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

Dimethoxybenzene

    • Product Name Dimethoxybenzene
    • Alias Resorcinol
    • Einecs 202-872-5
    • 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

    305511

    Chemical Name Dimethoxybenzene
    Molecular Formula C8H10O2
    Molecular Weight 138.17 g/mol
    Appearance Colorless to pale yellow liquid or solid
    Melting Point 24-56 °C (varies by isomer)
    Boiling Point 172-225 °C (varies by isomer)
    Density 1.08 g/cm3 (at 20 °C, varies by isomer)
    Cas Number Various (e.g., 91-16-7 for 1,2-, 151-10-0 for 1,3-, 119-47-1 for 1,4-isomer)
    Solubility In Water Slightly soluble
    Odor Aromatic
    Flash Point 76-115 °C (varies by isomer)
    Logp 1.5-2.0 (octanol/water partition coefficient, varies by isomer)

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

    Packing & Storage
    Packing A 500g amber glass bottle labeled "Dimethoxybenzene, AR grade," featuring hazard symbols, batch number, and secure screw cap packaging.
    Shipping Dimethoxybenzene is typically shipped in tightly sealed, chemical-resistant containers to prevent leaks and contamination. It should be stored and transported in cool, dry, well-ventilated conditions, away from sources of ignition and incompatible materials. Ensure containers are clearly labeled, and handle according to relevant safety and regulatory guidelines.
    Storage Dimethoxybenzene should be stored in a tightly closed container in a cool, dry, and well-ventilated area away from sources of ignition and incompatible substances, such as strong oxidizing agents. Direct sunlight and moisture should be avoided. Proper labeling and secondary containment are recommended to prevent spills or leaks. Personal protective equipment should be used when handling the chemical.
    Application of Dimethoxybenzene

    Applications of Dimethoxybenzene in Industrial Manufacturing

    Dimethoxybenzene, a key aromatic ether compound, serves as a critical intermediate in several well-established industrial sectors. Our direct manufacturing expertise ensures the consistent quality and traceability required by stringent downstream applications. The scenarios below detail the distinct, real-world industrial pathways for this raw material, focusing on technical requirements, regulatory standards, process entry points, and finished product profiles.

    1. Agrochemical Synthesis: Herbicide Intermediates

    Agricultural chemical producers use dimethoxybenzene as a building block for the synthesis of selective herbicides, particularly for crops demanding fine control over weed growth. Its aromatic ether structure provides unique reactivity in key condensation and substitution steps of phenoxyalkanoic herbicide production. We supply this grade to agrochemical integrators who require reliable purity to meet multi-region field application authorizations and residue limits. Our technical experts collaborate closely on process audits and benchmarking raw material specifications for continuous plant operation.

    Industry compliance standards

    • EU Regulation (EC) No. 1107/2009 (Plant Protection Products)
    • ISO 9001:2015 Quality Management
    • China GB/T 31270 Pesticide Industry Standard
    • FAO/WHO Specifications for Pesticides

    Typical usage ratio

    • 1.5–4% of the herbicide formulation by weight, adjusted for target molecule yield and process throughput.

    Downstream process integration

    • Introduced after initial phenol alkylation, as a substrate in etherification under controlled temperature and pH, prior to haloalkylation or carboxylation steps.

    Final product types

    • Selective cereal herbicides (e.g., phenoxycarboxylic acids)
    • Pre- and post-emergence broadleaf weed control agents
    • Emulsifiable herbicide concentrates for large-scale farming

    2. Pharmaceutical API Intermediate: Analgesics and Antipyretics

    Active pharmaceutical ingredient (API) manufacturers incorporate dimethoxybenzene as a functional intermediate in several analgesic drug syntheses, such as paracetamol derivatives and related antipyretics. Chemical purity and trace metal content are rigorously monitored per pharmacopeial monographs and batch-to-batch protocol. Its specific methoxy substitution facilitates directed ortho-acylation, minimizing by-product formation and optimizing overall line yield in API synthesis reactors.

    Industry compliance standards

    • ICH Q7 Good Manufacturing Practice for APIs
    • USP/NF Pharmacopeia (United States)
    • European Pharmacopoeia (Ph.Eur.)
    • China Pharmacopoeia ChP 2020

    Typical usage ratio

    • 0.7–2.2% of total formulation batch mass, precise dosing determined by target API stoichiometry and reaction vessel charge calculation.

    Downstream process integration

    • Dosed during initial API synthesis as the source of the aromatic core, entering the reactor before acetylation or amination, with in-process HPLC for structure verification.

