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Nickel Bis(Dimethyldithiocarbamate)

    • Product Name Nickel Bis(Dimethyldithiocarbamate)
    • Alias Nickel bis(dimethyldithiocarbamate)
    • Einecs 215-170-3
    • 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

    396940

    Chemicalname Nickel Bis(Dimethyldithiocarbamate)
    Casnumber 137-30-4
    Molecularformula C6H12N2NiS4
    Molecularweight 305.17 g/mol
    Appearance Dark green powder or crystals
    Meltingpoint ca. 160°C (decomposes)
    Solubilityinwater Insoluble
    Density 1.54 g/cm³ (approx.)
    Odor Slightly sulfurous
    Stability Stable under recommended storage conditions
    Color Green
    Boilingpoint Decomposes before boiling
    Mainuses Fungicide, vulcanization accelerator, pigment
    Storagetemp Store at room temperature

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

    Packing & Storage
    Packing Opaque, high-density polyethylene bottle containing 500 grams of Nickel Bis(Dimethyldithiocarbamate); tamper-evident seal with detailed chemical and hazard labeling.
    Shipping Nickel Bis(Dimethyldithiocarbamate) should be shipped in tightly sealed containers, away from heat, moisture, and incompatible materials. Label packages with appropriate hazard warnings. Transport in accordance with local, national, and international regulations for hazardous chemicals, ensuring secure, upright placement to prevent spills or leaks during transit. Handle with protective equipment.
    Storage Nickel Bis(Dimethyldithiocarbamate) should be stored in a tightly sealed container in a cool, dry, and well-ventilated area away from direct sunlight and sources of ignition. Keep away from strong oxidizing agents and acids. Ensure the storage area is clearly labeled, and avoid contact with moisture. Proper personal protective equipment is recommended when handling and transferring the material.
    Application of Nickel Bis(Dimethyldithiocarbamate)

    Applications of Nickel Bis(Dimethyldithiocarbamate) in Industrial Manufacturing

    Nickel Bis(Dimethyldithiocarbamate) functions as a critical specialty chemical in several industrial sectors. Its role spans from polymer stabilization to advanced lubricant production, driven by reliable performance in demanding process conditions. We present below an overview of key downstream applications, with precise details on compliance standards, dosage, integration process, and resultant products.

    1. Rubber Vulcanization Accelerator in Specialty Elastomers

    Downstream elastomer producers incorporate Nickel Bis(Dimethyldithiocarbamate) as a secondary accelerator during the vulcanization of nitrile, EPDM, and chloroprene rubbers. Its use significantly reduces scorch risk while achieving fast cure cycles preferred in technical rubber parts. Unlike common accelerators, it supports unique crosslinking chemistries required by automotive and oil-resistant seals. Industrial compounding lines meter the raw material directly into the internal mixer as a dry blend at controlled temperatures to maintain batch consistency.

    Industry compliance standards

    • ASTM D2000 for automotive rubber quality classes
    • EN ISO 1629:2013 for elastomer classification
    • REACH Regulation (EC) No 1907/2006 for accelerator substances
    • China GB/T 19264 for dithiocarbamate accelerator limits in rubber

    Typical usage ratio

    • 0.2% – 0.75% by weight of the total rubber compound, adjusted based on desired cure rate and physical property targets

    Downstream process integration

    • Added during initial polymer mastication along with primary accelerators and fillers
    • Integrated prior to last-stage mixing to ensure uniform dispersion
    • Batch QC controls its dosage to match the dynamic mechanical specification sheet
    • Final press-molded products pass accelerated aging and reversion tests

    Final product types

    • High-temperature resistant O-rings for automotive
    • Fuel system gaskets in industrial machinery
    • Anti-oil hoses for hydraulic applications
    • Vulcanized technical rubber sheets for chemical sealing

    2. Antioxidant Component in Polyolefin and PVC Manufacturing

    Polyolefin compounders utilize Nickel Bis(Dimethyldithiocarbamate) as a metal-containing antioxidant for enhancing long-term thermal stability of PE and PP resins. In rigid and flexible PVC lines, this additive stabilizes against UV-induced oxidative degradation, extending service life of end applications exposed to light or high temperature. Pelletizing operations dose the additive upstream during the melt blending phase; temperature controls prevent premature decomposition and guarantee uniform additive distribution at the polymer chain level.

