Items 361 to 370 of 452 total
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Product Name | CAS # | Catalog # | QUANTITY | Price | Citations | RATING |
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Tin(II) chloride | 7772-99-8 | sc-203413 sc-203413A sc-203413B | 100 g 500 g 2.5 kg | $56.00 $150.00 $379.00 | ||
Tin(II) chloride is a versatile reagent known for its reducing properties and ability to form complexes with various ligands. It readily participates in redox reactions, facilitating electron transfer processes. The compound exhibits Lewis acid behavior, enabling it to coordinate with electron-rich species. Its hygroscopic nature enhances its reactivity, while its role in catalyzing polymerization and other organic transformations underscores its significance in synthetic chemistry. | ||||||
Ammonium Sulfamate | 7773-06-0 | sc-202949 sc-202949A sc-202949B | 100 g 500 g 1 kg | $60.00 $189.00 $324.00 | ||
Ammonium sulfamate is a versatile reagent in laboratory environments, recognized for its ability to act as a nitrogen source in various chemical reactions. Its unique structure allows for effective coordination with metal ions, enhancing catalytic activity in certain pathways. The compound exhibits distinct solubility characteristics, which can influence reaction rates and equilibria. Furthermore, it participates in nucleophilic substitution reactions, showcasing its reactivity in organic synthesis. | ||||||
Sodium persulfate | 7775-27-1 | sc-203401 sc-203401A sc-203401B | 25 g 500 g 2.5 kg | $30.00 $45.00 $130.00 | 5 | |
Sodium persulfate is a versatile oxidant known for its ability to generate sulfate radicals, which are highly reactive and can initiate various radical polymerization processes. Its stability under ambient conditions allows for controlled release of these radicals, making it suitable for applications in environmental remediation and polymer synthesis. The compound's solubility in water enhances its reactivity, facilitating rapid electron transfer and promoting diverse chemical transformations. | ||||||
Aluminum nitrate nonahydrate | 7784-27-2 | sc-202926 sc-202926A sc-202926B | 100 g 500 g 2.5 kg | $32.00 $100.00 $245.00 | ||
Aluminum nitrate nonahydrate is a highly soluble compound that exhibits strong hygroscopic properties, readily absorbing moisture from the environment. Its crystalline structure allows for efficient ion dissociation in aqueous solutions, leading to enhanced ionic conductivity. The presence of multiple water molecules influences its coordination chemistry, enabling the formation of various complexes. This compound also participates in exothermic reactions, showcasing its role in thermal dynamics and reaction kinetics in laboratory settings. | ||||||
Ammonium dichromate | 7789-09-5 | sc-202937 sc-202937A | 100 g 500 g | $100.00 $185.00 | ||
Ammonium dichromate is a versatile oxidizing agent, renowned for its striking thermal decomposition, which produces chromium(III) oxide, nitrogen gas, and water. This reaction is highly exothermic and can be visually dramatic, often used in demonstrations. Its unique ability to form chromate and dichromate ions in solution allows for varied oxidation states, influencing reaction pathways and kinetics in various chemical processes. The compound's distinct color change during reactions also aids in visualizing progress. | ||||||
Sodium dichromate dihydrate | 7789-12-0 | sc-212939 sc-212939A | 100 g 500 g | $60.00 $194.00 | ||
Sodium dichromate dihydrate is a powerful oxidizing agent, notable for its ability to participate in redox reactions, facilitating electron transfer processes. Its distinct chromate ions enable complexation with various metal ions, influencing reaction kinetics and pathways. The compound's solubility in water enhances its reactivity, making it effective in various analytical techniques. Additionally, its vibrant orange color serves as a visual indicator in titrations, aiding in precise measurements. | ||||||
Barium nitrate | 10022-31-8 | sc-202972 sc-202972A | 100 g 500 g | $50.00 $140.00 | 1 | |
Barium nitrate is a highly soluble salt that plays a crucial role in various laboratory applications. Its ionic structure allows for effective dissociation in aqueous solutions, promoting rapid ion exchange and enhancing reaction rates. The compound exhibits unique interactions with other ions, often forming stable complexes that can influence the solubility of other substances. Additionally, its thermal stability makes it suitable for studies involving heat-induced reactions, providing insights into decomposition pathways and reaction kinetics. | ||||||
Hydrazine sulfate | 10034-93-2 | sc-211599 sc-211599A | 5 g 100 g | $47.00 $67.00 | ||
Hydrazine sulfate is a versatile compound known for its unique redox properties, facilitating electron transfer in various chemical reactions. Its ability to form stable complexes with transition metals enhances catalytic activity, making it a key player in oxidation-reduction processes. The compound's hydrophilic nature promotes solubility in polar solvents, influencing reaction kinetics and enabling diverse synthetic pathways. Additionally, its reactivity with electrophiles allows for the formation of hydrazones, expanding its utility in organic synthesis. | ||||||
Lithium sulfate monohydrate | 10102-25-7 | sc-211743 sc-211743A | 100 g 500 g | $85.00 $309.00 | ||
Lithium sulfate monohydrate is characterized by its ability to form strong ionic interactions, which enhance solubility in aqueous environments. This compound exhibits unique hydration dynamics, influencing its stability and reactivity in various chemical processes. Its crystalline structure allows for specific lattice interactions, affecting dissolution rates and ion mobility. Additionally, it plays a role in facilitating ion exchange reactions, making it a valuable component in analytical chemistry applications. | ||||||
Lithium tetraborate | 12007-60-2 | sc-203113 | 1 kg | $291.00 | ||
Lithium tetraborate is a unique compound characterized by its ability to form strong hydrogen bonds and complex interactions with various ions. Its distinct tetrahedral geometry enhances its role as a flux in analytical chemistry, promoting the fusion of samples for improved analysis. The compound exhibits notable thermal stability, which influences reaction kinetics, allowing for controlled thermal decomposition. Its low viscosity in molten form aids in the efficient transport of ions during reactions, enhancing overall reactivity. |