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1-Aminoindan

    • Product Name 1-Aminoindan
    • Alias 2,3-Dihydro-1H-inden-1-amine
    • Einecs 212-199-3
    • 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

    838275

    Chemical Name 1-Aminoindan
    Cas Number 334-13-2
    Molecular Formula C9H11N
    Molecular Weight 133.19 g/mol
    Appearance White to off-white solid
    Melting Point 95-97 °C
    Boiling Point 229-230 °C
    Density 1.075 g/cm³
    Solubility Soluble in water and organic solvents
    Iupac Name 2,3-dihydro-1H-inden-1-amine
    Smiles NC1CC2=CC=CC=C2C1
    Purity Typically ≥98%
    Storage Conditions Store at 2-8 °C

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

    Packing & Storage
    Packing 1-Aminoindan, 25g, is packaged in a sealed amber glass bottle with a tamper-evident cap and chemical safety labeling.
    Shipping 1-Aminoindan is shipped in tightly sealed, chemical-resistant containers to prevent leaks and contamination. It is classified as a hazardous material and must be labeled accordingly. Transport is typically conducted under regulated conditions, avoiding extreme temperatures, sparks, or open flames. Handling should comply with local, national, and international chemical shipping regulations.
    Storage 1-Aminoindan should be stored in a tightly sealed container, away from moisture and incompatible substances, such as strong oxidizers and acids. Keep it in a cool, dry, well-ventilated area, protected from direct sunlight and sources of ignition. Ensure storage facilities comply with local regulations for hazardous chemicals, and label the container clearly to prevent accidental misuse.
    Application of 1-Aminoindan

    Applications of 1-Aminoindan in Industrial Manufacturing

    1-Aminoindan plays a key role in the synthesis of complex organic compounds for fine chemical, pharmaceutical, and specialty performance material sectors. As a dedicated producer, we support advanced manufacturing that demands high-purity intermediates and stringent compliance in every downstream scenario.

    1. Pharmaceutical Intermediates for CNS Active Agents

    Major pharmaceutical manufacturers incorporate 1-Aminoindan as a core intermediate during the synthesis of central nervous system (CNS) active agents, particularly monoamine oxidase B inhibitors for Parkinson’s disease medications. Production relies on precise molar ratios during the reductive amination stage, followed by downstream coupling and purification. Integration with GMP-compliant environments ensures batch traceability and analytical verification at each step.

    Industry compliance standards

    • ICH Q7 GMP for Active Pharmaceutical Ingredients
    • European Pharmacopoeia 11.0 monographs
    • US FDA 21 CFR Part 210/211
    • WHO Good Manufacturing Practices (API)

    Typical usage ratio

    • 0.8 – 1.2 molar equivalents per target API molecule, adjusted for reaction yield and side-product formation

    Downstream process integration

    • Enters API synthesis during initial ring-functionalization step, followed by acylation or N-alkylation, and continues via reactor charging systems to purification columns

    Final product types

    • Selegiline hydrochloride
    • Rasagiline mesylate
    • Other indan-based CNS active pharmaceutical ingredients

    2. Intermediate for Specialty Agrochemical Synthesis

    Agrochemical formulators use 1-Aminoindan for the construction of precursor building blocks in the synthesis of certain herbicide and pest control actives. The amine group allows for downstream derivatization by amide or carbamate coupling in closed reaction vessels equipped for solvent recovery, with strict raw material trace management to mitigate contamination risks in large-scale multi-step processes.

