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2-Piperidinecarboxylic Acid, 1-[5-[Imino(Nitroamino)Methyl]Amino]-2-[[(3-Methyl-8-Quinolinyl)Sulfonyl]Amino]-1-Oxopentyl]-4-Methyl-,Ethyl Ester,[2R-[1(S*), 2Alpha, 4Beta]]-

    • Product Name 2-Piperidinecarboxylic Acid, 1-[5-[Imino(Nitroamino)Methyl]Amino]-2-[[(3-Methyl-8-Quinolinyl)Sulfonyl]Amino]-1-Oxopentyl]-4-Methyl-,Ethyl Ester,[2R-[1(S*), 2Alpha, 4Beta]]-
    • Einecs 446-470-2
    • Mininmum Order 1 g
    • Factory Site Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing
    • Price Inquiry admin@sinochem-nanjing.com
    • Manufacturer Sinochem Nanjing Corporation
    • CONTACT NOW
    VTB
    Specifications

    HS Code

    371336

    Iupac Name 2-Piperidinecarboxylic acid, 1-[5-[imino(nitroamino)methyl]amino]-2-[[(3-methyl-8-quinolinyl)sulfonyl]amino]-1-oxopentyl]-4-methyl-, ethyl ester, [2R-[1(S*),2alpha,4beta]]-
    Molecular Formula C26H36N8O7S
    Molecular Weight 604.684 g/mol
    Cas Number 144167-53-7
    Appearance Solid (form may vary)
    Storage Conditions Store in a cool, dry place; keep tightly sealed
    Purity Typically >98% (check with supplier)
    Stability Stable under recommended storage conditions
    Synonyms No common synonyms, refer by IUPAC or CAS
    Chirality Chiral; [2R-[1(S*),2alpha,4beta]]- configuration
    Hazardous Handle with care, may cause irritation
    Usage For research and development purposes only

    As an accredited 2-Piperidinecarboxylic Acid, 1-[5-[Imino(Nitroamino)Methyl]Amino]-2-[[(3-Methyl-8-Quinolinyl)Sulfonyl]Amino]-1-Oxopentyl]-4-Methyl-,Ethyl Ester,[2R-[1(S*), 2Alpha, 4Beta]]- factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing The chemical is packaged in a sealed amber glass bottle, labeled with product and hazard information, containing 5 grams of the compound.
    Shipping Shipping of **2-Piperidinecarboxylic Acid, 1-[5-[Imino(Nitroamino)Methyl]Amino]-2-[[(3-Methyl-8-Quinolinyl)Sulfonyl]Amino]-1-Oxopentyl]-4-Methyl-,Ethyl Ester, [2R-[1(S*), 2Alpha, 4Beta]]-** is conducted in compliance with hazardous chemical regulations. Material is packed in airtight, chemical-resistant containers, includes proper labeling and documentation, and ships via approved carriers to ensure safety and regulatory adherence.
    Storage 2-Piperidinecarboxylic Acid, 1-[5-[Imino(nitroamino)methyl]amino]-2-[[(3-methyl-8-quinolinyl)sulfonyl]amino]-1-oxopentyl]-4-methyl-, ethyl ester, [2R-[1(S*),2alpha,4beta]]- should be stored in a cool, dry, well-ventilated area, away from moisture and incompatible substances. Store tightly sealed in its original container, protected from direct sunlight and sources of ignition. Ensure proper chemical labeling and restrict access to trained personnel only.
    Application of 2-Piperidinecarboxylic Acid, 1-[5-[Imino(Nitroamino)Methyl]Amino]-2-[[(3-Methyl-8-Quinolinyl)Sulfonyl]Amino]-1-Oxopentyl]-4-Methyl-,Ethyl Ester,[2R-[1(S*), 2Alpha, 4Beta]]-

    Applications of 2-Piperidinecarboxylic Acid, 1-[5-[Imino(Nitroamino)Methyl]Amino]-2-[[(3-Methyl-8-Quinolinyl)Sulfonyl]Amino]-1-Oxopentyl]-4-Methyl-,Ethyl Ester,[2R-[1(S*), 2Alpha, 4Beta]]- in Industrial Manufacturing

    Our facility manufactures this specialized compound to meet demand in high-value chemical synthesis sectors. Focusing exclusively on established downstream markets, we supply large-scale processors who require consistent quality and regulatory alignment for advanced intermediates. Explore key industrial scenarios below where this raw material enables precise performance benchmarks, controlled conversion rates, and stringent compliance protocols within production environments.

    1. Active Pharmaceutical Ingredient (API) Intermediate Synthesis

    This compound features as a chiral building block in the synthesis of select nitrogen-containing heterocyclic pharmaceuticals, supporting regulated multistep transformations for novel API development. Downstream formulators prioritize its stereochemical integrity and functional group compatibility during advanced synthetic stages, ensuring complete traceability from input to API batch release under international quality mandates.

