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

57 Dimethoxyflavones

    • Product Name 57 Dimethoxyflavones
    • Alias DMF
    • Einecs 620-003-9
    • 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

    806343

    Chemical Name 57 Dimethoxyflavones
    Chemical Formula C17H14O4
    Molecular Weight 282.29 g/mol
    Appearance Yellow crystalline powder
    Solubility Slightly soluble in water, soluble in organic solvents (ethanol, DMSO)
    Melting Point 260-265°C
    Purity ≥98% (HPLC)
    Storage Store at 2-8°C, protect from light
    Applications Pharmacological research, antioxidant studies
    Stability Stable under recommended storage conditions
    Synonyms 5,7-Dimethoxyflavone
    Origin Synthetic or plant-derived
    Logp Approximately 3.1
    Spectral Data Available (NMR, MS, IR)

    As an accredited 57 Dimethoxyflavones factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 57 Dimethoxyflavones is packaged in a 10g amber glass vial with a tamper-evident cap, labeled with safety and purity information.
    Shipping Shipping for 5,7-Dimethoxyflavone is conducted in compliance with chemical safety regulations. The compound is securely packaged in airtight, clearly labeled containers to prevent leaks or contamination. It is typically shipped via ground or air by certified carriers experienced in handling laboratory chemicals, with required documentation and safety data sheets included.
    Storage 57 Dimethoxyflavones should be stored in a tightly sealed container, protected from light and moisture. Store the compound at room temperature (approximately 20-25°C) in a cool, dry, and well-ventilated area, away from sources of ignition or incompatible substances. Ensure proper labeling and secure the container to avoid accidental spillage or contamination. Always follow relevant safety and regulatory guidelines.
    Application of 57 Dimethoxyflavones
    Purity 98%: 57 Dimethoxyflavones with purity 98% is used in pharmaceutical synthesis, where it ensures high reproducibility in bioactive compound development. Molecular Weight 314.29 g/mol: 57 Dimethoxyflavones with molecular weight 314.29 g/mol is used in structural elucidation studies, where it facilitates accurate analytical quantification. Melting Point 178°C: 57 Dimethoxyflavones with melting point 178°C is used in controlled crystallization processes, where it improves formulation consistency. Particle Size <10 µm: 57 Dimethoxyflavones with particle size under 10 µm is used in advanced drug delivery systems, where it enhances solubility and bioavailability. Stability Temperature up to 120°C: 57 Dimethoxyflavones with stability temperature up to 120°C is used in high-temperature applications, where it maintains compound integrity during processing. UV Absorbance λmax 330 nm: 57 Dimethoxyflavones with UV absorbance maximum at 330 nm is used in photostability assessments, where it allows precise monitoring of light-induced degradation. Residual Solvents <0.01%: 57 Dimethoxyflavones with residual solvents less than 0.01% is used in safety-sensitive applications, where it reduces potential toxicological risks. Hydrophobicity Index 2.5: 57 Dimethoxyflavones with hydrophobicity index 2.5 is used in membrane interaction studies, where it predicts permeability characteristics.
    Free Quote

    Competitive 57 Dimethoxyflavones 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

    57 Dimethoxyflavones: Practical Experience in Flavonoid Manufacturing

    Real-World Production and Use of 57 Dimethoxyflavones

    Every batch of 57 Dimethoxyflavones that leaves our facility carries the lessons of years on the production floor. As a chemical manufacturer, our days revolve around the details — solvents, purity checks, drying protocols, crystal appearance — not marketing gloss. This flavone derivative, often referenced as 5,7-dimethoxyflavone, entered our catalog after years of research and plenty of trial and error perfecting extraction and synthesis.

    Chemical manufacturing moves faster when there's real demand from formulators, universities, and R&D teams working with natural product analogues. This compound shows up in project proposals for antioxidant research, bioavailability studies, and pharmaceutical reference standards. Unlike selling commodity chemicals, specialty flavonoids demand close attention at each stage. Even simple deviations during methylation, filtration, or final drying change not just yield, but crystal size and impurity profiles. We run our own process controls, so the chemists in the labs get the same material, batch to batch.

    Model and Specifications: Not Just Numbers on a Sheet

    People expect numbers and chemical jargon, but consistency in this field means avoiding surprises. In our facility, 57 Dimethoxyflavone starts with a batch code based on date and process line, so traceability follows from raw holder to finished bottle. Our product’s model has evolved as we scaled — initially smaller runs for research, then larger production lots shipping to pilot-scale pharmaceutical workshops.

    Our finished product is a pale-yellow powder, fine but not dusty, with a melting point we always recheck for every batch. Typical purity via HPLC sits at ≥98%, sometimes higher where the customer requests. Each lot ships with spectra and chromatograms, straight from our in-house lab, so the end user knows exactly what went into their study or synthesis. Year-round, ambient storage remains stable, and we take packaging seriously — no budget bags or old drums, only moisture-tight HDPE or glass, based on how quickly the client expects to use the material.

