Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing admin@sinochem-nanjing.com 3389378665@qq.com
Follow us:

5-(Aminomethyl)-2,3-Dihydrobenzo[B]Furan

    • Product Name 5-(Aminomethyl)-2,3-Dihydrobenzo[B]Furan
    • Alias 5-(Aminomethyl)-2,3-dihydro-1-benzofuran
    • Einecs 629-461-2
    • 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

    467411

    Chemical Name 5-(Aminomethyl)-2,3-Dihydrobenzo[B]Furan
    Molecular Formula C9H11NO
    Molecular Weight 149.19 g/mol
    Cas Number 147677-45-8
    Appearance White to off-white solid
    Melting Point 58-62°C
    Solubility Soluble in polar organic solvents
    Purity Typically ≥98% (check supplier)
    Smiles NCc1ccc2OCCCc2c1
    Inchi InChI=1S/C9H11NO/c10-6-7-1-2-8-3-4-11-5-9(8)7/h1-2,5-6,10H,3-4H2
    Storage Temperature Store at room temperature, dry conditions
    Synonyms 5-(Aminomethyl)-2,3-dihydro-1-benzofuran

    As an accredited 5-(Aminomethyl)-2,3-Dihydrobenzo[B]Furan factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Amber glass bottle containing 10 grams, sealed with a screw cap, labeled with chemical name, purity, CAS number, and hazard information.
    Shipping 5-(Aminomethyl)-2,3-Dihydrobenzo[B]furan is shipped in tightly sealed containers, protected from moisture and direct sunlight. The package complies with applicable chemical shipping regulations, ensuring safe handling and transport. Labeling includes hazard identification and safety instructions. Shipping is typically via ground or air, based on the destination and required regulatory documentation.
    Storage 5-(Aminomethyl)-2,3-dihydrobenzo[b]furan should be stored in a tightly sealed container, protected from light and moisture. Keep at a cool, dry, and well-ventilated location, ideally at 2–8°C (refrigerated). Avoid storing near incompatible substances such as strong oxidizers or acids. Ensure proper labeling and restrict access to trained personnel only. Handle using personal protective equipment (PPE).
    Application of 5-(Aminomethyl)-2,3-Dihydrobenzo[B]Furan

    Applications of 5-(Aminomethyl)-2,3-Dihydrobenzo[B]Furan in Industrial Manufacturing

    As a direct manufacturer, we supply 5-(Aminomethyl)-2,3-dihydrobenzo[b]furan for specialized industrial customers. This intermediate supports critical operations in multiple sectors, including pharmaceutical synthesis, agrochemical active manufacture, advanced polymer R&D, and specialty dye formulations. Each application below reflects real-world demand and precise integration parameters from our downstream partners.

    1. Pharmaceutical Intermediates – Central Nervous System (CNS) Drug Synthesis

    Our material serves as a building block for small molecule synthesis targeting central nervous system disorders. Medicinal chemistry teams use the aminomethyl-fused benzofuran group to introduce key pharmacophores during late-stage active pharmaceutical ingredient manufacture, especially for drugs involving monoamine targeting or heterocyclic frameworks.

    Industry compliance standards

    • ICH Q7 GMP for Active Pharmaceutical Ingredients
    • United States Pharmacopeia (USP) standards
    • European Pharmacopoeia (Ph. Eur.) requirements
    • 21 CFR Part 210/211 (FDA cGMP)

    Typical usage ratio

    • 0.20-0.85 molar equivalents as a key reactant per batch with adjustment for step yield optimization.

    Downstream process integration

    • Used in second or third-generation synthetic steps following condensation or alkylation. Incorporated following purification of initial intermediates. Reacts through reductive amination, cyclization, or amidation operations as specified in synthetic route.

    Final product types

    • Antidepressants with benzofuran backbone
    • Anti-anxiety APIs
    • Cognitive enhancer clinical candidates
    • Key CNS active pharmaceutical ingredients (APIs)

    2. Agrochemical Active Ingredients – Heterocyclic Herbicide Synthesis

    Producers of specialized herbicide actives employ our raw material to introduce aminomethyl functionalization in benzofuran-based scaffolds. This enables selective inhibition mechanisms against weed-specific enzymes and broadens compound libraries for agrochemical discovery.

