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Adamantane-1-Carboxamidine Hydrochloride

    • Product Name Adamantane-1-Carboxamidine Hydrochloride
    • Alias Amantadine Hydrochloride
    • Einecs 690-230-6
    • 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

    789769

    Product Name Adamantane-1-Carboxamidine Hydrochloride
    Cas Number 33964-97-7
    Molecular Formula C10H17N3·HCl
    Molecular Weight 215.73 g/mol
    Appearance White to off-white crystalline powder
    Melting Point 236-239°C (decomposition)
    Solubility Soluble in water
    Purity Typically ≥98%
    Storage Temperature 2-8°C (refrigerated)
    Synonyms 1-Adamantylcarboxamidine hydrochloride

    As an accredited Adamantane-1-Carboxamidine Hydrochloride factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Adamantane-1-Carboxamidine Hydrochloride, 5 grams, supplied in a sealed amber glass bottle with tamper-evident cap and clear labeling.
    Shipping Adamantane-1-Carboxamidine Hydrochloride is shipped in tightly sealed containers to prevent moisture and contamination. The chemical is packaged according to standard hazardous material regulations, with appropriate labeling and documentation. It is shipped at ambient temperature and should be handled and stored in a cool, dry place, away from incompatible substances.
    Storage Adamantane-1-Carboxamidine Hydrochloride should be stored in a tightly sealed container, protected from light and moisture. Keep it in a cool, dry, and well-ventilated area, ideally at room temperature (15–25°C). Avoid exposure to incompatible substances, such as strong oxidizers. Follow local safety regulations for storage, and ensure proper labeling to prevent accidental misuse or contamination.
    Application of Adamantane-1-Carboxamidine Hydrochloride

    Applications of Adamantane-1-Carboxamidine Hydrochloride in Industrial Manufacturing

    Adamantane-1-Carboxamidine Hydrochloride serves as a niche specialty chemical intermediate across several high-value industrial sectors. Our production conforms to international quality and regulatory requirements, supporting established and emerging manufacturing applications demanding reliable raw material consistency, processability, and safe integration into production pipelines.

    1. Pharmaceutical Active Pharmaceutical Ingredient (API) Synthesis

    This compound acts as a building block for select pharmaceutical APIs, especially in antiviral, anticancer, and neurological medicine R&D and manufacturing. Process chemists incorporate it at the amidine functionalization step, leveraging its rigid structure for molecular scaffold construction. Our product supports reproducible yields and maintains stability during high-purity, multi-step pharmaceutical syntheses, ensuring batch traceability throughout the GMP supply chain.

    Industry compliance standards

    • ICH Q7 (GMP for APIs)
    • EU Regulation (EC) No 1907/2006 (REACH)
    • USP-NF monographs (when used in registered API routes)
    • FDA 21 CFR Part 210/211 (if used in US-marketed pharmaceuticals)

    Typical usage ratio

    • As a key intermediate, formulation ratio in API synthesis ranges from 5% to 30% molar equivalent—adjusted by downstream structural requirements and specific synthetic route.

    Downstream process integration

    • Incorporated during core amidinylation or cyclization reactions, typically following adamantane activation steps and preceding further functionalization, purification via recrystallization or chromatography.

    Final product types

    • Small molecule antiviral drug candidates
    • Neurological disorder treatments (custom molecules)
    • Oncology research compounds
    • Intermediate precursors for injectable medications

    2. Chemical Intermediate for Organic Synthesis

    Adamantane-1-Carboxamidine Hydrochloride finds application as a stable intermediate in specialty organic synthesis. Industrial chemists select it for constructing high-molecular-weight ligands, advanced frameworks, and dendritic molecules, where the adamantane core imparts steric bulk and conformational rigidity essential to downstream performance. Its hydrochloride form ensures consistent solubility and handling in automated and batch synthesis environments.

    Industry compliance standards

    • ISO 9001:2015 (Quality Management System)
    • Responsible Care chemical stewardship protocols
    • REACH (if volume threshold met in EU market)
    • Hazard Communication Standard (OSHA 29 CFR 1910.1200 for US facilities)

    Typical usage ratio

    • Reactant load typically ranges from 1% to 20% w/w in multi-component organic syntheses, optimized based on target yield, impurity profile, and downstream conversion constraints.

    Downstream process integration

    • Added during amidination, condensation, and cyclization stages of custom molecule synthesis, followed by neutralization, solvent extraction, and high-purity isolation steps.

