5 Results for "

single electron transfer

" in MedChemExpress (MCE) Product Catalog:
Products (5)

5 Results for "single electron transfer" in MCE Product Catalog:

Cat. No.: HY-W039724
CAS No.: 492-22-8
Research Areas:  

Others

Thioxanthone is a powerful photocatalyst for organic reactions. Thioxanthone mediates energy transfer, single-electron transfer, and hydrogen atom transfer processes. As a photoredox catalyst, Thioxanthone is used in nickel-catalyzed self-coupling reactions of aryl halides, arylation reactions of H-phosphine oxides/H-phosphites, decarbonylation reactions of cyclopropenones, and reactions generating acyl radicals from aromatic aldehydes .
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Cat. No.: HY-N19254
CAS No.: 3000-36-0
Shepherdine, a harmala-type indole and tetrahydro-β-carboline alkaloid, is an antioxidant. Shepherdine scavenges free radicals via single electron transfer from its indole ring, forming an indolyl cation or neutral radical, and may convert to aromatic β-carbolines during this process. Shepherdine can be used for research on antioxidant activity .
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Cat. No.: HY-126926
CAS No.: 36408-16-9
Synonyms: 5-Deazaflavin mononucleotide
Research Areas:  

Others

5-Deaza-FMN (5-Deazaflavin mononucleotide) is a binder of type II isopentenyl diphosphate: dimethylallyl diphosphate isomerase (IDI-2) with a Kd value of 16 μM. 5-Deaza-FMN acts as a radical generator, forming radicals through photoinduced single-electron transfer of tryptophan. 5-Deaza-FMN finds applications in biocatalysis and photocatalysis .
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Cat. No.: HY-N19720
CAS No.: 22684-08-8
Bractein is a natural aurone flavonoid with potential antioxidant activity. Bractein shows in vitro antileishmanial activity and inhibits promastigotes and intracellular amastigotes of Leishmania donovani. Bractein exhibits no obvious cytotoxicity against mammalian macrophages with an EC50 value > 25.0 μg/mL. Bractein can be used for the research of Leishmania .
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Cat. No.: HY-D3431
CFSE-Tz is a fluorescent bioorthogonal probe constructed based on the IEDDA reaction, which is mainly used for visual tracing of amino acid uptake in living cells. The tetrazine group within the CFSE-Tz molecule quenches CFSE fluorescence via photoinduced electron transfer; after the probe specifically undergoes a bioorthogonal reaction with trans-cyclooctene-modified amino acids, the quenching effect is eliminated, and a green fluorescent signal is released, thereby dynamically monitoring the intracellular amino acid uptake process. CFSE-Tz can be applied to in vitro single-cell fluorescence imaging and studies related to amino acid metabolism in tumor cells (Ex = 495 nm, Em = 519 nm) [1] [2].
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