(E)-3-((R)-4-Pyrrolidin-2-Yl-Phenyl)-Acrylic Acidmethyl Ester Hydrochloride

    • Product Name: (E)-3-((R)-4-Pyrrolidin-2-Yl-Phenyl)-Acrylic Acidmethyl Ester Hydrochloride
    • Chemical Name (IUPAC): methyl (E)-3-[(R)-4-(pyrrolidin-2-yl)phenyl]prop-2-enoate hydrochloride
    • CAS No.: 1628047-84-0
    • Chemical Formula: C14H16ClNO2
    • Form/Physical State: Solid
    • Factroy Site: West Ujimqin Banner, Xilingol League, Inner Mongolia, China
    • Price Inquiry: sales9@bouling-chem.com
    • Manufacturer: Bouling Coating
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    Specifications

    HS Code

    333534

    Chemical Name (E)-3-((R)-4-Pyrrolidin-2-Yl-Phenyl)-Acrylic Acidmethyl Ester Hydrochloride
    Molecular Formula C15H18ClNO2
    Molecular Weight 279.76 g/mol
    Appearance White to off-white solid
    Purity Typically ≥98% (assay by HPLC)
    Solubility Soluble in DMSO, methanol, and water (as hydrochloride salt)
    Storage Temperature 2-8°C, protected from light
    Cas Number 1440887-26-0
    Synonyms None widely published
    Stereochemistry (E)-configuration at the acrylic acid moiety, (R)-configuration at the pyrrolidine ring
    Smiles C=C(C1=CC=C(C2CCCN2)C=C1)C(=O)OC.Cl
    Applications Used in chemical research and pharmaceutical development

    As an accredited (E)-3-((R)-4-Pyrrolidin-2-Yl-Phenyl)-Acrylic Acidmethyl Ester Hydrochloride factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing White, tamper-evident, screw-cap amber glass bottle containing 1 gram labeled as “(E)-3-((R)-4-Pyrrolidin-2-Yl-Phenyl)-Acrylic Acidmethyl Ester Hydrochloride, 1g, for research use only.”
    Container Loading (20′ FCL) 20′ FCL container loaded with securely packed drums of (E)-3-((R)-4-Pyrrolidin-2-Yl-Phenyl)-Acrylic Acidmethyl Ester Hydrochloride.
    Shipping The chemical `(E)-3-((R)-4-Pyrrolidin-2-Yl-Phenyl)-Acrylic Acidmethyl Ester Hydrochloride` is shipped in securely sealed, inert containers under controlled temperature conditions. Packaging ensures protection from moisture and light. All hazardous material regulations are strictly followed, with appropriate labeling and documentation for safe, compliant transit. Delivery includes comprehensive safety and handling instructions.
    Storage **Storage Description for (E)-3-((R)-4-Pyrrolidin-2-Yl-Phenyl)-Acrylic Acidmethyl Ester Hydrochloride:** Store this compound in a tightly sealed container, protected from moisture and light, in a cool, dry, and well-ventilated area. Recommended storage temperature is 2–8°C (refrigerated). Avoid exposure to strong acids, bases, and oxidizing agents. Properly label the container and restrict access to qualified personnel only.
    Shelf Life Shelf life: Store in a cool, dry place; stable for at least 2 years when unopened and protected from light and moisture.
    Application of (E)-3-((R)-4-Pyrrolidin-2-Yl-Phenyl)-Acrylic Acidmethyl Ester Hydrochloride

    Purity 99%: (E)-3-((R)-4-Pyrrolidin-2-Yl-Phenyl)-Acrylic Acidmethyl Ester Hydrochloride with a purity of 99% is used in pharmaceutical intermediate synthesis, where it ensures high reaction efficiency and reproducibility.

    Melting Point 169°C: (E)-3-((R)-4-Pyrrolidin-2-Yl-Phenyl)-Acrylic Acidmethyl Ester Hydrochloride with a melting point of 169°C is used in active pharmaceutical ingredient (API) formulation, where it provides stable solid-state properties under manufacturing conditions.

    Molecular Weight 291.8 g/mol: (E)-3-((R)-4-Pyrrolidin-2-Yl-Phenyl)-Acrylic Acidmethyl Ester Hydrochloride with a molecular weight of 291.8 g/mol is used in medicinal chemistry research, where it enables precise dose calculation for compound screening.

    Stability at 25°C: (E)-3-((R)-4-Pyrrolidin-2-Yl-Phenyl)-Acrylic Acidmethyl Ester Hydrochloride with stability at 25°C is used in storage of research reagents, where it minimizes degradation and maintains chemical integrity.

    Particle Size <10 μm: (E)-3-((R)-4-Pyrrolidin-2-Yl-Phenyl)-Acrylic Acidmethyl Ester Hydrochloride with particle size below 10 μm is used in tablet formulation development, where it achieves uniform blending and improved dissolution rates.

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