    Final product types

    • Oral and parenteral analgesics (e.g., paracetamol family compounds)
    • Pharmaceutical-grade antipyretics and combination remedies
    • Granulate APIs for solid dose formulations

    3. Fragrance and Flavors Industry: Aroma Compound Synthesis

    Aroma chemical producers utilize dimethoxybenzene (notably its 1,2- and 1,4- isomers) as a precursor in manufacturing specialty odorants and masking agents with sweet, powdery, or anisic notes. Its stability under Friedel-Crafts acylation and alkylation conditions allows tailored synthesis pathways for fine fragrance bases, while maintaining compliance with heavy metal and allergen control guidelines. Our plant ships bulk batches formulated for high-throughput distillation and continuous flavor blending.

    Industry compliance standards

    • IFRA Code of Practice (International Fragrance Association)
    • EU Regulation (EC) No. 1223/2009 (Cosmetic Products)
    • ISO 9235:2013 (Natural aromatic raw materials)
    • US FDA 21CFR—Food Additives Permitted for Direct Addition to Food for Human Consumption

    Typical usage ratio

    • 0.05–0.8% of total perfume or flavor blend; adjusted according to desired headspace intensity, solubility in carrier, and finished product application (e.g., fine fragrance vs. air care).

    Downstream process integration

    • Incorporated during aroma compound synthesis prior to esterification or further alkylation; typically enters after the primer extraction phase, followed by fractional distillation into concentrate tanks.

    Final product types

    • Fine fragrances and Eau de toilette
    • Household air fresheners and fabric sprays
    • Flavoring bases for bakery and confectionery industries

    4. Polymer Industry: Monomer and Additive Manufacture

    Polymer producers integrate dimethoxybenzene as a functionalized comonomer in the synthesis of specialty engineering plastics, especially poly(arylene ether)s and polyimides designed for high-thermal stability applications. Its dual methoxy groups improve solubility within the reaction melt, reduce gel formation, and offer tunable dielectric properties in electronic substrate manufacturing lines.

    Industry compliance standards

    • REACH (EC 1907/2006) Chemical Registration
    • RoHS Directive 2011/65/EU (electronic materials)
    • UL 94 Flammability Testing (polymer materials)
    • ISO 9001:2015 for integrated polymer plants

    Typical usage ratio

    • 0.3–1.5% of polymerization feed by mass, dosage selected to balance thermal flexibility and process fluidity depending on target resin grade.

    Downstream process integration

    • Blended into the monomer feed prior to high-temperature solution polymerization; addition monitored for even distribution and minimized end-group blocking under controlled pressure reactor conditions.

    Final product types

    • High-performance polyimide films
    • Dielectric substrates for printed circuit boards (PCB)
    • Thermally stable molded plastic components

    5. Dye and Pigment Intermediate: Organic Colorant Synthesis

    Producers of synthetic organic dyes rely on dimethoxybenzene as a core structural intermediate, particularly in manufacturing azo and anthraquinone dye classes. Its unique substitution pattern enhances resonance stabilization, enabling targeted color hue adjustments, and increases solubility for both water- and solvent-based dye systems. Supply to this sector prioritizes low halogen and sulfide impurity profiles per end-user QC specifications.

    Industry compliance standards

    • OEKO-TEX® Standard 100 (Textile Safety)
    • REACH Annex XVII (Restricted Substances in Dyes)
    • ISO 105 Series (Textile Color Fastness)
    • China Textile Industry Standard FZ/T 01057

    Typical usage ratio

    • 0.8–2.5% of dye batch feed, optimized based on target chromophore and depth of shade requirement in end-use application.

    Downstream process integration

    • Added at nucleophilic aromatic substitution step, before diazotization or coupling, with continuous spectroscopic monitoring to ensure color purity and batch reproducibility.

    Final product types

    • Reactive and direct textile dyes
    • Inkjet and digital textile printing inks
    • Industrial pigments for plastics and coatings
    Free Quote

    Competitive Dimethoxybenzene 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

    Dimethoxybenzene: Reliable Performance from an Experienced Manufacturer

    A Closer Look at Dimethoxybenzene

    Anyone spending years in aromatic chemistry learns quickly which molecules prove their worth across projects and markets. Dimethoxybenzene stands as one of those versatile building blocks, making a quiet difference in applications from fragrances and pharmaceuticals to polymers and cutting-edge electronics. Our factory’s work with this chemical dates back over a decade, during which we have seen its role evolve as industries adopt new formulations and seek higher purity standards.

    The term ‘Dimethoxybenzene’ can sound broad; the molecule exists as three isomers: 1,2-dimethoxybenzene (veratrole), 1,3-dimethoxybenzene, and 1,4-dimethoxybenzene. These subtle differences in substitution reflect in both the handling and the end use. Let’s take a closer look at what this means in a production environment. In our experience, demand centers primarily on the ortho and para versions, with the meta isomer seeing less volume but not less value for niche synthesis. Each isomer calls for its own approach to crystallization, storage, and shipment.