    Final product types

    • Polytopic ligands for catalysis
    • Caged molecular scaffolds
    • Functionalized building blocks for advanced material R&D
    • High-performance specialty reagents

    3. High-Performance Polymer Additive Manufacturing

    Our material enhances the performance of specialty polymers in demanding engineering applications. Materials scientists utilize its rigid adamantane cage in high-temperature coatings, high-impact plastics, and certain thermoset formulations. It contributes to improved thermal resistance, dimensional stability, and resistance to stress-induced deformation. The hydrochloride salt format simplifies dosing and dispersal in prepolymer blends, ensuring uniform material properties.

    Industry compliance standards

    • EN ISO 9001:2015 (for quality-controlled specialty polymers)
    • RoHS Directive 2011/65/EU (for electronics-related uses)
    • UL 94 (if used in flame retardant plastics)
    • Manufacturer or customer-specific quality and environmental protocols

    Typical usage ratio

    • Addition level typically falls between 0.5% and 5% w/w in formulated polymer blends. Final ratio determined by matrix resin, end-use thermal requirements, and compatibility testing.

    Downstream process integration

    • Introduced during pre-polymer mixing phase or compounded into masterbatches before extrusion, molding, or curing, depending on the production process for the end-use polymer system.

    Final product types

    • High-impact thermoset resins
    • Engineering-grade composite plastics
    • Thermal barrier coatings
    • Electrical encapsulant compounds

    4. Analytical Reference Material Supply

    We supply Adamantane-1-Carboxamidine Hydrochloride as a purity-controlled analytical standard to laboratories and third-party assay developers. Laboratories require materials with documented traceability and batch-to-batch consistency for instrument calibration, impurity profiling, and validation work. Our production process aligns with regulated analytical supply standards, including homogeneity testing and full CoA documentation for each lot.

    Industry compliance standards

    • ISO 17034:2016 (Reference Material Producers)
    • ISO/IEC 17025 (Testing and calibration laboratories)
    • Good Laboratory Practice (OECD GLP Guideline No. 1)
    • FDA guidance for analytical reference materials

    Typical usage ratio

    • Dosing levels depend on analytical method, but stock standard preparations typically use concentrations of 10–1000 ppm in diluted solvent, suitable for HPLC, LC-MS, and NMR validation.

    Downstream process integration

    • Weighing and dissolution occur during sample preparation for QC labs, metabolite studies, reference spiking, or routine analytical system calibration routines, following laboratory SOPs.

    Final product types

    • HPLC calibration reference solutions
    • spiked analytical control samples
    • impurity qualification kits for pharmaceutical QC
    • reference spectra sets for method development
    Free Quote

    Competitive Adamantane-1-Carboxamidine Hydrochloride prices that fit your budget—flexible terms and customized quotes for every order.

    For samples, pricing, or more information, please call us at +8615371019725 or mail to admin@sinochem-nanjing.com.

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    Certification & Compliance
    More Introduction

    Adamantane-1-Carboxamidine Hydrochloride: A Chemist’s Perspective

    A Direct Approach to Quality and Control

    In the world of chemical manufacturing, Adamantane-1-Carboxamidine Hydrochloride stands out for both its unique structure and its practical value in fine synthesis. Our production team knows firsthand the effort that goes into ensuring reliable supply for researchers and industrial users alike. This compound, built on the iconic adamantane framework, has sparked attention in pharmaceutical research as well as other high-value applications. As direct manufacturers, not middlemen, we get to see every stage from raw material selection to final quality assessment. There’s a different level of commitment that comes with that responsibility. Our technical staff runs checks batch after batch, mindful of the sensitivity some applications have to impurities or inconsistency.

    Anatomy of the Compound

    Adamantane-1-Carboxamidine Hydrochloride features the tetrahedral adamantane core, which provides remarkable chemical stability. The amidine group at the 1-position offers a reactive handle for further derivatization. Whether working in medicinal chemistry or materials science, users recognize that the purity and particulate profile of this compound matter. A slightly impure or sub-optimally crystallized batch can derail an entire synthetic route. We receive regular feedback from bench chemists; they do not want to waste time troubleshooting unexplained side reactions. That’s why our team continually refines the purification process using chromatography and salt metathesis routes unique to our setup.

    Reliability in a Demanding Field

    Our product typically ships as a white crystalline powder, meeting rigorous analytical standards confirmed by NMR, HPLC, and elemental analysis. We maintain multiple reference materials for batch comparison, ensuring the spectroscopic profile matches published literature. Results from our internal stability trials give us confidence in the storage and handling parameters recommended for the compound. Customers working with delicate ligands or bioactive intermediates need this reliability, and we understand firsthand how subpar batches affect downstream chemistry. Any deviation — whether in water content, melting range, or particle size — triggers a root cause investigation on our end.