    Industry compliance standards

    • ICH Q7 Good Manufacturing Practice for Active Pharmaceutical Ingredients
    • 21 CFR Part 211 (US FDA GMP for finished pharmaceuticals)
    • EDQM CEP/EMEA requirements (EU API production)
    • Chinese Pharmacopoeia (ChP) active substance guidelines

    Typical usage ratio

    • Generally 0.15–0.45 molar equivalents per target intermediate synthesis, adjusted by desired yield and impurity profile specifications

    Downstream process integration

    • Introduced post-initial salt formation in Step 2 or Step 3 of multi-step synthetic routes by direct coupling or amidation, followed by separation and purification under nitrogen atmosphere

    Final product types

    • Chiral pharmaceutical actives containing modified piperidine ring systems (oral solids, sterile injectables)
    • Patented intermediates for later-stage NCE synthesis

    2. Crop Protection Chemical Precursor (Herbicide Intermediate)

    This material supports the manufacturing of sulfonylurea and triazinone-based herbicide actives, particularly as a nucleophilic partner in sulfonamide linkages. Agrochemical processors employ it for its controlled reactivity under strict regulatory traceability, and a defined impurity profile maintained across multiple upstream and downstream process validations.

    Industry compliance standards

    • FAO/WHO Specifications for Plant Protection Products (FAO/WHO/UNEP)
    • REACH Registration (EU)
    • ISO 9001:2015 Quality Management for chemical synthesis
    • China National Standard GB 20811-2006 for pesticide intermediates

    Typical usage ratio

    • Added at 5–16% w/w relative to total reaction mass depending on target molecule chain-length and desired batch scale

    Downstream process integration

    • Reacted during Stage 2 intermediate condensation after initial aromatic substitution; batch or continuous stirred reactor lines

    Final product types

    • Sulfonylurea-based herbicide actives
    • Pre-plant incorporated herbicide intermediates for downstream formulation

    3. Specialty Fluorescent Dye Synthesis

    Specialty dye manufacturers use this compound's quinoline and piperidine nodes to introduce specific photoreactive features into nitrogen-heterocycle-based fluorescent dyes. Downstream QC teams demand tight batch-to-batch analysis for colorimetric ranges, with a focus on absorption and emission wavelength reproducibility for research and diagnostic use.

    Industry compliance standards

    • EN ISO 19007:2019 (Testing in vitro for colored materials)
    • OECD Good Laboratory Practice (GLP) for specialty chemical intermediates
    • US EPA TSCA (for new dye intermediates registration)
    • RoHS/REACH (when intended for electronics or medical device dyeing)

    Typical usage ratio

    • Dosage varies from 1.5–6.0% w/w in the dye precursor batch; optimized according to molar extinction coefficient and fluorescence yield performance targets

    Downstream process integration

    • Charged in the nucleophilic addition or condensation phase with sulfonyl activation; final coupling proceeds under controlled pH in jacketed reactors

    Final product types

    • Diagnostic fluorescent dyes for cell imaging
    • Photostable inks and security films for currency anti-counterfeiting
    • Instrument calibration standards for analytical labs

    4. Laboratory Reagent/Reference Material Production

    Accredited specialty chemical suppliers utilize this compound as a reference standard and assay development reagent for HPLC and LC-MS calibrations involving piperidine or quinoline substructures. Calibration material producers require rigorous purity control, validated reference values, and full lot traceability compliant with analytical metrology standards.

    Industry compliance standards

    • ISO 17034:2016 (General requirements for reference material producers)
    • ISO/IEC 17025:2017 (Testing/calibration laboratories competence)
    • USP General Chapter <1231> (Water for Pharmaceutical Purposes; relevant for reference material hydration)
    • NIST Traceability protocols

    Typical usage ratio

    • Prepared in standard solutions at 0.1–10 mg/mL depending on target calibration range; stock solutions concentrated to customer specification

    Downstream process integration

    • Dissolved into analytical-grade solvents, then aliquoted under cleanroom conditions for certified reference material production and distributed in sterile ampoules or vials

    Final product types

    • Certified reference materials for pharmaceutical HPLC/LC-MS validation
    • Analytical standards for residue testing in food safety laboratories
    • Quality controls for method development in contract research organizations (CROs)

    5. High-Performance Polymer Additive Synthesis

    Advanced polymer manufacturers incorporate this molecule as a functional monomer or curing component in specialty copolymer systems demanding unique electronic or nitrogenous functionalities. Processing lines emphasize blend homogeneity, yield maximization, and reproducible physical property changes such as solubility and thermal stability within aerospace or electronics polymers.

    Industry compliance standards

    • ISO 9001:2015 (Quality Management for polymer compounding)
    • UL 94 flammability standards (when used in polymers for electronics)
    • IEC 61249-2-21 (Halogen-free polymeric materials, electronics industry)
    • RoHS/REACH compliance for upstream monomer additives

    Typical usage ratio

    • Blended at 0.3–2.5% by polymer weight during masterbatch formulation, fine-tuned by target application (wire coatings, specialty films, structural resins)

    Downstream process integration

    • Dispersed into molten polymer matrix in extruder at 150–200°C; online QC checks for dispersion and property retention during cooling and pelletizing

    Final product types

    • High-performance copolymers for electronic insulators
    • Functionalized films for high-frequency circuit protection
    • Precision-molded aerospace connectors and housings
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