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HS Code |
156281 |
| Appearance | Colorless and transparent liquid |
| Main Ingredient | Nano-silver particles |
| Particle Size | 1-100 nanometers |
| Solvent | Deionized water |
| Concentration | 10-100 ppm (varies by product) |
| Odor | Odorless |
| Ph | Neutral (pH 6.5-7.5) |
| Conductivity | High electrical conductivity |
| Stability | Stable under normal storage conditions |
| Storage Temperature | Room temperature (5-25°C) |
| Antibacterial Property | Effective against a broad spectrum of bacteria |
| Toxicity | Non-toxic at recommended concentrations |
| Biodegradability | Environmentally safe and biodegradable |
| Application Methods | Spraying, immersion, coating |
| Shelf Life | 1-2 years when properly stored |
As an accredited Colorless And Transparent Nano-Silver Solution factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | 250ml clear plastic bottle with a screw cap, safety seal, and chemical-resistant label indicating "Colorless And Transparent Nano-Silver Solution." |
| Shipping | The colorless and transparent nano-silver solution is securely packaged in leak-proof, chemical-resistant containers and shipped in compliance with safety regulations. Each shipment includes proper labeling and documentation for handling hazardous materials. Temperature and light control measures are maintained to preserve product stability during transit, ensuring safe and efficient delivery. |
| Storage | Colorless and transparent nano-silver solution should be stored in a tightly sealed, light-resistant container at a cool, dry place away from direct sunlight and heat sources. It should be kept away from incompatible materials, such as strong acids and oxidizing agents. Properly labeled containers and secondary containment are recommended to prevent spills and maintain solution stability. |
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Purity 99.99%: Colorless And Transparent Nano-Silver Solution with purity 99.99% is used in medical coating applications, where it achieves high-level antimicrobial efficacy against a broad spectrum of pathogens. Particle size 10nm: Colorless And Transparent Nano-Silver Solution with particle size 10nm is used in textile finishing, where it imparts durable antibacterial and odor-resistant properties to fabrics. Stability temperature up to 120°C: Colorless And Transparent Nano-Silver Solution with stability temperature up to 120°C is used in surface disinfection, where it retains antimicrobial effectiveness under high-heat sterilization processes. Concentration 100ppm: Colorless And Transparent Nano-Silver Solution at a concentration of 100ppm is used in water purification systems, where it reduces bacterial contamination to below detectable limits. Viscosity 1.5 mPa·s: Colorless And Transparent Nano-Silver Solution with viscosity of 1.5 mPa·s is used in spray disinfection, where it enables uniform distribution and rapid surface coverage. pH neutral (7.0): Colorless And Transparent Nano-Silver Solution with pH neutral properties is used in personal care formulations, where it offers antimicrobial protection without causing skin irritation. Shelf life 24 months: Colorless And Transparent Nano-Silver Solution with a shelf life of 24 months is used in pharmaceutical storage, where it maintains stable antimicrobial activity over extended periods. Molecular weight 107.87 g/mol: Colorless And Transparent Nano-Silver Solution with molecular weight 107.87 g/mol is used in air filtration coatings, where it provides consistent antimicrobial action on filter surfaces. Zeta potential -40 mV: Colorless And Transparent Nano-Silver Solution with zeta potential of -40 mV is used in polymer composites, where it ensures stable dispersion and improved material longevity. Silver content 0.01%: Colorless And Transparent Nano-Silver Solution with silver content 0.01% is used in cosmetic preservatives, where it prevents microbial growth without altering product appearance. |
Competitive Colorless And Transparent Nano-Silver Solution prices that fit your budget—flexible terms and customized quotes for every order.
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We have watched the nano-silver landscape evolve quickly as research, industry demands, and end-user expectations keep changing. Our own journey in developing the Colorless And Transparent Nano-Silver Solution came from a series of hard lessons and day-to-day observations in the chemical lab. Customers do not ask for color or haze—they need real purity, stable dispersions, and performance that does not disrupt the look or function of their applications. Traditional silver colloids have their place, but users have often wrestled with yellow tint, visible haze, and agglomeration, which put limits on fields like cosmetics, coatings, transparent films, and medical materials.
This product answers these limits. The colorless and transparent appearance comes straight from a precisely engineered nano-particulate process that avoids agglomeration right from the start. We spent years tweaking our synthesis paths—not just for smaller particle sizes, but for extremely tight distributions. An average particle size under 10nm, stabilized by proprietary, biocompatible agents, prevents the development of visible color while maintaining outstanding dispersibility in aqueous systems.