    Industry compliance standards

    • ISO 9001:2015 Quality Management in Chemical Production
    • REACH Regulation (EC) No 1907/2006 Substance Registration
    • EU Directive 2009/128/EC Integrated Pest Management Requirements
    • China GB 4839-2006 for Pesticide Technical Material

    Typical usage ratio

    • 2–10% by mass in precursor formation, optimized based on target structure and downstream step conversion rates

    Downstream process integration

    • Loaded at the initial step of aromatic amination, reacts under controlled temperature and base conditions, followed by in situ acylation or cyclization downstream

    Final product types

    • Heterocyclic herbicide intermediates
    • Insecticide precursor scaffolds
    • Technical-grade crop protection actives containing indan motifs

    3. Advanced Polymer Additive Precursors

    Performance materials manufacturers employ 1-Aminoindan in the synthesis of functional additives for engineering plastics and specialty thermosets. Its rigid aromatic structure contributes to improved mechanical and thermal properties in formulated resins. Incorporation occurs as part of custom monomer blends during polycondensation or copolymerization, with strict vendor documentation and batch segregation practiced to support quality management and compliance audits.

    Industry compliance standards

    • ISO 14001 Environmental Management for Polymer Plants
    • UL 94 Flammability Test for Plastics
    • RoHS Directive 2011/65/EU for Restricted Substances
    • EN 10204 Type 3.1 Material Certification

    Typical usage ratio

    • 0.2–1.5% by weight relative to base polymer, adjustable depending on additive property target (e.g., rigidity or flame resistance)

    Downstream process integration

    • Charged in the monomer pre-mix for in situ polymerization, or added post-polymerization as a melt-phase additive followed by extrusion compounding

    Final product types

    • High-performance polyamides
    • Engineering thermoset resins
    • Impact-resistant polymer blends for electronics

    4. Synthesis of Fine Fragrance and Aroma Intermediates

    Fine chemical producers in the aroma chemicals sector utilize 1-Aminoindan as a critical starting material for synthesizing indanone and related aroma molecules. Reaction steps typically involve initial amination, ring oxidation, and controlled Friedel–Crafts modification in closed reactors, with attention to minimizing residual amine content that could impact final olfactory quality. Compliance with food-contact and allergen labeling rules is strictly enforced in process design and QA.

    Industry compliance standards

    • IFRA Code of Practice 51st Amendment
    • EU Regulation No 1334/2008 for Flavorings
    • US FDA 21 CFR Part 172.515 for Synthetic Flavoring Substances
    • GFSI Food Safety Management Certification

    Typical usage ratio

    • 5–25% by mass in the initial reaction toward aroma intermediate, modulated for desired final concentration and volatility

    Downstream process integration

    • Introduced at the initial charge of aroma intermediate synthesis, progresses through multi-stage distillation and crystallization before blending into fragrance bases

    Final product types

    • Indanone-based aroma chemicals
    • Fine fragrance ingredient concentrates
    • Blended perfume bases with modified indan derivatives

    5. Chiral Catalyst Ligand Manufacturing

    Specialty catalyst manufacturers leverage the unique cyclic structure of 1-Aminoindan for fabricating chiral ligands and transition metal complex catalysts. These intermediates enhance enantioselectivity in asymmetric hydrogenation and related synthetic transformations. Use involves customized multi-step derivatization, with in-process QC and process validation spanning each hydrocarbon functionalization step, conforming to international catalyst purity standards.

    Industry compliance standards

    • ISO 9001:2015 Quality Management for Specialty Catalyst Production
    • Toyota/JCI Joint Standards for Process Catalysts
    • REACH pre-registration for metal-organic compounds
    • IUPAC Guidelines for Catalyst Purity and Trace Contaminants

    Typical usage ratio

    • 0.1–10 mol% relative to total ligand structure, tailored according to final catalyst turnover and selectivity requirements

    Downstream process integration

    • Engaged at core ligand coupling phases during multi-step ligand assembly, prior to complexation with precious metal salts in inert atmosphere reactors

    Final product types

    • Chiral phosphine or diamine ligands
    • Transition metal catalysts for asymmetric synthesis
    • Custom catalyst systems for specialty fine chemical production
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    Competitive 1-Aminoindan prices that fit your budget—flexible terms and customized quotes for every order.