    Industry compliance standards

    • EN 12608 for uPVC profiles in construction
    • FDA 21 CFR 177.2600 (polymers for food contact) – restriction on heavy metal content
    • ISO 9001:2015 for quality management in compounding
    • EU Directive 2011/65/EU (RoHS) for hazardous substances in electronics polyolefins

    Typical usage ratio

    • 0.05% – 0.25% by weight, based on resin density and exposure conditions; lower dosages for indoor plastics, upper range for UV-resistant outdoor goods

    Downstream process integration

    • Pre-blended into masterbatch concentrates for accurate metering in extrusion or injection units
    • Fed with antioxidant package at compounding stage along with other stabilizers
    • Inline process controls monitor additive dispersion
    • Analytical labs test polymer pellets for residual metal content and oxidative stability performance

    Final product types

    • Weatherable window and door profiles for construction
    • Outdoor electrical conduit
    • Automotive cable jacketing
    • UV-protected packaging films

    3. Industrial Lubricant Additive for Extreme Pressure Applications

    Lubricant formulators select Nickel Bis(Dimethyldithiocarbamate) for its ashless extreme pressure (EP) and antiwear properties, especially in gear oils and greases where high loads and temperatures demand advanced additives. It forms active tribofilms on metal surfaces, minimizing wear and micro-pitting in heavily loaded gearboxes and industrial drivetrains. Rigorous quality testing ensures the ingredient does not introduce contaminants affecting base oil integrity. Blending operations introduce the raw material in a controlled step to prevent loss of activity during high-shear mixing.

    Industry compliance standards

    • DIN 51517 (Industrial gear oils)
    • ASTM D4950 (classification of lubricating greases)
    • ISO 6743/6 (classification of EP lubricants)
    • SAE J2360 (global gear oil performance specification)

    Typical usage ratio

    • 0.15% – 0.4% by total lubricant weight; adjusted based on target EP performance and base oil properties

    Downstream process integration

    • Blended with other metal dithiocarbamates and ashless additives in the mixing vessel
    • Added during oil solubilization step for maximum compatibility
    • QC samples evaluated for sulfur and nickel content as per batch record
    • Batch tracked for compliance with equipment manufacturer standards

    Final product types

    • Open and enclosed gear lubricants for steel and mining
    • EP greases for rolling bearings
    • Automotive transmission oils
    • Railway axlebox lubricants

    4. Fungicidal Agent for Industrial Water Treatment Systems

    Process water treatment specialists use Nickel Bis(Dimethyldithiocarbamate) for its efficacy against fungal contamination in industrial circulating water, such as cooling towers, pulp mill process chains, and closed-loop systems in refineries. It provides targeted control where mold and mildew threaten the integrity of pipelines and heat exchangers. Field technicians introduce the agent via shock dosing or continuous addition, adjusted based on microbial load and system flow rate. Residual analysis ensures compliance with occupational exposure and discharge regulations.

    Industry compliance standards

    • OECD Guidelines for the Testing of Chemicals (biocide evaluation)
    • EU Biocidal Products Regulation (BPR, Regulation (EU) 528/2012)
    • EPA FIFRA registration for active substances in US water treatments
    • ISO 14001:2015 for environmental management in chemical treatment plants

    Typical usage ratio

    • 5 – 20 ppm (mg/L) active ingredient in recirculating water, adjusted according to biofilm severity and treatment cycle length

    Downstream process integration

    • Dosed through automated chemical feeders programmed with system-specific protocols
    • Microbial activity monitored by on-line testing to optimize addition intervals
    • Operator logbooks cross-reference dosing records and environmental sampling results
    • Spent water managed according to local discharge ordinances on nickel and dithiocarbamate residuals

