251942B
5 g
10 g
100 g
500 g
$41.00
$50.00
$60.00
$157.00
(0)

(3-Aminopropyl)trimethoxysilane is a silicon compound distinguished by its amino and methoxy functional groups, which enhance its reactivity and bonding capabilities. The amino group facilitates strong interactions with various substrates, promoting adhesion and surface modification. Its trimethoxy groups enable efficient hydrolysis, leading to silanol formation that can engage in condensation reactions. This compound's ability to form siloxane linkages contributes to the development of durable, multifunctional materials with enhanced mechanical properties.

Iodotrimethylsilane

16029-98-4sc-252909
sc-252909A
5 g
25 g
$48.00
$122.00
(0)

Iodotrimethylsilane is a silicon compound characterized by its unique iodine substituent, which imparts distinctive reactivity in nucleophilic substitution reactions. The presence of trimethyl groups enhances its steric properties, influencing reaction kinetics and selectivity. This compound exhibits notable stability under various conditions, allowing for controlled release of iodine in synthetic pathways. Its ability to form stable siloxane bonds facilitates the creation of complex silane networks, enhancing material performance in diverse applications.

Fluosilicic acid

16961-83-4sc-252831
100 g
$42.00
(0)

Fluosilicic acid is a silicon compound notable for its ability to form strong complexes with metal ions, enhancing its reactivity in various chemical environments. Its unique fluoride substituents facilitate the formation of silicate structures, promoting distinct pathways in silicate chemistry. The acid exhibits significant acidity, which influences its interaction with bases and other nucleophiles, leading to rapid reaction kinetics. Additionally, its solubility in water allows for effective dispersion in various media, impacting its behavior in industrial processes.

(Triethylsilyl)acetylene

1777-03-3sc-237309
5 g
$80.00
(0)

(Triethylsilyl)acetylene is a silicon compound characterized by its unique reactivity due to the presence of triethylsilyl groups, which enhance its nucleophilicity. This compound participates in diverse coupling reactions, often acting as a versatile building block in organic synthesis. Its steric properties influence reaction pathways, allowing for selective transformations. Additionally, the compound's volatility and low viscosity facilitate its handling in various chemical processes, making it an interesting subject for study in silicon-based chemistry.

tert-Butyldimethylsilanol

18173-64-3sc-236996
5 g
$117.00
(0)

tert-Butyldimethylsilanol is a silicon compound notable for its unique silanol functional group, which imparts distinct hydrogen bonding capabilities. This compound exhibits strong interactions with polar solvents, enhancing its solubility and reactivity in various chemical environments. Its bulky tert-butyl group provides steric hindrance, influencing reaction kinetics and selectivity in nucleophilic substitutions. The compound's ability to form stable siloxane linkages further contributes to its significance in silicon chemistry, enabling diverse polymerization pathways.