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Results for "

electron acceptor

" in MedChemExpress (MCE) Product Catalog:

14

Inhibitors & Agonists

3

Fluorescent Dye

1

Natural
Products

1

Isotope-Labeled Compounds

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-D1509

    Fluorescent Dye Others
    Phenazine ethosulfate is a cationic dye (Ex=390 nm, Em=530 nm) and an electron acceptor that can be used in dye-linked enzyme assays. Phenazine ethosulfate is an intermediate for detecting nitric oxide reducatase (Nors) activity with the presence of ascorbic acid .
    Phenazine ethosulfate
  • HY-D1373

    HBC 530

    DNA Stain Cancer
    HBC is a green fluorescent protein (GFP) fluorophore-like synthetic dye, with a structurally rigid electron acceptor and a strong electron donor. HBC is used to detect RNA localization .
    HBC
  • HY-107869

    Others Others
    Isoindigo is the acceptor of donor-acceptor (D-A) conjugated polymer, as well as an Indigo series dye. Isoindigo equips two lactam rings and strong electron-withdrawing character. Isoindigo can be used for dyeing and pigment preparation. Isoindigo shows high mobility and good ambient stability in FETs .
    Isoindigo
  • HY-125831

    Biochemical Assay Reagents Others
    ITIC-4F is an indacenodithienothiophene (IDTT)-based postfullerene electron acceptor. ITIC-4F has broad applicability in high-efficiency binary and ternary single-junction as well as tandem polymer solar cells (PSCs) .
    ITIC-4F
  • HY-114856

    Biochemical Assay Reagents Others
    DTBT is a six-membered heterocyclic ring that is commonly used in the preparation of organic electronic devices, such as P-type organic semiconductors (OFETs) and P-type organic photodiodes (OLEDs). DTBT has good performance in electron transmission and photoelectric conversion. DTBT polymerizes to form donor-acceptor polymers, which are used to prepare solar cells .
    DTBT
  • HY-N10516

    Others Others
    Bacteriopheophytin, a photosynthetic pigment, is a bacterial demagnetised chlorophyll composed of bacterial chlorophyll in which two hydrogen atoms replace the magnesium center. Bacteriopheophytin acts as an electron acceptor in the purple bacterial reaction center (RC) and is involved in electron transfer .
    Bacteriopheophytin
  • HY-125830

    Others Others
    ITIC, non-fullerene acceptor, is an indacenodithienothiophene-based postfullerene electron acceptor, crystallizes in a profoundly different way as compared to fullerenes. ITIC has a superior thermal stability and undergoes a glass-crystal transition considerably below its high Tg of 180 °C.
    ITIC
  • HY-W015816

    2,6-DMBQ

    Others Others
    2,6-Dimethylbenzoquinone (2,6-DMBQ) is a quinone compound that can accept photosynthetic electrons downstream of photosystem II .
    2,6-Dimethylbenzoquinone
  • HY-W854727

    Others Others
    N-Methylfulleropyrrolidine serves as an electron acceptor molecule characterized by its fullerene core and a nitrogen-free lone pair associated with the pyrrolidine ring. This compound can act as an intermediate in the synthesis of various functionalized fullerenes and plays a significant role in the development of opto-electronic devices. Comprehensive studies have been conducted on the photoinduced energy and electron transfer processes between oligothienylenevinylenes and N-Methylfulleropyrrolidine (MP-C60).
    N-Methylfulleropyrrolidine
  • HY-137294

    Y6

    Others Others
    BTPTT-4F (Y6) is a non-fullerene acceptor-donor-acceptor (A-D-A) type small molecular acceptor (SMA) characterized by its flexible alkyl chains and centrally fused ring structure. Featuring a ladder-type electron-deficient core, BTPTT-4F can be effectively blended with PM6, showcasing significant potential for enhancing the performance of organic photovoltaic applications. Its tailored optical properties and adjustable electronic energy levels contribute to improved thermal and photochemical stability, making it a promising candidate for next-generation high-performance organic solar cells.
    BTPTT-4F
  • HY-N1944S

    Fungal Endogenous Metabolite Bacterial Parasite Isotope-Labeled Compounds Cancer
    Nerolidol-d4 is deuterated labeled Tenuazonic acid (HY-N6715). Tenuazonic acid, belonging to tetramic acids that are the largest family of natural products, is a putative nonhost-selective mycotoxin isolated from Alternaria alternate . Tenuazonic acid blocks electron transport beyond primary quinone acceptor (QA) by interacting with D1 protein and it is a broad-spectrum and effective photosystem II (PSII) inhibitor .
    Nerolidol-d4
  • HY-149203A

    Fluorescent Dye Others
    MQA-P is a multifunctional near-infrared (NIR) fluorescent probe that simultaneously detects ONOO -, viscosity, and polarity within mitochondria. MQA-P exhibits significant response to ONOO -, λem=645 nm; and NIR channel at λem>704 nm Medium is highly sensitive to viscosity/polarity. MQA-P possesses excited-state intramolecular charge transfer (ESICT) properties that are highly sensitive to polarity by designing the N,N-dimethylamino group as the electron donor and the quinoline cation unit as the electron acceptor. MQA-P is used for ferroptosis or cancer diagnosis in vitro and in vivo via dual-channel images .
    MQA-P TFA
  • HY-130439

    Others Metabolic Disease
    EUK 8 and EUK 134 are synthetic catalytic scavengers of reactive oxygen species with superoxide dismutase (SOD) and catalase mimetic activity.1 EUK 124 is a structural analog of EUK 8 and EUK 134 with significantly reduced activity. EUK 124 and EUK 8 inhibit superoxide-mediated reduction of an electron acceptor (i.e., SOD mimetic activity), with IC50 values of 5 μM and 0.7 μM, respectively.
    EUK-124
  • HY-124357

    S-Norfluoxetine hydrochloride; LY 215229 hydrochloride

    Others Neurological Disease
    Seproxetine (S-Norfluoxetine) hydrochloride is a selective serotonin reuptake inhibitor (SSRI) that enhances serotonin levels in the brain by specifically inhibiting the serotonin uptake carrier. Seproxetine hydrochloride exhibits strong charge transfer interactions with π-electron acceptors, forming stable complexes that enhance its binding affinity to multiple receptors, including serotonin and dopamine receptors. Seproxetine hydrochloride demonstrates improved biological activity when interacting with charge transfer complexes, leading to increased stability and efficacy in therapeutic applications.
    Seproxetine hydrochloride

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