    Final product types

    • Industrial water conditioners for paper mills
    • Chemical cleaning blends for refinery piping networks
    • Anti-fungal treatments in process cooling towers
    • Maintenance solutions for HVAC circuits

    5. Catalyst Component in Polymerization of Specialty Resins

    In the resin industry, process engineers employ Nickel Bis(Dimethyldithiocarbamate) as a selective catalyst for polymerization reactions involving specialty monomers, particularly in the preparation of conductive polymers and anti-static coatings. Its unique catalytic properties support chain growth control and enhance polymer uniformity in suspension and emulsion polymerization methods. Raw material handling systems introduce the catalyst in a nitrogen-blanketed reactor system to prevent premature oxidation, with strict monitoring of reaction endpoints to ensure reproducible resin grades.

    Industry compliance standards

    • ISO 10993-18 for extractables in polymers (if medical use intended)
    • EU Regulation (EC) No 1272/2008 (CLP) for catalyst classification
    • ISO 14001 for production site environmental compliance
    • Company SOPs for catalyst addition and residue analysis

    Typical usage ratio

    • 0.02% – 0.1% by weight of reaction monomer; precise dosage calibrated via lab-scale runs according to monomer reactivity

    Downstream process integration

    • Added in premixed forms with monomers before thermal activation
    • Delivered via metered pump lines under inert atmosphere
    • Reaction kinetics tracked with in-line NMR or FTIR analytics
    • Post-polymerization filtration removes catalyst residues, confirmed by trace analysis

    Final product types

    • Conductive coatings for electronics
    • Anti-static agents for packaging films
    • Specialized resin binders for industrial adhesives
    • Polymer dispersions for high-performance paints
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    Certification & Compliance
    More Introduction

    Nickel Bis(Dimethyldithiocarbamate): Behind the Scenes of the Factory Floor

    Real Experience with Nickel Bis(Dimethyldithiocarbamate

    Working every day in the plant, you get a good sense of the value and quirks of each chemical. Nickel Bis(Dimethyldithiocarbamate), sometimes called Nickel Dimethyldithiocarbamate or Ni(DMDC)2, stands out in the world of specialty chemicals as both a workhorse and a specialty solution. Unlike many products that cycle through endless traders or catalogues, we create each batch of this nickel complex with our own hands: from reactant selection, to mixing, to quality checks. The compound’s rich green color always makes an impression, but it’s the properties beyond appearance that get attention in the industries we serve.

    The Model We Make: No Corners Cut

    Often, manufacturers try to shave costs by compromising on nickel salt purity or skipping steps that seem tedious on paper. In our plant, we stick to high-purity nickel sulfate and tightly controlled dimethyldithiocarbamate synthesis. Consistency of particle size and moisture content matters, not just for storability but for downstream processing. Each lot is packed with a focus on minimizing clumping, ensuring the entire batch remains pourable and easy to handle, even after long periods in storage.

    Chemical formulas get tossed around at trade shows, but hands-on, the difference between sloppy and carefully finished Nickel Bis(Dimethyldithiocarbamate) is clear: strong color, no caking, absence of dark or oily residues. Every time we refill the reactor, the smell and viscosity of each precursor must fall within tight expected ranges, or we stop production and go back to analyze. Years of manufacturing experience turned these checks into a routine—cutting corners just causes headaches later, for both us and the buyers.

    Why This Compound Gets Chosen

    On paper, this nickel compound’s main role is as a fungicide, rubber accelerator, or stabilizer. In practice, labs and factories demand repeatable reactivity and purity above all. For agriculture, users trust Nickel Bis(Dimethyldithiocarbamate)'s molecular structure to do its work at low concentrations, breaking up destructive fungi while leaving crops unaffected. The dosing accuracy owes a lot to exacting control during synthesis, not just the final spec sheet.

    Rubber processors look at how reliably the chemical helps with vulcanization. We know from experience it holds up well under heat and keeps residual impurity levels low—it doesn’t introduce wildcards into the cure profile. Compared to some other accelerators, it brings out the best in fast cure cycles without risking scorching or unpredictable softening. It’s not just about the cure rate, either. Older batches from other makers sometimes left a faint tack or haze; ours goes through multiple filtrations to sidestep those issues.