    Purpose-Driven Manufacturing

    Production of Adamantane-1-Carboxamidine Hydrochloride in our facility revolves around consistency. Not every manufacturing process can guarantee tight control over chloride content or minimize trace byproducts. Several years ago, we invested in a double-filtration system that reduced the common ammonium salt impurity to undetectable levels, even when pushing through larger-scale batches. This came after a pharmaceutical partner flagged an unexpected byproduct in their formulation pilot run. Adjustments like this represent what it means to be on the shop floor, confronting challenges directly and learning from each new requirement.

    Technical Advantages for Synthetic Chemistry

    Researchers select this compound largely for its robust adamantane skeleton, which resists oxidative and acidic degradation. For medicinal chemists, this translates into a stable platform for ligand design or as an isostere in exploratory drug discovery. Having interacted closely with research clients, we have learned that they favor our product for its solubility profile in polar protic solvents, which speeds up early-stage screening or derivative formation. Repeated distillation of the hydrochloride ensures they don’t run into solubility problems that are often reported with less rigorously processed stocks.

    Comparing to Other Amidine-Based Building Blocks

    We field many questions about the relative merits of Adamantane-1-Carboxamidine Hydrochloride compared to other amidines. From our experience, most commercially available amidines lack either the rigidity or the steric bulk needed for targeted medicinal chemistry. The adamantane core offers a fixed geometry and hydrophobic shield — properties valued by those designing protease inhibitors or viral agents. We ran several side-by-side reactivity tests, comparing it in Suzuki and Buchwald coupling protocols against more common carboxamidines. Ours performed reliably, with better yields and less byproduct formation, which our technical reports document in detail on request.

    Traceability and Quality Assurance

    Traceability underpins all our production runs. Each batch number is linked to a full manufacturing history, including operator signatures, raw material lot codes, and environmental log sheets. Our compliance team routinely reviews logs, verifying that steps such as pH adjustment, filtration, and crystallization finished to spec. Having seen projects upended by a single out-of-specification step, we designed our workflow to allow for rapid intervention — not only after-the-fact reporting. We work closely with clients developing APIs or synthetic intermediates governed by tight regulatory controls. They prefer direct manufacturer access, and we take that responsibility seriously since any delay or recall has cascading effects across research timelines.

    Handling and Safety Observations from the Workshop

    On the practical side, Adamantane-1-Carboxamidine Hydrochloride demonstrates stable shelf-life when handled in low-humidity environments. Direct observation in our packaging area points to caking as an avoidable nuisance if moisture creeps in, so we invest in triple-layered, foil-sealed packaging solutions. Standard PPE suffices during scale-up, but we’ve gone beyond basic measures, installing particulate capture hoods based on the feedback of workers who noticed mild irritation during cleanouts with competitor variants. Real-world measures like these go further than any generic data sheet can.

    Applications Revolving Around Functionality

    Beyond research labs, Adamantane-1-Carboxamidine Hydrochloride’s practical value emerges in several fields. In medicinal chemistry, it acts as a precursor in the synthesis of adamantane-based antivirals or Alzheimer’s therapeutic leads. Custom peptide synthesis protocols sometimes integrate the amidine as a protective group. Its application as a linker or stabilizing moiety translates well to polymer modification, where rigidity and chemical persistence drive demand. Feedback from clients in biotech has led us to offer tighter particle size controls; for surface-modified nanoparticles, consistency in morphology makes a real difference in reproducibility and performance. Routine client feedback surveys spotlight how our approach to process optimization shapes the practical utility of the compound in large, multidisciplinary projects.

    Batch Size Flexibility: Small Runs to Scale-Up

    Our manufacturing process supports a range of batch sizes. Academic researchers typically require gram-scale quantities, while specialty pharma clients expect kilogram-scale deliveries with matching analytical documentation. Managing production queuing and raw material procurement balances these needs, especially during tight market conditions or supply chain interruptions. Hands-on management has shown us that flexibility in batch size, expedited processing, and rapid documentation add true value for seasoned buyers. We maintain stocks for rapid dispatch and accommodate made-to-order runs, minimizing interruptions to clients’ experimental plans.

