Isaconazole

    • Product Name: Isaconazole
    • Mininmum Order: 1 g
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: sales3@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
    • CONTACT NOW
    Specifications

    HS Code

    256286

    Name Isaconazole
    Cas Number 80844-07-1
    Molecular Formula C18H16Cl2N2O
    Molar Mass 347.24 g/mol
    Appearance White to off-white solid
    Chemical Class Imidazole antifungal
    Solubility In Water Poorly soluble
    Mechanism Of Action Inhibition of ergosterol biosynthesis
    Route Of Administration Topical
    Pubchem Cid 65862
    Iupac Name 1-(2,4-dichlorophenyl)-2-(2,6-dimethylphenoxy)imidazole
    Synonyms Isoconazole

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

    Packing & Storage
    Packing Isaconazole is packaged in a 500-gram white HDPE bottle with a tamper-evident cap and detailed hazard labeling.
    Shipping Isaconazole should be shipped in tightly sealed, labeled containers, protected from light and moisture. During transport, use appropriate packaging to prevent leaks or contamination. Follow all applicable regulations for shipping chemicals, including hazard labeling, documentation, and temperature control if required. Handle with care to ensure safety and product integrity.
    Storage Isaconazole should be stored in a cool, dry, and well-ventilated area, away from direct sunlight and sources of ignition. Keep the container tightly closed when not in use, and store separately from incompatible substances such as strong oxidizers or acids. Ensure the storage area is secure and clearly labeled, and follow all legal and safety regulations for handling hazardous chemicals.
    Application of Isaconazole

    Purity 99.5%: Isaconazole with purity 99.5% is used in wheat crop protection, where it ensures maximal fungal inhibition and disease control.

    Molecular weight 351.8 g/mol: Isaconazole with molecular weight 351.8 g/mol is used in citrus orchard treatment, where it achieves efficient systemic distribution within plant tissues.

    Melting point 125°C: Isaconazole with melting point 125°C is used in post-harvest storage coating, where it provides thermal stability for extended shelf life.

    Particle size <10 microns: Isaconazole with particle size less than 10 microns is used in foliar spray applications, where it delivers superior leaf surface coverage and pathogen contact.

    Stability temperature 50°C: Isaconazole with stability temperature 50°C is used in greenhouse disease control systems, where it maintains efficacy under elevated ambient conditions.

    Solubility 12 mg/L: Isaconazole with solubility 12 mg/L is used in wettable powder formulations, where it enables effective dissolution and uniform application.

    Viscosity grade low: Isaconazole with low viscosity grade is used in drip irrigation systems, where it permits smooth flow and reduces nozzle blockage.

    Residual activity 21 days: Isaconazole with residual activity of 21 days is used in field crop disease management, where it provides long-lasting protection against fungal pathogens.

    Formulation SC 250g/L: Isaconazole SC 250g/L is used in vineyard mildew prevention, where it facilitates easy mixing and consistent application results.

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    Tel: +8615365186327

    Email: sales3@ascent-chem.com

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    Certification & Compliance
    More Introduction

    Isaconazole: A Practical Look from the Manufacturer’s Bench

    Understanding Isaconazole: Our Experience Shaping Every Batch

    Some products in our field stand out because they consistently prove their value, and Isaconazole stands among them. Our team has been involved in manufacturing triazole fungicides for years, piloting and scaling processes, and overseeing every step from raw synthesis to the final packed drum. Isaconazole holds a unique position—not because of a marketing claim, but because of what we see in the lab and field reports from real growers and applicators. When we look at Isaconazole, we aren't just checking purity numbers or grain size; real results come from seeing what happens in managed crops and controlled studies, and these observations shape what we bring to market.

    The model we supply has a purity grade of 98.5% minimum by HPLC, always based on an unvarnished, no-nonsense approach to synthesis, filtration, and drying. From day one of each production run, we track the moisture content and screen for key impurities—particularly those that matter for long-term storage and consistent dosing. It’s easy to judge purity on paper, but keeping the product stable and handling-friendly over the long haul takes experience and solid equipment. We achieve this by investing in controlled drying and precisely calibrated environmental monitoring during packaging. This isn't abstract quality control; it’s the way we keep customers from opening a container after four months only to find an unusable clump.

    What Sets Isaconazole Apart on the Farm and in the Factory

    Talking to agronomists and chemists out in the field, you learn quickly why Isaconazole earns repeat business. While some triazoles have dominated cereal markets and orchard sprays for years, not all triazoles stand up to aggressive pathogen resistance. Our product finds its niche among those looking for extended protection and reliable control over leaf-spotting and rust diseases, especially in cereals and high-value fruit trees. The molecular tweaks in Isaconazole give it a broader spectrum without increasing application rates or introducing tougher residue management headaches. It enters plant tissue smoothly, controls sporulation, and doesn’t overburden stressed crops—an advantage that gets overlooked by those who just read data sheets.