Some folks may ask why colorless and transparent matter in a nano-silver solution. The answer is rooted in the demands of modern product development. Traditional nano-silvers, especially those over 20 nm in size, often leave a yellow-to-brown tint. This restricts their use in personal care gels, transparent coatings, or light-sensitive applications—areas where appearance can’t be compromised. Customers in medical device labs and food packaging facilities told us over and over: silver’s benefits lose their shine if it spoils visual appearance.
Color and turbidity mean larger particles or agglomerates—sometimes this comes from uneven synthesis or insufficient capping agents. This can block applications in optics, LCDs, hydrogel wound dressings, filters, or antimicrobial surface coatings. So our team reworked our protocols, focusing on how the silver ions reduce and form nuclei, how those nuclei grow, and what kind of ligand or protective shell can keep them apart without sacrificing surface activity. It’s the antithesis of quick-and-dirty synthesis: small batches, careful reagent control, and continuous calibration all the way to the fill line.
Our product currently rests on two standard models by concentration: NS-30 and NS-100, which reflect 30ppm and 100ppm silver content, measured by ICP-OES and cross-checked with UV-Vis absorption. Both series suspend nano-silver particles in deionized water with less than 1% organic stabilizer by mass. The conductivity stays low, and the formula remains free of surfactants and colorants, sidestepping the risk of foam or residue in downstream products. Particle sizes clock in under 10 nm, and our DLS and TEM assays confirm narrow distributions batch after batch. This structure gives formulators predictability: you know what you’re getting, and you don’t have to build in extra safety margins for unknowns.
The biggest difference lies not in the base chemistry, but in the approach. Competitor products often scale up too fast, chasing volumes over reproducibility. We deliberately keep to a semi-batch approach, limiting reactor scale to ensure every lot hits the same tight target range for particle diameter and zeta potential. Every shift, every technician, signs off on visual, spectral, and microanalytical QC. If a batch falls out of spec for optical color, we start over, not “blend it out.” We care more about performance in your work than shifting drums fast.
We come from a background in collaboration, not just one-off sales. Our nano-silver solution ended up in places that surprised even us: transparent orthopedic films, cosmetic gels, cold paste sterilization liquids, spray disinfectants, textile coatings, and food packaging films. Some of our earliest users were frustrated medical device engineers; others, innovative material scientists testing ways to impart antimicrobial finish to flexible films without altering their appearance, feel, or printability.
The most direct application involves dilution with sterile water or buffered saline to working concentrations appropriate for desired antimicrobial potency. Users in medical device R&D often blend it directly into hydrogels, incorporating it into polymer solutions either at room temperature or with gentle heating—our stabilizers remain inert and don’t peel out at these conditions. Textile finishers, especially companies specializing in single-use surgical drapes or sports fabrics, spray-apply the solution to pre-washed materials, then dry at lower temperatures. Cosmetic formulators blend it with gel bases, noting that the absence of color or smell allows clean integration with vitamins, peptides, and hyaluronic acid without unwanted reactivity.
Even outside these core areas, paint and coating chemists found they could combine our solution into clear acrylic or polyurethane matrices without “milking” or yellowing, sidestepping costly ops to mask color. In food and beverage packaging, QA teams run routine migration and stability studies on our solution to confirm compliance with global standards—batch consistency means results stand up to regulatory scrutiny and final product audits.
Over the years, we’ve handled a spectrum of customer complaints about off-the-shelf nanosilvers. A recurring theme: inconsistent color, surprising sediment, and unpredictable antimicrobial strength. These all trace to variable particle size, poor dispersion, and batch-to-batch instability. Standard chemical reduction techniques often need huge amounts of surfactant or polymer additives—these can gum up lines, leave films sticky, or interfere with cross-linking in hydrogels.
The core difference in our colorless and transparent nano-silver solution comes from an emphasis on real stabilization, not just dispersing particles after they form, but preventing their uncontrolled growth at source. We use a unique combination of weakly binding ligands and chelating agents: this lets silver atoms cluster just enough to form active particles, but never enough to clump or change color. The result? Transparent solutions you can trust visually, and that maintain a strong antimicrobial effect across a broad spectrum of bacteria and fungi.
Another serious point: Our solution steers clear of free ionic silver excess, which can trigger skin irritation, toxicity, or rapid deactivation in biological media. Each batch ships with a profile: silver nanoparticle fraction, ionic fraction, conductivity, and residual stabilizer are tested. No more “mystery” concentrations that behave differently across production cycles.
Traditional silver nitrate or silver salt approaches have distinct problems in pH and salt stability. Our solution keeps its appearance and antimicrobial properties between pH 4-10, works in isotonic saline, and doesn’t crash or discolor even in buffer-rich environments—this is something product developers notice fast when scaling up from the bench.