    Where Our Manufacturing Approach Stands Apart

    Plenty of third-party traders offer repackaged material with little traceability. Being the original producer, we take full responsibility for the contents and how well each order matches its promise. No one likes a surprise when a drum cracks open in the plant and delivers unexpected odors, wetness, or color changes—those things come down to whether proper drying, blending, and final screening were done at the source.

    Our staff controls pH levels tightly through each reaction stage; watchful eyes and regular titration make all the difference. We monitor how the color develops and test solubility in a range of solvents—if the compound starts to misbehave at any point, that batch doesn’t ship. Protocols developed over years get followed not just to meet a standard, but to ensure our clients never have to worry about batch-to-batch variation or problematic residues.

    Technical Details—What Matters, What Doesn’t

    Some users ask after melting point and solubility data. Our Nickel Bis(Dimethyldithiocarbamate) forms a fine, deep green powder, and maintains stability in dry, cool conditions. It remains stable through storage and the formulation process if not exposed to excess heat or moisture. Moisture content gets tracked closely in our plant; too wet, and the product clumps or degrades, too dry and you can see fine dust loss. Throughout production, we keep close tabs so the final product always arrives ready for immediate weighing and use—no breaking up bricks or scraping crusty residue from the drum.

    We’ve tested the response of our compound in both aqueous and solvent-based applications. Our formulation disperses cleanly, unlike some older products that might float or clump up in tanks. Downstream users often notice problems only after blending, but we’ve worked with partners to prevent those headaches. The final result is a stable, workable powder that handles as smoothly in large industrial batches as it does in controlled lab-scale trials.

    The Way Our Nickel Bis(Dimethyldithiocarbamate) Measures Against Other Options

    Many in the market look at nickel dialkyldithiocarbamates and lump them together. Not all perform the same. Some dialkyl versions use heavier side chains that tweak solubility or reactivity, but our dimethyl version delivers reliable reactivity and better environmental handling than bulkier analogues. Compared to nickel diethyldithiocarbamate, for example, our version disperses faster and shows steady fungicidal and accelerant properties, without the added odor or handling problems.

    The real difference shows up in testing: lower residual solvents, tighter distribution in particle size, and smoother results when blended with plastics or rubber bases. Some competitors’ batches end up with inconsistent shade or texture. These subtle differences—small to someone not working directly with the product—turn out to be vital for users who need tight process control and a certain feel in their finished goods.

    There’s also the environmental question. Some dithiocarbamates come with tough regulatory hurdles or cause downstream contamination, but our team keeps each step in-house to track trace impurities. Each run avoids excess sulfur or carrier residues, which can complicate regulatory filings. In feedback from customers, this attention to detail shows up most in the smooth passage of compliance audits.

    How Usage Shapes Production Choices

    Rubber compounding specialists, for instance, have strict guidelines for ingredient purity and reactivity profiles. There’s little room for off-spec batches. Each gram of our material traces back to a production record; traceability ensures that no mystery contaminants, from metals to organics, spoil a processing run. For years, we’ve worked with product developers on tweaking formulation stability and shelf life, so our Nickel Bis(Dimethyldithiocarbamate) ships ready-to-use, fitting immediately into their own manufacturing workflows.

    In crop protection, overapplication or underapplication both cause loss. Our compound provides a buffer here: batches with steady concentration simplify dosing, so end users apply only what is needed, minimizing waste and runoff. While older versions from resellers sometimes showed uneven dispersion or partial clogging in spraying rigs, our approach of consistent micronization eliminates that headache, making agricultural applicators’ jobs easier and more predictable.

    Lessons Learned from Years of Nickel Compound Production

    No line worker or plant manager wants to deal with unexplained downtime or scrap batches. Quality comes from a mix of solid training, reliable raw materials, and rigid adherence to process controls. Every kilogram of Nickel Bis(Dimethyldithiocarbamate) has to live up to our internal criteria—not just basic specs.