    We often hear from independent labs and growers who have stacked Isaconazole against tebuconazole or difenoconazole. Yes, those chemistries each have strengths, but Isaconazole repeatedly reduces visible incidence and keeps crops looking healthy beyond the spray window. It does not spike phytotoxicity under weather swings, and growers have less concern about residual buildup, particularly with export-oriented crops. We track batch performance and handle volumes of feedback; nobody needs to take only our word for it. Reports stream in about powder and suspension formulations holding their own from tank to nozzle. Years spent scaling up the synthesis have let us fine-tune granule hardness and dusting tendencies, cutting down on both user complaints and warehousing losses.

    What Goes into Our Production Process

    Isaconazole isn’t a product that can be thrown together with generic intermediates and a loose synthesis route. Avoiding batch-to-batch variability means scrutinizing starting materials for by-product contaminants that have a nasty habit of sneaking through weaker syntheses. Over several process optimization cycles, we’ve established temperature and pressure windows that draw out the core triazole structure efficiently and then refine via solid-liquid extraction steps. In the crystallization phase, we maintain close control over solvent quality and residence time to secure consistent morphology—a nod to the way formulation partners require uniform flow and dissolution characteristics later down the pipeline.

    By grinding, screening, and drying under tightly controlled airflow, we lock in a material that resists caking even in warm, humid environments—something that matters in many of our export markets. Bulk storage vessels use nitrogen blanketing to shield the material from oxidation before packing out. We learned this the hard way after seeing initial batches degrade under warehouse lights and fluctuating humidity. These details might sound fussy, but warehouse operators and mixing crews let us know in short order if we slacken standards. In our plant, the people blending and bagging compounds give feedback straight to technical directors, shaping process tweaks that make a noticeable difference for customers a continent away.

    Reliability in Crop Disease Control

    Most of our customers look for tangible performance under field conditions that can’t be controlled. Regardless of meticulous laboratory tests, real confidence builds when growers see leaf blight or powdery mildew fade away over the course of a season—especially in climates where moisture and pests team up against every fungicide in the book. Isaconazole’s mode of action targets fungal C14-demethylase, which interrupts vital membrane production in the pathogen. There are plenty of triazoles on the market, but the specific side-chain modifications in Isaconazole slow the development of resistance, letting growers run rotations with less risk of disease breakthrough.

    Consistent field results bear out the lab predictions. Trials run over the last decade show Isaconazole holding suppression across major cereal-blight complexes, apple scab, and rusts in soybean crops. Local agronomy teams don’t just report percentages; they send us photographs, yield figures, and even samples for third-party confirmation. For us, nothing replaces word-of-mouth reliability and repeat orders from the very people putting in the season’s work across Europe, South America, or Asia.

    Usage Patterns and Application Insights

    We pay careful attention to how users apply Isaconazole on their farms and in industrial settings. Most partners adopt rates between 75 and 125 grams active ingredient per hectare, with adaptations according to crop and disease incidence. Compatibility with both tank-mix partners and pre-formulated blends gives flexibility across disease spectrums. Some products boast about multi-use, but it takes field-scale demonstration to show that Isaconazole partners well with strobilurin or SDHI fungicides without causing adverse physical reactions in tanks or clogging sprayer filters. We test our own material across the range of local water chemistries so the end-user isn’t left puzzling over spontaneous gels or flakes dissolving in critical nozzles.

    Mixing behavior makes or breaks many products long before yield data comes in. In our experience, formulation stability owes as much to controlled synthesis as it does to technical training on the farm. Our technical service team visits cooperatives, assisting with nozzle calibration, turbulent mixing times, and visual clarity. Farmers don’t want fine print; they want to know that season after season, the drum they open will pour, mix, suspend, and spray the way the label promises. Our plant operators work with those end results in mind every time a new batch rolls off the line.

    Addressing Regulatory and Safety Considerations

    Hand-in-hand with production quality comes regulatory compliance—a subject nobody enjoys but which shapes the day-to-day practical limits for fungicide development and adoption. Our technical and regulatory teams follow established guidelines for residue levels, maximum allowed concentrations, and application intervals. Meeting registration demands in major markets requires robust analytical methods and audit trails stretching back through every stage of synthesis. We work proactively with regulatory affairs specialists, ensuring every lot matches the reference samples submitted for regulatory approval. Random deviation just isn’t an option if we want to stay in business and keep trusted partners coming back.