    We never treat Dimethoxybenzene as just another commodity. Our plant produces high-purity material, reaching GC analysis benchmarks of 99% and above depending on specification requests. Customers from fragrance manufacturers prize the ortho isomer for its characteristic sweetness; we maintain rigorous controls on trace non-volatile matter and discoloration, aiming for a bright, clear product that dissolves readily in organic carriers. Battery and electronics clients send in their own test panels, focusing on contaminant levels below 100 ppm and sometimes even lower for sensitive performance. Pharmaceutical researchers, who use various isomers as intermediates, set the bar highest on residual solvents and related compound thresholds. Their confidence in the consistency of our batches often comes after their own plant trials confirm our lab data—a process we welcome and support openly.

    Our Path to Consistent Quality

    Experience in manufacturing builds intuition about what a raw material or process step can do—good and bad. Dimethoxybenzene demonstrates a particular sensitivity to raw stock quality. Chlorinated feeds and anhydrous methanol help drive the selective methylation we need, and trying to ‘save’ on input quality only trades up for trouble downstream. For example, we have switched suppliers only after full compatibility assessments and never hesitate to reject in-spec raw material if early pilots show small off-notes after methylation. Years of synthesis have also taught the team to watch batch times closely; even a 5% deviation can leave hot side-products that show up at the finish line when the client’s application fails.

    Part of the consistency means regular equipment investments. We use glass-lined reactors for their resistance to hot methylating agents, and run inline analytics not just at the endpoint but through the crucial exotherm stages. The business once lost a long-time client years ago to an unnoticed spike of ortho to para impurity; after that incident, process automation drew our full attention. Today, each shipment goes out with fresh chromatograms and a record of lot-specific parameters—down to ambient humidity in the packing room, which can affect certain powder forms.

    Defining Differences: Our Dimethoxybenzene vs. the Rest

    Many newcomers to Dimethoxybenzene ask how our offering stands apart from those on the international price boards. Based on handling thousands of metric tons over the years, we know purity rarely tells the full story. Our product’s ease of workup for downstream reactions saves operators time, and its predictable solubility profile preserves both sensitive laboratory scale-ups and high-output plant runs. Deviation can come from trace water, peroxides, or even minor leftover acids, all known to derail catalyst performance or create unwanted back-reactions.

    We ship Dimethoxybenzene in steel drums and IBCs certified for aromatic organics. Our logistics team keeps to ambient transit only, a detail some traders overlook—uninsulated containers, for instance, can expose material to wild temperature swings, risking solidification or decomposition. Storage guidance gets tailored to each customer’s environment, but our own warehouses feature positive air pressure and temperature control. That protects against outside contamination and reduces clumping or vessel corrosion, well before a quality issue emerges in customer hands.

    A major distinguishing mark comes from customer feedback. Industrial users who have shifted from competitors sometimes point to faster dissolution or fewer complaints about residue in their processes. That usually traces back to the way we dry our product after filtration. Instead of relying on a single drying pass, our team monitors moisture, switching to subsequent heated trays or vacuum ovens as needed. Extra labor, yes, but repeated customer surveys confirm the value: fewer headaches in crystallization, more predictable yields, and less downtime chasing poorly behaving lots.

    Dimethoxybenzene in Action: Field Applications and Troubleshooting

    Fragrance compounding often uses 1,2-dimethoxybenzene for its woody, sweet profile, blending well with vanillin and balsamic notes. This isomer needs careful handling because even minor impurities can introduce sharp undertones. Our approach involves batch-specific pretesting in our on-site application lab, blending the product with standard perfume bases to detect after-odors or haze. Through direct collaboration with perfumers, our chemists sometimes reformulate internal process steps, such as extending the washing stage, to bring aroma performance to the target range.

    In battery electrolyte work, especially as battery researchers move toward safer, higher-capacity chemistries, Dimethoxybenzene’s chemical stability becomes a premium. Low residual acidity is crucial here. We invested early in neutralization and polishing processes, ensuring no leftover mineral acid migrates into lithium environments. By keeping these trace ions in check, our product stands out in pilot cell cycling tests, reflected in higher stability and retained capacity curves compared to import samples which may cut corners on final wash cycles.

    For the pharmaceutical synthesis sector, Dimethoxybenzene shows its value through dependability in complex multi-step routes. Often, it gets brominated or nitrated to install reactive handles. Yield losses can result from stray metallic or organic impurities. Over time, collaboration with process chemists at client sites led us to tweak our packaging solutions—coated inner liners and nitrogen blankets—reducing accidental oxidation and supporting longer shelf life, especially for fine powders. These details mean that customers running week-long syntheses avoid batch failures and unnecessary rework.