    Experience With Handling and Research Applications

    Production teams learn flavor chemistry and pharmaceutical precursors by working with real sample requests. Pharmacologists, cosmetic formulators, and food scientists each look for something different. Some care more about solubility for high-throughput screens, while plant scientists need to confirm the absence of pesticide residues. As the manufacturer, we're the ones getting emails about faint color shifts or solubility questions in non-aqueous media.

    57 Dimethoxyflavone dissolves readily in DMSO, less so in water, and clarity of solution correlates with the absence of unreacted precursors. A good batch shows minimal microcrystalline debris when dissolved under gentle agitation. Purification steps — especially column work — always add to production time but pay off when research teams aren't chasing strange artifacts in their results.

    Research labs sometimes ask why one batch looks less clumpy, or why the powder handles better for milligram measurements. Much of this is down to drying methods and the timing after harvest from the reactor. Over-drying leads to static-prone fine dust, so we've adjusted our protocols to hit the sweet spot — flowable, free from caking, without moisture-induced degradation during storage.

    How 57 Dimethoxyflavones Compare in the Flavonoid Family

    We get a lot of questions about the differences between 57 Dimethoxyflavone and related products like chrysin, apigenin, or 7-methoxyflavone. Real differences arise from both the substitution pattern and how these molecules behave under real-world laboratory conditions. Adding methoxy groups changes not just polarity, but solubility and stability under heat or light.

    57 Dimethoxyflavone stands out for its resilience in formulations where hydroxyflavones might degrade. Cosmetic formulators come to us after struggling with oxidation issues in hydroxy analogues; they want the methylated variant because it fares better in preliminary shelf-life tests. Pharmacology teams, on the other hand, value the predictable retention time and spectral characteristics, which streamline identification during assays.

    Other flavonoids with different substitution positions may show stronger natural color, but 57 Dimethoxyflavone’s lighter hue often helps when used as a reference in UV-absorbance studies. This subtlety reduces interference, letting researchers focus on their target outcome instead of correcting for background coloration.

    We manufacture several flavonoid types. The minute shift from a hydroxy to methoxy group can ease purification, cut down column run times, and yield a product compatible with broader pharmaceutical excipient lists. Less polarity also means less tendency to bind or accumulate within certain polymer or resin matrices, simplifying downstream product development.

    Quality in Practice: What the Numbers Don’t Show

    Producing specialty flavonoids often means short production runs and frequent process adjustments. Documentation, as required by regulators and clients, fills binders, but most real improvements come from process feedback. Each batch teaches us more about solvent handling, filtration times, and contamination risks.

    We routinely check batches for heavy metals, since flavonoid precursors occasionally introduce trace contaminants. This step is non-negotiable for teams exploring potential supplements, where even a small slip can erase weeks of formulation work. Our experience has pushed us to invest in updated analytical tools — ICP-MS for trace elements, newer HPLC columns — even when a traditional flavor or fragrance producer might skip those controls.

    Mishaps still happen, especially when scaling. Sticky residues from certain solvents, or stubborn coloration, require rework and adjustment. We talk about these setbacks directly with our customers; transparency here builds trust, especially in research supply. Many research teams care as much about answering their own quality department’s questions as about the product’s certificate of analysis. We give them direct contacts to our technical team, so questions go straight to the chemists who made the compound, instead of bouncing between middlemen.

    Industry Needs and Modern Flavonoid Challenges

    Demand for 57 Dimethoxyflavone has risen alongside a deeper understanding of flavonoids' potential biological roles. As the technical literature has grown, interest in methylated flavones as metabolic probes, standards, or even candidate therapeutic agents has accelerated. Industries pursuing functional foods, dietary supplements, or even clinical research seek out more consistent, scalable supplies.

    Many flavonoids are still sourced from bulk botanical extracts, which brings wild inconsistencies. Our clients have seen shifts in compound levels from one growing season to the next, or unwanted contaminants from uncontrolled harvesting. Sourcing from a chemical manufacturer removes much of this risk — our inputs are certified, our process repeatable. No matter where the end product goes, we can back it up with batch-level trace analytics.

    In the natural products sector, pressure mounts to prove identity and purity, as well as traceability all the way from raw source to finished product. 57 Dimethoxyflavone, made through tailored synthesis or high-purity isolation, gives downstream users more certainty. We frequently work with research teams to meet clean-label requirements and help avoid regulatory pitfalls that come from variable botanical extracts.

    Even in pharmaceutical reference standards, reproducibility matters. Regulatory submissions rely on clear provenance — where was this batch made? What is the spectral fingerprint? How long does it remain stable at various temperatures? We provide full documentation, supported by real analysis, because those details are more important than marketing claims.

    Lessons Learned Manufacturing Dimethoxyflavones

    Years spent manufacturing 57 Dimethoxyflavone have drawn our attention to small process factors that impact finished product quality more than any marketing might suggest. Small tweaks in solvent quality, material handling, or even operator technique change the composition of the outgoing product. We keep a record of every minor adjustment, ready to review whenever something unexpected shows up in QC.

