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HS Code |
408215 |
| Product Name | 6-Aminoindazole |
| Chemical Formula | C7H7N3 |
| Molecular Weight | 133.15 g/mol |
| Cas Number | 2835-68-9 |
| Appearance | Light yellow to beige powder |
| Melting Point | 193-197°C |
| Purity | Typically ≥98% |
| Solubility | Slightly soluble in water, soluble in DMSO and methanol |
| Synonyms | 6-Amino-1H-indazole |
| Storage Conditions | Store at room temperature, protected from light and moisture |
| Smiles | c1cc2c(cc1)n[nH]c2N |
| Inchi | InChI=1S/C7H7N3/c8-6-3-1-2-5-4-9-10-7(5)6/h1-4H,8H2,(H,9,10) |
| Hazard Statements | May cause skin and eye irritation |
As an accredited 6-Aminoindazole factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | A 25g quantity of 6-Aminoindazole is sealed in an amber glass bottle, labeled with hazard warnings, product name, and CAS number. |
| Shipping | 6-Aminoindazole is shipped in compliance with all relevant chemical transport regulations. It is securely packaged in sealed containers to prevent leaks, contamination, or exposure. The package is clearly labeled with hazard and handling information. Shipping is carried out via certified carriers, ensuring fast, tracked, and safe delivery to authorized destinations. |
| Storage | 6-Aminoindazole should be stored in a tightly sealed container, in a cool, dry, and well-ventilated area, away from sources of ignition, moisture, and incompatible substances such as strong oxidizing agents. Protect from direct sunlight. The storage temperature is typically recommended at room temperature, between 2-8°C. Ensure appropriate labeling and follow all relevant chemical safety protocols during storage and handling. |
Applications of 6-Aminoindazole in Industrial Manufacturing6-Aminoindazole serves as a key chemical intermediate in several advanced manufacturing sectors. Our experienced technical and production teams support downstream partners by optimizing purity, particle size, and packaging according to each industrial application. The following sections outline real-world usage scenarios found in regulated industries, with specific downstream integration and compliance. 1. Pharmaceutical Active Ingredient SynthesisPharmaceutical manufacturers use 6-Aminoindazole to construct core heterocyclic scaffolds found in next-generation kinase inhibitors and anti-inflammatory agents. Researchers leverage its reactivity for selective substitution and step-growth reactions during active pharmaceutical ingredient (API) synthesis. Our facility delivers high-purity grades with narrow impurity profiles to support GMP batch production. Industry compliance standards
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2. Agrochemical Intermediate ManufacturingIndustrial agrochemical producers incorporate 6-Aminoindazole into the synthesis pathway for crop protection compounds, especially as a coupling component for novel herbicide actives featuring indazole rings. The material undergoes scale-up under controlled temperature and pH to ensure consistent product quality for high-volume synthesis campaigns. Industry compliance standards
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3. Dye and Pigment Synthesis for Specialty ColorantsIn speciality dye production, 6-Aminoindazole supports the targeted synthesis of azo and anthraquinone colorants for technical fibers, plastics, and coatings. Its amino group enables direct diazotization and coupling to yield high-stability chromophores with defined tint strengths and lightfastness, critical for automotive and industrial coatings. Industry compliance standards
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4. Building Blocks in High-Performance Polymer SynthesisAdvanced polymer manufacturers employ 6-Aminoindazole to introduce functional aromatic units into specialty resins and engineering plastics. Its presence in the polymer backbone improves glass transition temperature and chemical resistance, particularly in wire insulation, optoelectronic, and automotive under-the-hood components. Industry compliance standards
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Working daily in chemical synthesis, we know how important it is to offer molecular building blocks with reliability and consistency. 6-Aminoindazole, with the chemical formula C7H7N3, stands out as an indazole derivative that serves core needs across pharmaceutical research and specialty chemical development. Throughout decades of production, laboratories and manufacturers have come to trust its unique profile—a precise aromatic ring system with amine functionality at the 6-position, making it a highly focused intermediate.
Our experience tells us most chemists appreciate a product that meets real-world project demands, not just textbook purity numbers. 6-Aminoindazole’s crystalline structure and reliable handling characteristics allow it to fit into workflows seamlessly, whether used for scale-up or sensitive bench work. It's offered in typical batch sizes from grams to kilograms, tailored for demanding research and pilot production. We handle every lot in accordance with rigorous traceability protocols, keeping records on every stage from raw material sourcing to finished product assessment.