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    Certification & Compliance
    More Introduction

    1-Aminoindan: A Closer Look From the Manufacturer’s Perspective

    What Stands Behind Our 1-Aminoindan

    Years of experience in chemical manufacturing turn even the most unassuming compounds into familiar neighbors. That’s certainly the case with 1-Aminoindan. Produced directly in our facilities, this compound keeps finding its way into both research labs and industrial processes, especially those striving for reliability and consistency batch after batch. As manufacturers, we’ve handled enough amines to appreciate the unique properties of each, and 1-Aminoindan has earned a dedicated place on our production line for good reason.

    Refining Our Process, Ensuring Consistency

    We take a practical approach. Every batch of 1-Aminoindan starts with sourcing high-quality raw materials — no shortcuts, no cost-driven substitutions. Reliable suppliers, rigidly checked, allow us to avoid questionable intermediates. Each lot runs through a carefully controlled synthesis pathway, not just following a generic route but optimizing every step through years of process refinements. We prefer a stepwise approach, drawing on catalytic hydrogenation under tightly monitored pressure and temperature, never leaving details to chance. Purification is just as important as synthesis. Through repeated crystallization and distillation, we filter out byproducts and unwanted residues, aiming for a purity that leaves no guesswork for our customers.

    Our facility’s equipment — built for routine testing and what-if scenarios — allows us to check for both chemical and chiral purity on every outgoing shipment. Chromatography, NMR, and mass spectrometry give us a detailed fingerprint on every batch. Consistent melting point, specific optical rotation (when needed for custom orders), and targeted impurity profiles matter in both bench research and plant-scale operations.

    Key Specifications That Define Our Material

    Over the years, we’ve learned that customers value reliability in their inputs. 1-Aminoindan, in its common form, appears as a white crystalline powder or colorless solid. Our standard model routinely reaches a purity of 98% or greater, as verified by HPLC. For particularly demanding applications, orders of 99% purity are available, though we are honest about practical and cost implications between grades. We don’t just quote values; each delivery includes real batch data and complete analytical reports.

    We supply 1-Aminoindan under the CAS number 334-13-2 (C9H11N), and all handling is performed in compliance with the requirements of our in-house quality program, aligned with industry-recognized chemical manufacturing standards. The product is shelf-stable in sealed containers under cool, dry storage — not by theoretical assumption but by testing over extended storage intervals.

    Particle size can influence downstream dispersion, so we address that openly with customers. Standard packing delivers free-flowing powder, but for specific needs, such as custom blends or special forms, we adjust granulometry and package to minimize lumping or caking. Packaging, from small R&D bottles to bulk industrial drums, is selected to prevent contamination and ensure minimal loss in transit, guided by real-world logistics challenges in shipping sensitive amines.

    Why Users Turn to 1-Aminoindan

    The honest value of 1-Aminoindan comes from its versatility in the chemical world. Researchers and process engineers return to this compound for its performance as a building block in organic synthesis, notably in pharmaceutical, dye, and polymer chemistry. For certain central nervous system research projects, it has served as a reference structure, especially where selectivity for cycloalkylamines matters. Its rigid indane framework, paired with an accessible amino group, sets it apart from more common aliphatic amines, opening selective reaction pathways that simpler amines cannot match.

    We see orders from medicinal chemistry labs testing new CNS-active compounds. Polymer labs rely on its indane core for backbone modifications and specialty monomer syntheses. In dye chemistry, the reactivity of the amino group presents possibilities unreachable with more linear substitutes.

    Curiosity often brings new users to 1-Aminoindan, but ongoing demand grows from results: clean reactions, manageable handling, and reproducible output. The compound’s moderate melting point means lab staff can weigh and dissolve it without excessive fuss or the need for cumbersome cryogens. Low hygroscopicity keeps stored product from turning gummy or sticky in normal atmospheric conditions—a seemingly small advantage that can save hours of frustration in day-to-day operations.