    Batch-to-batch consistency relies on both best-in-class equipment and experienced process staff. Many of our chemists and engineers have spent decades in fine chemicals. They can trace product behavior back to specific reactor loads, know the difference between safe and risky filtration rates, and troubleshoot on the fly. The result is a product that research scientists use with confidence, knowing any deviation — large or small — gets attention before the compound leaves our facility.

    Supporting Responsible Research and Development

    Research teams increasingly ask about environmental impact. We’ve found that manufacturing 57 Dimethoxyflavone involves trade-offs. Most methylations generate some solvent waste; managing that waste safely occupies part of our daily operations. We continue to improve both recovery and disposal, minimizing our chemical footprint as regulations, best practices, and technology develop.

    Energy savings also come into play. Our facility uses closed-loop cooling on reactors, and we design batch sizes around energy and solvent efficiency as much as possible. None of this won awards, but it makes a real dent in operating costs and environmental burden. We share this approach with our buyers — not as a greenwashing pitch, but as practical data for their own compliance reports.

    For every client order, we field questions not just on product analytics, but also on how specific process steps might influence outcomes. In some cases, custom runs take the place of catalog options. We coordinate with research groups to offer targeted modifications — sometimes a different counter-ion, sometimes a new purification step — so end users have what works best for their process, whether that means scaled clinical research, a one-off publication, or baseline work for a patent application.

    Choosing Dimethoxyflavones: It’s About More Than a Molecule

    Our experience shows that chemists, biologists, and formulators care about more than purity on paper. They want consistency, access to technical support, and supply chain clarity. Partnerships grow strong where manufacturers treat end users as collaborators, sharing not just product but process knowledge.

    The real story of 57 Dimethoxyflavone is its journey from reactor to research bench. Unlike bulk commodity chemicals, this molecule benefits from tighter process control, dedicated QC, and routine updates as technology evolves. We listen when our customers point out quirks or wish lists for future lots, and we learn with each completed project. That commitment runs through every bottle we ship — as much craft as science, backed by open records, practical advice, and decades of hands-on chemical production experience.

    Dimethoxyflavones in Action: Collaborations, Case Stories, and Solutions

    Once in a while, production teams get to step out of the plant and visit a collaborator’s research space. One memorable visit involved a formulation team struggling to scale a topical cream with 57 Dimethoxyflavone, running into separation and stability issues. Working alongside their development chemists, we adjusted the product’s drying protocol, yielding a powder with improved flow and reduced static. That simple tweak solved their metering problem and boosted their batch consistency for the rest of the project.

    In another collaboration, a university group testing drug metabolism in flavones asked about the interplay between 5,7-dimethoxy and hydroxy derivatives. We provided characterized samples of both, along with analytical standards, so their team could compare metabolic rates side by side. The small batch, custom-packed for their needs, cut weeks from their development time and allowed for real comparative data, not just modeled projections.

    We maintain open dialogue with customers who need troubleshooting help. It’s not always a question of purity or compound identity. Some users work in automated pipetting systems, where powder stickiness and solubility in micro-volumes make or break their protocols. Others do animal studies and require ultra-low contamination, prompting us to source higher-grade glassware and additional rinse steps for their shipments. In our experience, quality isn’t just a number; it’s problem-solving and responsiveness, batch after batch.

    Responsibility and Transparency in Chemical Supply

    Trust comes from more than a glossy certificate. Our approach to transparency involves making production documents available as part of shipment. This happened after a longstanding client asked for detailed run sheets to satisfy an external quality audit. We decided to offer that level of detail to all customers by default, cutting confusion, saving time, and ensuring everyone in the chain knows what they’re handling.

    This same transparency extends to batch recall protocols, should anything go wrong. Rarely does an issue arise, but if it does, we contact all buyers of the affected lot with detailed guidance and support. This reduces downtime for researchers and keeps everyone on the same side. In an industry where many suppliers rely on long supply chains, dealing directly with the manufacturer cuts out delay and doubt.

    Our team remains available to discuss not just the product, but the unexpected realities of working in applied chemistry. Whether that means diving into spectral peaks, helping solve formulation roadblocks, or customizing packaging, we offer the shared knowledge of people who make and use the compound daily.

    Looking Ahead: Evolving with Scientific Demand

    57 Dimethoxyflavone will keep evolving — in purity, in batch size, in form factor — as science finds new uses for these molecular building blocks. From pharmaceutical research to emerging areas like advanced coatings, our job doesn’t end at synthesis. Continuous improvement, guided by the questions and needs of real-world users, sets our production goals.

    As a manufacturer, we remain invested in the dialogue between the lab bench and the production line. Every request, every challenge, and every success teaches us something broader about the intersection of practical manufacturing and chemical science. Staying rooted in hands-on experience — not abstraction or marketing — remains the best way to supply 57 Dimethoxyflavone and related compounds to those who will shape what’s next in science and industry.