    Addressing Real-World Manufacturing Challenges

    Manufacturing this compound comes with lessons in problem-solving and adaptation. Early on, we noted issues with residual precursor carryover in crystallization washes. We invested in pilot-scale jacketed reactors and temperature control units to sharpen selectivity at crystallization, reducing bounce-back impurities below accepted thresholds. Problems like long filtration times, batch-to-batch color variability, or persistent foaming drove process refinements, not abstract optimization. Input from experienced process technicians guides upgrades much more than consultant reports.

    Environmental Responsibility in Action

    Environmental management forms a real part of producing Adamantane-1-Carboxamidine Hydrochloride on scale. Waste stream analysis, solvent recovery rates, and direct comparison of batch yields highlight areas for environmental improvement. Years of solvent-saving initiatives showed us that using low-odor, recyclable solvents both lowered risk for operators and trimmed disposal costs. We run regular batch audits to identify high-loss points so we can adjust protocols and minimize waste generation. Clients who prioritize green chemistry often ask for details on our waste streams and recycling efforts, not just process yields — and we welcome the scrutiny, because it keeps us both accountable and innovative.

    Collaborative Development and Continuous Feedback

    Direct conversations with research and industry partners have led us to several formulation and process improvements. For example, a peptide chemistry group reported better crystallization results using an adjusted solvent blend. We performed in-house trials, presented data back, and now use the updated blend as an option for research-scale orders. Shared learning drives most of our technical troubleshooting. Fielding specific application questions sharpens our own technical expertise, leading back to continual process upgrades and, over time, better product performance. Our open-door philosophy invites ongoing feedback, so we act quickly if clients need special material grades or no-salt-added options.

    Physical Handling and Storage Realities

    Long-term storage studies conducted in our own facility’s climate-controlled environment revealed that Adamantane-1-Carboxamidine Hydrochloride tolerates moderate periods at room temperature, but extended exposure to high humidity risks spontaneous hydration and clumping. Our packaging line incorporates desiccant pouches and heat seals as a direct result of real shipment challenges — particularly during monsoon seasons in export markets. Clients no longer deal with blocks of unusable solid or the inconvenience of unexpected drying steps after shipping.

    Accountability and Transparency

    By manufacturing in-house, we control the entire process, from incoming raw material verification to batch release. Our QC chemists log every result for retention sample comparison, and we routinely open our facilities to customer audits. Having met with procurement teams and process engineers onsite, we have seen firsthand that trust builds through direct access to our production lines and records. This transparency means discrepancies get addressed as soon as they arise rather than after months of post-shipment emails or returns. Our direct involvement, without intermediaries, means fewer communication barriers and faster resolution.

    Looking Towards Future Applications

    Interest in Adamantane-1-Carboxamidine Hydrochloride keeps expanding. We stay close to ongoing trends in antiviral research and advanced material design. Upcoming projects involve working with university groups modeling new enzyme inhibitors and startup polymer companies seeking rigid, chemically resistant cross-links. Trialing new synthetic protocols for these collaborators broadens our process versatility, helping both established and emerging clients meet novel challenges without reinventing supplier relationships every research cycle. Each application cycle feeds us more practical information, fueling iterative improvements both in product and process.

    Why Direct Manufacturing Matters

    Being the actual manufacturer, not just a repackager or broker, gives us unique insight and flexibility. We see the entire production life cycle, anticipate bottlenecks, and react to custom requests in real time. From selecting high-grade starting materials to optimizing drying and packaging, every hands-on step shows up in batch quality and supply dependability. Repeat buyers often remark that direct line-of-sight to our technical staff saves them frustration and confusion during complex projects.

    Product Differentiation Rooted in Experience

    Competing compounds may share a functional group or molecular weight, but subtle differences in crystallinity, moisture retention, and impurity profile change user experiences. Our longstanding presence in the market gives us direct user feedback on what matters most: ease of handling, solubility behavior, and consistency of yield. Biopharma clients focus on bioactive impurity thresholds, while polymer clients watch for trace colorants or off-odors. Every improvement we make comes from specific technical requests or troubleshooting investigations, not simply generic enhancements. This feedback loop shapes both how we make the product and how we present it, building a practical bridge between manufacturing and real research.

    Commitment Beyond Shipment

    Keeping our operation running smoothly requires anticipating client needs; it’s not just about shipping a drum out the door. We track upcoming orders and forecast demand swings. Custom batch documentation, extended COA fields, and periodic technical check-ins all flow from this approach. As manufacturers, we learn fast that experience on the ground trumps sales pitch claims. The next time a lab project depends on high-purity Adamantane-1-Carboxamidine Hydrochloride, we’ll be ready with the reliability and practical know-how that comes with direct, first-hand manufacturing expertise.