6 Results for "

microwave

" in MedChemExpress (MCE) Product Catalog:
Products (6)

6 Results for "microwave" in MCE Product Catalog:

Cat. No.: HY-121206
CAS No.: 89-79-2
Purity:  99.83%
Research Areas:  

Infection

(-)-Isopulegol is prepared directly from the treatment of essential oil of citronella under solid supported acid catalysis and solvent-free microwave assisted ene-cyclisation. (-)-Isopulegol shows high activity in reacting with carbonyl compounds. (-)-Isopulegol can be used for antiviral activity research .
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Cat. No.: HY-128407
CAS No.: 1075-06-5
Purity:  ≥95.0%
Synonyms: Phenylglyoxal hydrate
Target:  

Drug Intermediate

Research Areas:  

Others

2,2-Dihydroxy-1-phenylethan-1-one (Phenylglyoxal hydrate) is a phenylglyoxal-based, antioxidant drug synthesis intermediate. 2,2-Dihydroxy-1-phenylethan-1-one serves as a starting material for the synthesis of aromatic amines or aliphatic amines. It can be used to synthesize polysubstituted pyrrolo[3,2-c]pyridin-4-one derivatives, and also acts as a key structural unit in the microwave-assisted cascade synthesis of substituted 2-methyl-7-aryl-6H-thiazoloindole compounds .
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Cat. No.: HY-121206R
CAS No.: 89-79-2
Research Areas:  

Infection

(-)-Isopulegol (Standard) is the analytical standard of (-)-Isopulegol. This product is intended for research and analytical applications. (-)-Isopulegol is prepared directly from the treatment of essential oil of citronella under solid supported acid catalysis and solvent-free microwave assisted ene-cyclisation. (-)-Isopulegol shows high activity in reacting with carbonyl compounds. (-)-Isopulegol can be used for antiviral activity research .
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Cat. No.: HY-119202
CAS No.: 357263-14-0
Synonyms: (S)-BMS-806
Target:  

HIV

Research Areas:  

Infection

(S)-BMS-378806 ((S)-BMS-806) is an orally bioavailable HIV-1 inhibitor with activity against gp120-CD4 interactions. (S)-BMS-378806 exhibits micromolar inhibition of HIV-1 gp120-CD4 binding. The design and synthesis of (S)-BMS-378806 was based on a comprehensive study of protein-ligand interactions, which guided the identification and design of novel symmetrical N,N'-disubstituted aminoureas and thioureas. (S)-BMS-378806, synthesized in aqueous media using microwave irradiation, was validated for its inhibitory activity in HIV-1 gp120-CD4 capture ELISA .
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Cat. No.: HY-184626
Thiol-modified magnetite nanoparticles are prepared via high-temperature pyrolysis and surface-modified with thiol functional groups. Magnetite is widely used in magnetic resonance imaging, magnetic separation, targeted drug delivery, tumor hyperthermia, cell labeling and separation, as a contrast agent, and in retinal detachment repair surgery due to its stable properties, good biocompatibility, high strength, and lack of toxicity. It is also used as a catalyst carrier, microwave absorbing material, and magnetic recording material. Xianfeng has developed numerous derivatives of magnetite, including oleic acid-modified magnetite, magnetite with different PEG ends, DMSA-modified magnetite, polylysine-modified magnetite, carboxylated dextran-modified magnetite nanoparticles, streptavidin-modified magnetite particles, thiol-modified magnetite magnetic nanoparticles, and polyethyleneimine (PEI)-modified magnetic magnetite nanoparticles, among others.
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Cat. No.: HY-184620
Ferric oxide (Fe3O4) is widely used in magnetic resonance imaging (MRI), magnetic separation, targeted drug delivery, tumor hyperthermia, cell labeling and separation, and as a contrast agent and enhancement agent in retinal detachment repair surgery due to its stable material properties, good biocompatibility, high strength, and lack of toxic side effects. It is also used as a catalyst carrier, microwave absorbing material, and magnetic recording material. Xianfeng has developed numerous derivatives of ferric oxide, including oleic acid-modified ferric oxide, PEG-terminated ferric oxide, DMSA-modified ferric oxide, polylysine-modified ferric oxide, carboxylated dextran-modified ferric oxide nanoparticles, streptavidin-modified ferric oxide particles, thiol-modified ferric oxide magnetic nanoparticles, and polyethyleneimine (PEI)-modified magnetic ferric oxide nanoparticles, among others. This wide range of modifications provides numerous options for subsequent experiments.
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