Our batches of 6-Aminoindazole come with commonly requested specifications—a minimum purity above 98%, moisture content below 0.5%, and consistent color profile. Customers often remark on the fine consistency, free-flowing nature, and odorless characteristics that help avoid unexpected variables. The controlled process we follow—high-temperature cyclization, tailored crystallization, thorough purification—ensures uniformity that saves time during subsequent reactions. Over the years, this consistent manufacturing has led to greater confidence in reproducibility and less troubleshooting for our partners.
Pharmaceutical developers constantly seek building blocks that promise selectivity and functional flexibility. 6-Aminoindazole has earned its place in this space through repeated use in the synthesis of kinase inhibitors, PET imaging agents, and various heterocyclic compounds. The amine at the 6-position opens new directions for introducing substituent groups, and the indazole core acts as a foundation for advanced structures found in current medicinal chemistry pipelines. Feedback from users points to a key feature: regiospecificity allows easier downstream modification—reducing steps and helping meet aggressive project timelines.
For agrochemical synthesis, 6-Aminoindazole’s electron-rich scaffold gives access to selective agents once considered difficult to construct. Producers in this field leverage the molecule’s robustness to engineer target-active panels, exploiting features of the aromatic system that integrate well with other nitrogen donors or electron acceptors. This adaptability means practitioners can realize higher yields and improved selectivity, ultimately shortening discovery cycles.
Years spent running and monitoring indazole production lines have given us a deep understanding of the subtle but crucial differences between isomers and analogues. Not all aminoindazoles react the same—minor changes in amine position or ring structure alter bioactivity, solubility, and compatibility. 6-Aminoindazole distinguishes itself from its close cousin 5-Aminoindazole by offering selective reaction paths and more favorable coupling possibilities. Teams working in kinase inhibitor design or macrocycle construction appreciate the 6-amino isomer for its cleaner profiles in typical amide or urea formations.
Processing engineers frequently compare 6-Aminoindazole to simpler aromatic amines like aniline or 2-aminopyridine. Our experience tells us those agents might offer more abundant supply or lower cost, but they rarely match the reactivity pattern or structural complexity that 6-Aminoindazole brings to the table. It acts as a privileged scaffold for regulatory-friendly modifications, aiding novel API projects, and providing room for IP generation.
For formulation chemists, solubility and compatibility issues can stall a project. Unlike some less soluble indazoles or aminopyridines, 6-Aminoindazole offers robust performance in polar aprotic solvents such as DMF or DMSO, and sufficient manageability in typical coupling or cyclization protocols. Its stability under standard storage—dry, ambient, away from light—means users don’t wrestle with degradation concerns common to more labile substituted aromatics.
Manufacturing transparent, reproducible batches of 6-Aminoindazole involves more than just synthetic chemistry. Years of refining process control mean we work with validated monitoring—including chromatography, melting point analysis, and elemental tests—to ensure every shipment matches previous performance. Working with customers on method transfer, we understand that a stable supply chain trumps theoretical capacity. That’s why we maintain reserves of both precursor indazoles and specialty reagents, giving us room to ramp up or pivot to custom grades without lengthy delays.
We have faced and solved the bottlenecks that arise from scale. Thermal control in cyclization steps, safe handling of high-energy intermediates, and containment protocols for particulate emissions all enter into our calculation when designing scalable processes. Insights from multi-kg runs teach us about solvent management, waste minimization, and maintaining uniform color and particle size distribution. By keeping a hands-on approach, we minimize lot-to-lot variation—not just for analytical parameters, but for qualities researchers notice in daily handling.
Our clients often tell us that success in a synthetic sequence begins with raw materials free of pesky side products and reactive impurities. 6-Aminoindazole finished through our purification trains displays high purity, with NMR and HPLC profiles that verify the absence of related indazole byproducts. In feedback sessions, process chemists have shared how low moisture content and a single-batch approach reduce inconsistencies during downstream acylation or cross-coupling steps.