    We also prioritize safe handling and environmental stewardship. Direct communication with downstream distributors, commercial growers, and in-house safety officers creates feedback loops that improve container design, spill response, and user instructions. Training videos, detailed MSDS access, and periodic refresher sessions for major buyers make a difference, particularly in high-turnover work crews where proper PPE and dilution rates can slip from memory. We don’t just print safety statements; we consult farm managers and warehouse operators to review incidents, near-misses, and disposal bottlenecks. Problems get spotted and corrected before they cascade into lost product or regulatory penalty.

    Comparing Isaconazole with Other Fungicide Options

    Direct comparison matters in the real world of product selection. Isaconazole is often set against triazoles like epoxiconazole, tebuconazole, prothioconazole, and another generation of azoles. Each compound brings something to the table, but tradeoffs show up clearly during side-by-side application. Isaconazole has less volatility under high UV light and stands up better in stiffer wind during application, cutting down on drift. Branch managers and independent trial leaders have sent us point-blank assessments: under similar disease pressure, Isaconazole gives a stronger residual effect following a single timed application. Isaconazole’s absorption and translocation kinetics lead to a more even distribution inside plant tissues, not just on the surface—vital for crops exposed to heavy rainfall or irrigation. This adds real security for growers who count on every hectare for season profitability.

    Other products on the market may promise higher immediate knockdown or broader pest suppression, but this often comes with penalties like higher phytotoxicity, faster loss of residual activity, or regulatory exclusion from sensitive crops. We have processed inquiries from contract seed growers, orchardists, and specialty vegetable operators needing transparent answers about persistent residues and re-entry timings. Isaconazole is easier to incorporate into strict rotation schedules or low-residue strategies. Our technical team has run controlled trials to verify re-entry intervals and pre-harvest windows, giving users clean documentation for audits and export certification.

    Meeting the Latest Challenges: Resistance and Sustainability

    Pathogen resistance threatens to erode the effectiveness of every working crop protection agent. The triazole class has taken its share of resistance pressure, and weaker synthesis or off-label use only worsens the issue. We recognize this, spending time with plant pathologists and participating in resistance monitoring programs. Isaconazole’s side-chain adaptations reduce the binding affinity of fungal demethylases, helping slow resistance development. Infected field samples—taken from commercial plots in places ranging from the Canadian prairies to the wheat plains in Asia—demonstrate that Isaconazole holds its own even where other triazoles show reduced impact.

    We hold open days at our facility, walking visiting agronomists through testing labs, offering transparency that a third-party distributor rarely delivers. Internal resistance tracking allows us to react quickly; if early signs of reduced sensitivity emerge in, say, net blotch in barley, we adjust our recommendations and publish new technical sheets. Fungicide resistance is never a solved problem, but our ongoing investment in monitoring and transparent reporting builds trust among partners facing rising regulatory hurdles.

    Technical Support—Not Just a Hotline

    Real support means more than a contact number buried on a package. Our technical team meets face-to-face with farm owners and agricultural consultants, troubleshooting not only application technique but also patterning and coverage under variable topography and microclimate. Follow-up service—receiving real field samples, analyzing residue levels, and adapting recommendations—has given us insight into practical problems that would never show up in catalog specs. This hands-on approach allows us to make credible promises about product performance and address storage, tank-mix, or drift issues that arise before they translate to field losses.

    We supply full batch histories, purity certificates, and detailed usage notes to partners buying at scale. Site visits by our technical advisors double as informal training sessions for sprayer operators who want tips on minimizing runoff or maximizing coverage in canopy crops. We also work closely with custom-blend manufacturers, sharing analytical updates and, when necessary, collaborating to design custom granulation sizes or dust-suppressed versions for sensitive use cases.

    Outlook for Isaconazole in Modern Agriculture

    Our plant’s history is full of lessons learned the hard way: reformulations that cut corners end up costing more down the line, and overpromising marketing leaves real growers short. We turn those lessons into process improvements and research priorities. The result is a rigorous approach that keeps Isaconazole relevant while accommodating ever-changing regulatory, safety, and crop rotation requirements. Just as growers adapt each season, we adjust our internal protocols—reviewing purity data, handling logistics interruptions, and managing region-specific compliance questions.

    Long-term product value stems from real-world results, honest feedback, and iterative process upgrades. Isaconazole continues to serve growers needing proven fungicidal performance with credible stewardship. One of the best affirmations comes not from sales figures but from the continuity of partnerships: those who return season after season trust that the product in each shipment matches the promise we make, grounded in the hands-on, day-in, day-out reality of manufacturing a world-class fungicide.

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