    The Differences: What Sets It Apart From Other Amines

    Manufacturing lets us compare 1-Aminoindan head-to-head with many amines. It stands out in our plant for several reasons. The indane skeleton means heightened rigidity, so it resists some degradative reactions that plague more flexible cyclohexylamines or benzylamines. That’s a welcome property in scale-up, where thermal stability translates to fewer decomposition headaches.

    Chemically, 1-Aminoindan’s aromatic system fused to a five-membered ring creates reactivity patterns impossible for open-chain or monocyclic amines. In electrophilic substitution, for example, regioselectivity is not just academic but gives product streams that need less post-reaction purification. That adds up in pilot plant settings, saving not just time but waste disposal costs. In hydrogenation, the core structure is more resistant to over-reduction, which is particularly valuable for controlled syntheses.

    Physical properties set this compound apart from simple analogs, too. Lower volatility means less evaporative loss, an important detail for closed-system batch reactors. Handling is smoother; staff don’t face the same strong odors often associated with aliphatic or cyclic amines such as cyclohexylamine or aniline. Less irritating fumes lead to safer and more pleasant work environments, an advantage not captured on a specification sheet but noticed on the factory floor.

    Real-World Challenges We’ve Solved

    Shipping 1-Aminoindan across continents has taught us several lessons about product integrity and regulatory compliance. We worked to secure packaging that withstands jostling in transit and temperature variations — plastic-lined steel drums for tonne-scale cargo, amber-glass vials for light-sensitive lab orders. For air shipments, UN-certified containers and compliant labeling reduce holdups at customs, a frequent source of delay in specialty chemicals.

    Years ago, we encountered issues with trace residual solvents from upstream reactions. Customers in pharmaceutical synthesis needed these contaminants minimized well below common industry thresholds. We changed our purification procedure, extending vacuum drying and introducing tighter solvent recovery. Analytical retesting showed residuals under 50 ppm in the finished compound, a benchmark now built into our batch release protocol. These improvements answered real user concerns, not just imposed regulatory guidance.

    Process engineers raised concerns about solid lumps on arrival after extended sea storage. We traced the issue to a subtle fluctuation in storage temperatures and tweaked the crystalline drying and humidity controls in our final packaging area. Our approach focuses on issue resolution, then batch-scale adoption of the fix—never waiting for a complaint to standardize a solution.

    Safety Management on the Production Floor

    Handling amines in any facility demands vigilance, and 1-Aminoindan is no exception. We rely on a full safety data sheet (SDS), not just to meet regulatory formality. We train our staff to work with proper personal protective equipment and maintain well-ventilated workstations. This compound has a moderate risk profile in terms of toxicity and reactivity; spills are rare, but procedures stand ready for immediate cleanup and containment.

    Production staff are trained to respond to off-spec odors or colorations — these cues sometimes foreshadow batch contamination, equipment leaks, or raw material inconsistencies. Our monitoring programs look for even weak signals before they escalate into operational problems. Continuous feedback loops from staff keep our standards from slipping and help us address emerging safety issues before they leave the production area.

    Environmental Responsibility at the Source

    As years of manufacturing stack up, so does the weight of ecological responsibility. We have invested in closed-loop solvent recovery to reduce the need for fresh input chemicals. Our distillation residues get monitored, neutralized, and disposed through certified channels. Local environmental legislation goes beyond the letter of the law—neighboring communities ask fair questions about emissions and effluents, and we answer with certified test results and open plant visits. Wastewater associated with 1-Aminoindan production passes through multiple treatment steps, monitored in real-time for regulated analytes and capped at strict discharge limits.

    Our position as the original manufacturer allows direct control over these issues. We don’t pass responsibility down a supply chain. Instead, we track every input and output stream with audits performed several times a year and internal reviews after each process change.