    Industry compliance standards

    • FAO/WHO Specifications for Agricultural Pesticides
    • EPA 40 CFR Part 158 (USA agrochemical data requirements)
    • REACH (Registration, Evaluation, Authorisation and Restriction of Chemicals – EU)
    • ISO 9001:2015 Quality Management in Agrochemicals

    Typical usage ratio

    • 0.10-0.30 w/w in active ingredient synthesis stages, with modification according to target activity spectra and by-product minimization checks.

    Downstream process integration

    • Fed during late-stage ring closure or functional group introduction in multi-step synthesis. Directly reacts with aldehydes or ketones under controlled temperatures and catalyst selection to yield core heterocyclic structures.

    Final product types

    • Post-emergent herbicides for cereal crops
    • Broadleaf weed control actives
    • Research-grade herbicide standards
    • Custom experimental agrochemical libraries

    3. Advanced Polymer Research – Functional Monomer Development

    Materials scientists utilize this compound in the synthesis of advanced benzofuran-based monomers. Its aminomethyl group enables precise cross-linking and customized modification, supporting R&D into electrically conductive polymers and tailored copolymer systems for electronics and membrane technologies.

    Industry compliance standards

    • ISO 9001:2015 Quality Management Systems
    • ASTM D883 (Standard Terminology Relating to Plastics)
    • EN 13480 (Industrial Piping – Material Requirements, Europe)
    • RoHS Directive (2011/65/EU, where relevant for electronics)

    Typical usage ratio

    • 2-8% by monomer content in copolymerization, adjusted by molecular weight targets, polymerization method, and end-use property goals.

    Downstream process integration

    • Introduced at the monomer mixture stage. Polymerized via free radical, condensation, or controlled/living polymerization methods. Functionalized through post-polymerization modification or block copolymer formation.

    Final product types

    • Electrically conductive films
    • Proton exchange membranes
    • Custom responsive hydrogels
    • Functional specialty plastics for sensors and flexible devices

    4. Specialty Dye and Pigment Manufacture – Benzofuran-Derived Chromophores

    Dye manufacturers select aminomethylbenzofuran intermediates to create high-stability chromophores for advanced textile, ink, and analytical dye segments. The unique fused ring allows tailored absorption properties and thermal resistance in both solution and solid-state products.

    Industry compliance standards

    • OEKO-TEX Standard 100 (textile dye safety)
    • EN 71-3 (Safety of Toys – Migration of Certain Elements, for dye standards)
    • ISO 787/2 (General methods of test for pigments and extenders)
    • REACH Annex XVII for dyes/pigments used in consumer products

    Typical usage ratio

    • 0.5-3.0 mol% per batch, subject to shade intensity, end-use substrate compatibility, and required photostability properties.

    Downstream process integration

    • Fed during chromophore ring formation, after diazotization or alkylation steps. Modified using sulfonation or halogenation depending on required pigment or dye performance. Incorporated before granulation or paste formulation for dispersion control.

    Final product types

    • High-fastness textile dyes
    • Solvent-resistant ink chromophores
    • Fluorescent analytical standards
    • Heat-stable pigment preparations
    Free Quote

    Competitive 5-(Aminomethyl)-2,3-Dihydrobenzo[B]Furan 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.

    We will respond to you as soon as possible.

    Tel: +8615371019725

    Email: admin@sinochem-nanjing.com

    Get Free Quote of Sinochem Nanjing Corporation

    Flexible payment, competitive price, premium service - Inquire now!

    Certification & Compliance
    More Introduction

    5-(Aminomethyl)-2,3-Dihydrobenzo[B]Furan: Trusted Experience in Fine Chemical Manufacturing

    Working hands-on with 5-(Aminomethyl)-2,3-dihydrobenzo[B]furan over years of in-house development brings a certain understanding of both the molecule and its place in synthesis. We see this chemical as a quiet powerhouse for research and process chemistry, and we invite customers into that perspective rooted in daily plant operation rather than catalog pages.

    Our In-House Expertise Shapes Consistent, Reliable Output

    Crafting this compound begins before a single glass vessel is set up. Our chemists consult on synthetic routes that control both the furan and aminomethyl moieties, drawing from plenty of experience managing exothermic reactions and purification bottlenecks. Instead of viewing production as a formulaic duty, we treat every batch as an opportunity to double-check integrity, which keeps our specifications tight from lot to lot.

    We use raw materials sourced after direct evaluation—not only for purity by certificate, but also for how trace impurities behave through our own routes. This sort of vigilance isn’t about ticking off a compliance box. It means we can dial in reproducible quality at the kilogram and larger scales, giving form to a clear pale powder or crystal, reliably dry, stable, and free from the off-odors or discolorations that flagged earlier runs in our learning curve.  