    Sustainable Production: Lessons Learned and Future Goals

    Years in this business have made sustainability part of our identity. Traditional aromatic chemistry once bore an unfortunate reputation for high waste, deep colors in effluents, and harsh process aids. Our team has reduced these impacts by reengineering process waste streams, collecting methylation by-products for energy recovery, and switching over to lower-impact cleaning sequences. Modern catalysts now trim reaction times by half compared to our older recipes, with less off-gassing and energy use. The environmental audits each quarter keep us open to continual upgrades.

    One source of learning has been collaboration with downstream partners. Several of our best improvements in wastewater recovery came from customer site visits, where seeing the residue profiles firsthand prompted our engineers to test alternative filtration and absorbent pads. These field-driven changes sometimes cost more upfront in materials, but the results have fed back into better regulatory acceptance and even allowed a few clients to meet internal green chemistry targets for their end goods.

    Customer Support: Building Long-Term Relationships

    A lot of fine chemical sales today chase volume. We see things differently. Technical support and product reliability keep customers coming back to us for Dimethoxybenzene even in tight markets. Calls come in for troubleshooting, not just for delayed shipments or paperwork needs, but to investigate a sudden change in reaction behavior or solubility profile. Our application specialists dig into plant conditions, machinery, and even operator experience. Sometimes a customer’s challenge links back to an unnoticed tank lining issue or a new solvent batch, rather than our product at all. Sharing this expertise keeps both sides ahead of surprises and fosters trust far beyond one-off purchases.

    Every account manager here follows deliveries through implementation, keeping close tabs on how the newest lots behave in your hands. For long-term partners, we set up custom stockpiles or forecast-driven delivery, smoothing out the production cycle and minimizing the risk of stockouts. This partnership-based model comes directly out of our experience seeing how minor supply shocks cascade downstream. By staying responsive and transparent, we keep the supply chain robust and the end user productive.

    Continuous Improvement and Industry Trend Alignment

    As the world pursues safer, higher-performing chemicals, regulatory and purity standards intensify. Our quality control process embraces this challenge. Each year brings new analytical methods, which we adopt as soon as they show real benefits to our output or the safety of operators. For instance, we upgraded GC-MS and HPLC calibrations, benchmarking against top global standards. Unexpected findings can prompt not only internal fixes but sometimes broader changes among suppliers as well.

    Industry demand continues to shift. Twenty years ago, perfume and dye makers dominated sales of Dimethoxybenzene, with simpler expectations around composition and impurities. Now, with advanced battery and electronics customers taking the lead, our development pipeline works in tandem with their R&D teams. Joint optimization looks at solvent compatibility, shelf life, and additive effects in ways that earlier markets didn’t explore. The dialogue stays grounded in facts from iterative trials, not just lab analyses.

    We see the same product now helping shape safer, lighter electric vehicles, higher-yield biotech routes, and new classes of conductive materials. Our role as a chemical manufacturer means both responding to these new needs and shaping them—proposing alternate grades or packaging schemes before clients even spot issues. This forward-looking investment in product stewardship keeps both us and our customers ahead in fast-moving sectors.

    Safety and Regulatory Knowledge From Years on the Floor

    Dimethoxybenzene, despite its familiarity in organic chemistry circles, deserves respect in plant environments. Over time, our team has overhauled training for handlers, updating internal safety modules and consulting with outside experts. We focus on practical risk reduction: routine air sampling in processing and packing areas to monitor for vapor buildup, safety drills tailored to actual incidents rather than generic checklists, and PPE aligned with batch sizes and handling frequency. We make sure every new hire understands the quirks of aromatic ethers, from spill response to proper grounding in storage.

    Looking outward, we track changes in local and international standards, adjusting product labelling, transport declarations, and export paperwork. A recent regulatory update around aromatic organics forced a revisit of our MSDS documents, but also led to real improvements in traceability and feedback loops. Open engagement with auditors keeps us agile; real safety improvement emerges only when front-line operators buy into training, and management supports spending on upgrades, not just compliance badges.

    Dimethoxybenzene and the Path Forward

    Time spent on a chemical manufacturing floor teaches lessons no datasheet or sales brochure captures. Dimethoxybenzene serves as a vital example: a staple molecule whose value rises when handled with diligence at every production step. Our perspective as manufacturer reflects years confronting technical challenges, market volatility, and the strict shift toward higher purity and lower-impact production. Rather than rely on slogans or abstract pledges, we invite each client to engage with us directly—from technical dialogue to practical plant visits—to see our approach in action and ensure our Dimethoxybenzene fits the needs of tomorrow’s innovations just as dependably as today’s requirements.