    Feedback and Collaboration With End Users

    Ever since our earliest runs of 1-Aminoindan, customer feedback has driven tangible improvements. We hear directly from the chemists who use our product to produce novel pharmaceuticals, advanced plastics, and molecular probes. Feedback about off-flavors, unexpected melting, or purity failures prompt an open dialogue—sometimes even joint lab work to discover the root cause. On two occasions, this collaboration led to changes in crystal morphology, allowing easier downstream handling on the client’s automated feeding equipment. For one long-term partner, we adjusted bulk delivery to a nitrogen-purged format, removing the chance for micro-oxidation during extended storage.

    We don’t just listen; we act on recurring requests for different purity grades and specialized labeling, consistently updating packaging and documentation to meet those requirements. The benefit of direct communication is full transparency from the original producer—no layer of third-party translation, no surprises in compliance documentation.

    Market Dynamics Involving 1-Aminoindan

    As direct manufacturers, we witness changes in demand from year to year. Pharmaceutical research can drive peaks of buying activity, especially during new drug development cycles. Other stable, ongoing demands come from polymers and fine chemicals, where our clients appreciate a supply that remains unaffected by speculation or erratic reselling. This stability gives us room to invest in better synthetic routes, process automation, and larger-scale batch production, which in turn keeps prices predictable for our long-term partners.

    Patents and shifts in regulatory controls have ripple effects. We monitor these changes ourselves, adjusting processes and documentation to stay compliant in every jurisdiction where our product travels. Recently enacted controls on certain aromatic amines prompted a thorough review. Our full in-house traceability allowed rapid updates on declarations, while all relevant shipping documents and Certificates of Analysis traveled with each order.

    How We Address Regulatory and Compliance Risks

    Direct responsibility means no excuses for compliance shortfalls. We maintain complete regulatory dossiers on 1-Aminoindan, submitting notifications and substance registrations where necessary. Our in-house compliance staff keep close contact with shipping authorities, chemical regulators, and local safety agencies. This approach allows us to move quickly if new restrictions arise, keeping our customers informed and our product flow uninterrupted.

    We update our safety and purity documentation every time a new analytical result arrives, and we circulate these data to our users. Regulatory audits become straightforward because our records reflect exactly what our batches deliver—not theoretical numbers or wishful thinking. This hands-on involvement in every aspect of compliance reduces risk for everyone who relies on us as a partner.

    Building Toward the Future

    Continuous improvement isn’t simply a slogan—it’s our reality as a manufacturer. Every run of 1-Aminoindan brings a chance to compare notes, test tweaks in process temperature, explore new catalysts, and check if a different drying time could sharpen purity or speed turnarounds. Recent investments in reactor monitoring and automated sampling systems allow for quicker detection of variation, transforming small corrections into big long-term gains.

    As new applications for 1-Aminoindan emerge, we work in step with developers and innovators, making sure our synthesis keeps pace with novel requirements. Whether a client is pushing for higher chiral purity or a novel crystal habit, we are set up to transition from small pilot lots to routine bulk-scale production. Our technical staff treat each special request as a challenge, not a burden, providing insight from both analytical and practical angles.

    Digitalization of batch records, ongoing investments in laboratory infrastructure, and newer purification technology keep us ahead of both market demands and regulatory oversight. All these efforts combine to support the most important point: the user can rely on every batch, no matter where it's headed or how it's used.

    Final Thoughts — Speaking Directly to Our Partners

    As the true source and stewards of 1-Aminoindan, we know the substance inside and out. We stand behind every lot shipped, aware that upstream vigilance transforms into downstream trust. Our role is not only to supply, but also to respond and refine, giving each partner a product free of guesswork. Every improvement we make—in process, purity, packaging, or support—grows out of the dialogue we share with those who count on us.

    1-Aminoindan finds success in application not because of a market trend or a sales pitch, but because experience at the source has shaped a product fit for real-world chemistry. That reality means predictable results and the kind of partnership built to last—qualities that count for far more than numbers on a technical sheet.