    Equipment cleanliness turns out to be one of the biggest factors in making nickel compounds that stay pure through multiple batches. Contaminants stick around in reaction vessels if cleaning slips. We learned this the hard way early on, encountering trace cross-reactivity with other batch residues. These days, our equipment cleaning protocol involves more checks than some would call for, but we’ve seen the difference that brings, both in product quality and customer satisfaction.

    Another key lesson: reliable drying makes for stable product. Too many shortcuts with air-drying, heating, or insufficient air movement cause moisture retention and later spoilage. We monitor with calibrated weighing and moisture analysis tools, recognizing that a drum leaving with excess water means product loss and potential regulatory headaches for the buyer. Each employee gets trained to flag even the smallest variation from the drying curve, which has led to fewer returns and higher satisfaction year-over-year.

    Feedback Loops with Customers and Partners

    One thing that changes the game for us has been the open channels with customers. Many call in to discuss adjustments for emerging markets—regulatory shifts, new application areas, or compatibility with innovative polymer blends. Through countless conversations, we have adjusted both process and packaging. For instance, we used to get complaints about static build-up in some packing types. In response, we moved to new linings that prevent clinging and caking, making it easier for customers to fully empty every drum.

    Users who process the product under varying humidity now get material treated and packed under carefully controlled, low-moisture conditions. Packaging innovations have come as a direct response to customer input: smaller drums for labs, larger sacks for factories. The goal is always to keep access and usability simple, so no one wastes time at the dispensing line breaking down giant blocks or scraping for remaining powder at the seams.

    Safety—The Backbone of Responsible Manufacturing

    Nickel Bis(Dimethyldithiocarbamate) demands careful handling, not just on our end but downstream as well. We keep dust levels low in our facility, using localized extraction and sealed transfer points so staff avoid breathing in fine particles. Years of experience have taught us the importance of safety culture. Each employee knows not to cut corners, even on a busy shift. Training includes both standard handling and what to look for if something seems off with a batch—colors, odors, clumping, all get reviewed before an order leaves the warehouse.

    Any customer can request up-to-date safety documentation; in this industry, transparency helps both with compliance and long-term partnerships. Many regulatory groups increasingly require clean tracking of nickel and related organics, and our in-house testing keeps us—and our customers—ahead of shifting standards. We regularly update our production and analysis protocols to address evolving regulatory requirements both for product use and waste handling, drawing on industry and academic reports as well as customer feedback.

    Environmental Responsibility in Nickel Bis(Dimethyldithiocarbamate) Production

    One of the biggest risks with dithiocarbamates is improper waste handling at the manufacturing stage or during product use. We’ve spent years refining aqueous waste treatment processes, so nickel or organosulfur residues do not make their way back to the environment. Our system channels all liquid effluents through neutralization and precipitation steps, allowing for safe disposal and recycling wherever possible. The investments pay off: our local regulatory body recognizes our low emissions, setting us apart from operations that treat cleanup as an afterthought.

    With global demand rising, resource efficiency cannot be ignored. We use reclaimed packaging wherever it stays safe and clean, reducing unnecessary waste. Partnering with local recycling outfits ensures that drums and bags get a second life instead of filling up landfill space. Our laboratory team routinely looks for process improvements—higher yield syntheses, less solvent use, tighter controls on emissions. These touches mean less nickel and dithiocarbamate loss per batch, a win on both environmental and economic fronts.

    What Sets Nickel Bis(Dimethyldithiocarbamate) Apart from Other Nickel Compounds

    Working day-in and day-out with this product, you realize what distinguishes it from similar complexes in the market. Nickel salts like sulfate and chloride are common in plating or catalyst processes, but they lack the targeted reactivity in crop protection and specialty rubber mixes. Nickel diethyldithiocarbamate and dipropyldithiocarbamate, for all their similarities, have slightly different molecular interactions—subtly affecting both environmental handling and end-use effectiveness.