    Key Features: Chemist to Chemist

    Any bench chemist dealing with 5-(Aminomethyl)-2,3-dihydrobenzo[B]furan expects crisp identity and precision in every shipment. NMR and mass specs from our QC campaign confirm structure—there’s no mistaking the fingerprints of the aminomethyl group at the five position. We know the headaches that come from impure batches showing up mid-synthesis. That’s why we push for narrow melting ranges, low water and volatile content, and characteristically clean TLC/HPLC profiles.

    Handling and storage call for common lab practices—sealed containers, dry environments, and steady room temperature conditions suit it well. Many users comment on how our product resists clumping, thanks in part to careful control during final drying. It dissolves smoothly in standard polar organics and common aqueous bases, behaving predictably so users spend less time troubleshooting and more time designing the next step in their route.

    Application Insights Drawn from Real-World Synthesis

    The true value of 5-(Aminomethyl)-2,3-dihydrobenzo[B]furan comes out in the lab, not in databases. Most of our customers turn to this compound as a building block for medicinal chemistry, agrochemical intermediates, or advanced materials, driven by the versatility of the aminomethyl group paired with a rigid aromatic core. This molecule often serves as a launchpad for further functionalization at the amino site. Customers report robust performance in reductive aminations, esterifications, and urea coupling reactions.

    Large-scale pilot users often appreciate the compatibility of our material with chiral catalysts, where even subtle contaminants can spell disaster for optical yields. With consistent enantiopurity and heavy-metal tracking during final crystallization, we help research groups push deeper into lead optimization without pausing to question what’s truly in the flask.

    A Close Look at Specifications that Matter to Chemists

    Working with 5-(Aminomethyl)-2,3-dihydrobenzo[B]furan means knowing you won’t run into the surprises left behind by bulk process shortcuts. Our product meets a standard of purity falling within 98.5–99.5% by HPLC, which doesn’t just look good on paper but translates to reliable bench results. Moisture checks run below 1%, since too much water complicates downstream chemistry, particularly in organometallic transformations or condensation steps.

    Our QC process screens for heavy metal residues and residual solvents by GC-MS and ICP-OES, because low thresholds for contaminants prevent progress-halting side reactions in sensitive syntheses. IR spectroscopy confirms correct aromatic substitution, reinforcing the structure’s integrity. 

    These tangible details come directly from routine plant experience. Chemists on our line monitor these values as part of daily practice, not as afterthoughts or regulatory burdens. Any discrepancy triggers a full review long before the product leaves our facility.

    Differences that Set This Product Apart

    Some intermediates, even from reputable sources, look alike on paper but fall short during optimization or scale-up. Our 5-(Aminomethyl)-2,3-dihydrobenzo[B]furan stands apart for reasons that accumulate across years of feedback and continuous troubleshooting alongside partners in pharma and specialty chemical development.

    We never blend off-spec lots to meet aggregate targets. Each batch passes side-by-side benchmarks covering key reactivity aspects—reaction times in N-alkylations, performance under microwave vs. reflux conditions, and shelf stability after long-distance shipping. In every quality check, user needs based on application drive the yardstick, instead of generic compliance standards.

    Some competing products show traces of starting material or over-alkylation byproducts, which contribute to product loss, unpredictable coupling speeds, or incomplete conversions. By screening for these trace impurities above and beyond published specs, we give synthetic chemists peace of mind—something we value as fellow practitioners.

    Supporting Scale-up and Development Workflows

    From experience working with both early-stage and commercial pilot teams, we recognize the pressure that comes with scale. Process chemistry lives or dies by how materials respond to batch-to-batch consistency and process robustness. Our approach means customers running up from a 10-gram bench synthesis to multi-kilo runs don’t suddenly face hidden problems—the same purity, particle size, and behavior hold linearly.

    We keep technical notes tracking any minor process modifications made while optimizing for higher throughput. This transparency helps customers plan better and adapt their own routes without unexpected surprises from “invisible” tweaks. Experts onsite who run our own kilo reactors can discuss firsthand the sorts of yield calculations or physical property tweaks needed at larger volumes.

    Handling Requests: Large and Small Scale

    Research groups sometimes need only a few grams; industrial partners may order by the drum. We manage both requests in-house, never subcontracting dilution or repackaging. This matters for traceability. Each container traces back to a single batch record and synthesis logbook. If any question arises over a bottle or drum, we pull the original data for full transparency.