We choose packaging that balances protection with ease of use—amber glass bottles for laboratory scale, lined HDPE drums for developments moving toward pilot or commercial scale. Every container includes tamper-evident seals and moisture absorbers where necessary. We label and ship in compliance with all applicable transport standards, monitoring for temperature spikes and humidity excursions that might affect sensitive stocks. Product recall or complaint rates remain low, thanks to both quality and transparency; in rare events, our trace logs enable rapid investigation.
Direct interaction with regulatory teams and global compliance officers has shaped how we document and certify our 6-Aminoindazole. We maintain validation protocols traceable back to raw materials, including spectral tracing for batch records and full lot-release analytical documentation. For customers moving toward preclinical and clinical development, we’ve responded by keeping impurities within strict ICH guidelines, enabling smoother regulatory filings. Documentation packs—including certification on residual solvents and heavy metals—are prepared upon request.
With jurisdictions such as the United States and European Union tightening controls on starting material origins and impurity limits, our direct-from-manufacturer approach offers peace of mind. Compliance audits and customer visits have confirmed alignment with Good Manufacturing Practice (GMP) standards where applicable, though 6-Aminoindazole often falls under research chemical frameworks at initial project stages.
Large commercial projects sometimes need more than off-the-shelf molecules. Our history in synthetic process development allows us to accommodate requests for custom particle size, alternative salt forms, or modified impurity profiles. When teams approach us with unique requirements for solvent passivation, packaging adjustments, or even special labeling (hazard panels, barcodes, QR coding), our on-site technical staff supports the transition from pilot to production.
By operating from a position of hands-on manufacturing, not as an intermediary, we’re able to integrate customer testing data and respond to feedback in real time. Open communication channels between our synthesis managers and external R&D teams mean project setbacks tied to starting material variation get solved quickly. It’s a feedback loop that improves both process design and finished product reliability in the long run.
We listen to partners facing routine headaches—failed couplings, unwanted colored impurities, or unmanageable hygroscopicity. By controlling nitrogen sources and carefully selecting crystallization solvents, we address root causes at the production level, rather than passing the buck. Adjustments we’ve made in our own practice frequently spring from open-door dialogue: for example, refining quenching protocols to boost final product purity, or investing in upgraded environmental controls to limit trace contaminants.
As industry trends push for molecules with higher selectivity and faster routes to lead compounds, our product improvement efforts run in parallel. We use statistical process control data and weekly lot trending to find and tackle sources of variation before they become end-user problems. Whenever new analytical standards appear—updated detection limits for trace metals or extractables, for instance—we incorporate those into our routine release criteria. These efforts make sure the 6-Aminoindazole our customers receive can stand up to current demands, not just historical norms.
Modern chemical manufacturing shares a burden: cutting environmental impact while delivering high-value intermediates that keep research moving. Our experience with 6-Aminoindazole production has led us to adopt closed-loop solvent recovery where feasible, reducing both emissions and cost. Early-stage green chemistry initiatives—using water or low-toxicity solvents as possible, and minimizing hazardous waste—are a regular part of project meetings and batch planning. Waste disposal partners are audited for compliance, and energy consumption across reactors and analytical units is kept under review.
Colleagues and visiting partners often ask about lifecycle analysis and potential for greater sustainability. While 6-Aminoindazole itself remains a specialty product not yet sourced in biogenic pathways, we continue investigating cleaner synthesis steps and possible use of renewable inputs. Regulatory frameworks already drive much of this improvement, yet internal benchmarking and willingness to invest in process optimization push us further. It’s a stepwise journey, but the focus on sustainability remains present in each production run.
Supplying 6-Aminoindazole to a range of research-driven clients has sharpened our understanding that value stems from day-to-day reliability, candid advice, and products that do what they promise. Whether a new customer or a long-term collaborator, feedback shapes each manufacturing decision and leads to products that reflect genuine lab and industrial demands. Our process improvements and support reflect hard lessons learned on the production floor—and deliver the assurance that comes from hands-on, transparent manufacturing, not distant procurement.
6-Aminoindazole continues to earn its place as a cornerstone intermediate in heterocyclic chemistry. Guided by years of practical synthesis and customer collaboration, we believe that offering targeted specifications, consistent quality, and true technical partnership makes a difference for every project. As processes and requirements evolve, so do our methods—making each batch more than a mere commodity, but a well-supported tool built on open feedback and trusted expertise.