    The dimethyl variant offers lower toxicity to non-target species, simpler decomposition during industrial processing, and a lower regulatory burden in many jurisdictions. It also avoids the strong residual smell sometimes left by longer-chain analogues. The odor may seem like a minor detail, but in plant environments where workers deal with these chemicals every day, it matters more than suppliers initially realize.

    Comparing application experiences, users note that our particular approach to synthesis leads to fewer application problems—no blocked sprayers, no residue accumulation, and more reliable results in polymer blends. Customers who previously got product from repackagers sometimes report inconsistent performance, primarily due to hidden impurities or uneven granulation. Every drum we ship gets tracked by batch, and we invite end users to share their application results back, adjusting our process to keep real-world problems at bay.

    Continuous Improvement: Evolving with Industry Demands

    The story of Nickel Bis(Dimethyldithiocarbamate) manufacturing is far from static. We stay engaged with both end users and academic partners to ensure our production keeps pace with market needs. As regulations evolve, so do our lab processes. Users may see new packaging, tighter batch specifications, or even altered physical forms appropriate for automation or micro-dosing as feedback loops push us to update our manufacturing line.

    Listening to international customers has encouraged us to retool for varying purity and regulatory standards. Shipping material for sectors as different as food packaging and industrial adhesives showed us the value of broad compatibility; that’s led to ongoing R&D efforts targeted at process flexibility and material purity. Our line engineers get direct access to peer-reviewed insights, enabling small but critical improvements to each run.

    Customer-Centered Collaboration Brings Reliability

    We treat each question or complaint as a chance to refine our offering. Our direct line to buyers—without the buffer of too many distributors—means issues get solved by the people who actually manage the reactors, dry rooms, and pack-off lines. The level of engagement builds long-term trust, reflected in repeat purchases and willingness from clients to include us in their product development phases.

    Our team enjoys these dialogues; we see ourselves not just as chemical providers but as genuine partners. Meeting a tight deadline, customizing package sizes, or tweaking dryness, all these changes start with a simple phone call or site visit. The majority of our staff gets regular training in science, process operation, and customer engagement, so every handoff—from order to shipment—feels personal and responsive.

    Future Directions for Nickel Bis(Dimethyldithiocarbamate)

    We see opportunities and challenges ahead. Emerging green chemistry techniques may shift both how Nickel Bis(Dimethyldithiocarbamate) gets produced and how it gets applied. Research teams, including ours, work on alternative raw material sources and more selective catalysts to minimize waste and increase yields. Our technical staff have piloted processes that use less water and energy, cutting down on both cost and emissions. We intend to stay at the forefront of these transitions, applying each lesson from the floor to the next generation of production.

    Feedback from environmental safety officers helped us catch early the shift toward lower-toxicity crop inputs. We’re investing in new data logging and batch record systems that help both us and customers stay ahead of traceability laws. Staying nimble remains a challenge with regulatory landscapes constantly in flux, but we see that as all part of being a steady supplier as well as a responsible manufacturer in a changing world.

    Staying Grounded: Nickel Bis(Dimethyldithiocarbamate) as a Manufacturer's Product

    Our Nickel Bis(Dimethyldithiocarbamate) represents more than just a commodity. Every drum, every batch, carries with it the attention of a workforce deeply involved in the details—from the minerals feeding our process, to the final check of color and texture, to the responses we gather from labs and factories worldwide. We are not middlemen. We take pride in our ability to shape every step, listen closely to what our partners need, and act on it right away. This hands-on approach, coupled with the lessons picked up from decades at the reactor and packing line, gives us confidence that our product will not just meet needs but keep evolving as those needs change.

    Future shifts in technology and policy will keep us adapting, but the basics remain the same: clean raw materials, tidy operations, reliable chemistry, and attention to each user’s feedback. Nickel Bis(Dimethyldithiocarbamate) has earned its spot at the intersection of practical, tough industrial needs and a growing demand for responsible chemistry. Speaking as those who make it—not just move it—our commitment continues, batch after batch, to real-world performance and safety.