    Hazard management during packing borrows from decades spent filling, sealing, and shipping moisture-sensitive materials. Detailed instructions simply make life easier for our partners—everything from recommended PPE in the lab to transport tips for longer-term storage. We design containment and packaging protocols with both small and large users in mind, avoiding cross-contamination or moisture exposure at every hand-off.

    Why Consistency and Communication Matter to Us

    Customers looking into benzo[b]furan-based building blocks tend to have high stakes riding on structural certainty. During collaborative projects with pharmaceutical R&D groups, we see how a single batch deviation can ripple across weeks or months of effort. The direct line between manufacturers and end users means questions or feedback get answered quickly by people who’ve handled the material personally—including our plant chemists and QC staff.

    By sharing observations—how 5-(Aminomethyl)-2,3-dihydrobenzo[B]furan performs under scaled microwave heating, which solvents neatly extract it from multi-component mixtures, and what abnormal TLC spots actually signal—we step beyond promises to real knowledge. This spirit of openness builds long-standing relationships where quality, not just price, wins repeat business.

    Market Shifts: Why direct-from-manufacturer Makes a Difference

    Growing volatility in chemical supply chains throws unique demands at synthetic chemists and procurement teams. Disruptions in raw material supplies, changing regulatory rules, and global transit delays put added value on partners who can vouch for both product and process. Since every lot we ship gets tracked back to original synthesis records, users avoid frustration from vague provenance or unexplained changes that sometimes come with brokered chemicals or white-labeled intermediates.

    We have responded to supply chain volatility by dual-sourcing sensitive precursors, keeping a steady reserve of validated materials ready for scale-ups, and maintaining strong relationships with raw material vendors. Instead of learning about supply glitches when it’s too late, our real-time communication means buyers see problems and solutions as they emerge—before any impact hits downstream production.

    Product Safety and Environmental Commitment

    Continuous improvement informs how we protect both employees and customers. By handling all hazardous operations in closed systems, we reduce risk during both production and packing. Regular plant upgrades keep our exhaust scrubbing and waste handling on target with evolving local environmental standards. Every step, from solvent recovery to byproduct incineration, gets logged and monitored on digital systems for full traceability.

    Customers often ask about compliance with emerging regulations and environmental best practices. While 5-(Aminomethyl)-2,3-dihydrobenzo[B]furan itself is relatively manageable by standard laboratory protocols, we provide detailed disposal recommendations and encourage users to integrate green chemistry practices—solvent minimization, high-yield transformations, and recycling routines—at every stage of product use.

    Supporting Future Development: Feedback Loops and Research Collaboration

    Our site doesn’t present 5-(Aminomethyl)-2,3-dihydrobenzo[B]furan as a commodity. Collaborative projects with academic and industry innovators influence improvements in analytical methods, batch consistency, and user documentation. If a research group identifies a recurring byproduct or analytical quirk, we adapt our processes or add extra QC points for future batches. These ongoing discussions improve our product, pushing it forward in line with the evolving needs of research communities.

    We regularly invite feedback from synthetic chemists tackling new transformations. Insights gained from global partners shape future directions—whether it’s optimizing for more challenging enantioselective routes, or refining batch filtration and drying for greater efficiency at scale.

    Choosing the Right Building Block: Practical Considerations

    Sourcing an advanced intermediate like 5-(Aminomethyl)-2,3-dihydrobenzo[B]furan should be about more than matching a CAS number or ticking off purity specs. Process, consistency, communication, and a true understanding of route-specific requirements define real value. Unlike brokers focused on pipeline throughput, our direct experience means knowing when users benefit from finer particle sizing or alternate drying methods, and responding before problems materialize.

    The difference lies in details most procurement systems don’t catch—batch-by-batch tweaks for moisture sensitivity, or subtle shifts in impurity profiles as glassware scales up to steel. By prioritizing the technical requirements drawn from our actual experience in process chemistry, we provide a product that researchers trust to move ambitious projects forward.

    Conclusion: Beyond a Single Intermediate

    In every shipment of 5-(Aminomethyl)-2,3-dihydrobenzo[B]furan leaving our facility, we see more than a chemical—years of plant learning, continuous technical collaboration, and a genuine commitment to transparent, responsive service. We measure our reputation not by sales alone, but by the confidence users bring into their next experiment. This ongoing exchange with researchers and developers improves our material every year, aligning quality and consistency with the practical needs of those who rely on it most.