Items 41 to 50 of 390 total
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Product Name | CAS # | Catalog # | QUANTITY | Price | Citations | RATING |
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Sodium hydrosulfide | 207683-19-0 | sc-229304 sc-229304A sc-229304B sc-229304C | 5 g 100 g 1 kg 3 kg | $52.00 $62.00 $92.00 $117.00 | 1 | |
Sodium hydrosulfide is a versatile inorganic compound known for its strong nucleophilic properties, allowing it to engage in various substitution reactions. It readily donates hydrosulfide ions, facilitating the formation of metal sulfides and thiol compounds. The compound's high solubility in water enhances its reactivity, promoting rapid kinetics in redox reactions. Additionally, it can act as a reducing agent, influencing the electronic environment of adjacent molecules and altering their reactivity profiles. | ||||||
Dysprosium(III) iodide | 15474-63-2 | sc-227971 | 1 g | $200.00 | ||
Dysprosium(III) iodide is an intriguing inorganic compound known for its strong ionic interactions and unique crystal structure. The presence of dysprosium ions leads to significant magnetic properties, making it a subject of interest in materials science. Its layered lattice arrangement facilitates specific ion exchange processes, influencing its thermal stability and reactivity. Additionally, the compound exhibits distinct luminescent behavior, which is attributed to the f-f electronic transitions of dysprosium, enhancing its appeal in photonic applications. | ||||||
Barium hydroxide | 17194-00-2 | sc-252403 sc-252403A | 250 g 1 kg | $46.00 $128.00 | ||
Barium hydroxide is a notable inorganic compound characterized by its strong basicity and ability to form soluble complexes with various anions. Its high affinity for water results in a hygroscopic nature, allowing it to absorb moisture from the environment. This compound participates in exothermic reactions with acids, showcasing rapid reaction kinetics. Additionally, its role as a strong electrolyte in aqueous solutions enhances ionic conductivity, making it significant in electrochemical applications. | ||||||
Zinc acetate | 557-34-6 | sc-253848 sc-253848A sc-253848B sc-253848C | 25 g 100 g 500 g 1 kg | $75.00 $151.00 $300.00 $500.00 | ||
Zinc acetate is an inorganic compound distinguished by its ability to form coordination complexes with various ligands, enhancing its reactivity in diverse chemical environments. It exhibits moderate solubility in water, which facilitates its participation in hydrolysis reactions. The compound can act as a Lewis acid, engaging in electron pair acceptance, and its unique crystalline structure contributes to distinct thermal and optical properties. Additionally, it demonstrates interesting behavior in redox reactions, showcasing its versatility in inorganic chemistry. | ||||||
Bis(cyclopentadienyl)tungsten(IV) dihydride | 1271-33-6 | sc-227386 | 1 g | $201.00 | ||
Bis(cyclopentadienyl)tungsten(IV) dihydride is an intriguing inorganic compound characterized by its unique metal-ligand interactions and distinctive coordination geometry. The presence of dihydride ligands facilitates diverse reactivity, enabling it to engage in hydride transfer processes. Its robust structure contributes to notable stability under various conditions, while its ability to participate in oxidative addition and reductive elimination reactions highlights its significance in organometallic chemistry. | ||||||
Silver trifluoromethanesulfonate | 2923-28-6 | sc-255615 sc-255615A sc-255615B sc-255615C | 1 g 10 g 100 g 1 kg | $24.00 $82.00 $643.00 $4080.00 | ||
Silver trifluoromethanesulfonate is a notable inorganic compound distinguished by its strong ionic character and high reactivity as an acid halide. Its trifluoromethanesulfonate group enhances electrophilicity, facilitating nucleophilic attack in various organic transformations. The compound exhibits unique solubility properties, allowing it to interact effectively with polar solvents. Additionally, its ability to form stable complexes with various ligands underscores its versatility in coordination chemistry. | ||||||
Copper(I) acetate | 598-54-9 | sc-234411 | 1 g | $45.00 | ||
Copper(I) acetate is an inorganic compound notable for its role in electron transfer processes and its ability to form stable coordination complexes with ligands. Its unique dimeric structure allows for intriguing molecular interactions, influencing reaction kinetics in various chemical pathways. The compound exhibits moderate solubility in organic solvents, enhancing its reactivity in organic synthesis. Additionally, it participates in redox reactions, showcasing its versatility in catalysis and material science. | ||||||
Ferrous Sulfate (Iron II Sulfate) Heptahydrate | 7782-63-0 | sc-211505 sc-211505A | 250 g 500 g | $72.00 $107.00 | ||
Ferrous sulfate heptahydrate is a crystalline inorganic compound notable for its vibrant greenish-blue hue and hygroscopic nature, allowing it to absorb moisture from the environment. Its structure features octahedral coordination of iron ions, which can engage in redox reactions, making it a key player in electron transfer processes. The heptahydrate form enhances solubility, promoting its reactivity in various aqueous environments, while its ability to form complexes with ligands showcases its versatile coordination chemistry. | ||||||
Tetrairidium dodecacarbonyl | 11065-24-0 | sc-229423 | 500 mg | $179.00 | ||
Tetrairidium dodecacarbonyl is a complex organometallic compound characterized by its unique cluster structure, where iridium atoms are coordinated with carbonyl ligands. This arrangement facilitates interesting electronic interactions, enhancing its reactivity in catalytic processes. The compound exhibits distinctive thermal stability and can undergo ligand substitution reactions, making it a subject of interest in studies of metal-carbonyl chemistry. Its ability to form stable complexes with various substrates highlights its potential in diverse inorganic synthesis pathways. | ||||||
Potassium bromide | 7758-02-3 | sc-203348 sc-203348E sc-203348A sc-203348B sc-203348C sc-203348D | 100 g 250 g 500 g 2.5 kg 5 kg 10 kg | $46.00 $100.00 $154.00 $304.00 $520.00 $982.00 | ||
Potassium bromide is an inorganic salt characterized by its ionic structure, which contributes to its high solubility in water. The bromide ion exhibits strong polarizability, enhancing its ability to participate in ionic interactions. This compound can act as a source of bromide in various chemical reactions, facilitating halogenation processes. Its stability under ambient conditions and ability to form hydrates further highlight its unique physical properties and behavior in diverse chemical environments. |