One industrial coater told us they adapted fast because the lack of yellowing let their products pass cosmetic audit with new clients. A wound care developer reported reliably even dispersion into hydrogels, reducing process time and improving panel test results. In food packaging, migration testing brought no negative surprises—low ionic silver means compliance with tough migration limits. These stories match our QC data: a product that performs reliably and removes extra guessing work from your troubleshooting.
Not every application asks for colorless or highly transparent solutions, but where clarity and aesthetics matter—such as films, gels, or top coatings—this turns into a real advantage over cheaper, bulkier silver solutions. Experienced material engineers already know: product claims don’t survive long under the scrutiny of regulatory affairs or end-user testing. Meeting real-world needs with measurable improvements sets a new standard.
We keep QC tight for a reason. Every lot gets optical density measured by UV-Vis spectroscopy to verify transparency and quantify the nano-silver peak. Transmission electron microscopy (TEM) dots the i’s and crosses the t’s for morphology and size verification. ICP-OES quantifies concentration and checks for trace contaminants. Our batches consistently show sub-10 nm mean diameter and extremely low polydispersity—this avoids the color and haze seen with larger or unevenly distributed particles.
We don’t take shortcuts: no cheap fillers, no masking dyes to “fake” transparency. Batch records are digitally archived and linked by date code, so any user can trace every bottle from synthesis to shipping. We’ve worked with third-party labs for biocompatibility and cytotoxicity testing to clear barriers for regulated applications.
Our stabilizers meet FDA and EU food contact standards. We process, blend, and fill under ISO 9001-certified systems, with extra controls in place for applications under higher regulatory scrutiny. The process for cleaning and validating reactors matches requirements set by medical and food packaging clients—the same protocols apply to every order, big or small.
Safety matters at every step. Our product arrives in leak-proof, light-shielded bottles, labeled for content and batch. One former logistics partner told us the toughest batches to handle came from companies cutting corners on packaging and shelf-life testing. We never ship without signed shelf-life stability data and container closure inspection.
The debate over nano-silver’s environmental fate keeps picking up steam. We hear these concerns from brand managers and academics who work with our solutions. Our stance: smaller particles, with low excess ionic silver, reduce acute risks in effluent and waste streams. We constantly monitor for unwanted by-products and scrap out-of-spec production, instead of selling off under “alternate grades”.
As legislation on nanosilver tightens, we openly publish our safety data, and cooperate with downstream recyclers or waste processors to minimize environmental impacts. Our technical team stands ready to help troubleshoot scaled disposal or recycling for customers in more regulated sectors. We keep track of total annual silver tonnage and work with partners on ways to recover spent nano-silver wherever possible—from filter backflush to spent gels.
Our safety guidelines detail appropriate handling and protective measures, taking into account both the benefits and limitations of nanosilver. Transparency, in both solution and process, means users can make informed, science-backed decisions.
Every industry wrestles with unpredictable production hiccups—sedimentation in long-term storage, unwanted discoloration in finished goods, variable antimicrobial results between vendor lots. Our colorless and transparent nano-silver solution aims to put a real dent in these problems. For formulators who need a “plug-and-play” silver without complicated adjustment or guesswork, consistency means time saved and less waste. Batch records, shelf-life studies, reactivity profiles—these aren’t theoretical perks; they help keep the next production run on track every time.
For teams worried about particle aggregation under concentration or shear, we recommend pilot blending under the actual production conditions. Our support lab duplicates these studies for clients who need extra assurance—if any out-of-spec behavior pops up, we address it with formulation tweaks rather than glossing over with excuses.
We also recognize that different sectors may need product tweaks. Some users request lower ionic silver, others want higher or lower concentrations, or custom ratios of stabilizer to nanoparticle. We have responded with flexible, custom runs, after full technical consultation. Change isn’t just about R&D, it’s about solving actual pain points that we’ve seen ourselves in long days of troubleshooting and QA audits.
The creation of a truly colorless and transparent nano-silver solution didn’t come by accident. Years of hands-on troubleshooting in the lab, direct collaboration with users, and a commitment to eliminating frustration in downstream applications all shaped this product. We remember how much time gets wasted on vaguely described “nano-silver” products that disappoint in QC or end-use conditions. Our approach always comes back to the real-world: ask the right questions, test rigorously, and share data openly.
Customers in cosmetics, medical, packaging, and coatings demand more than technical jargon or pretty brochures. They want proof, reliability, and clear communication. Being manufacturers, we remain responsible for every drop of our solution. If laboratories, developers, or process engineers find unclear results, we jump in—no dodging, no scripted answers.
Manufacturing is not just about hitting targets, it’s about listening, learning, and building credibility through what we put in every bottle. We focus on continuous improvement, honest feedback, and readiness to troubleshoot the next challenge alongside every customer. Our colorless and transparent nano-silver solution stands as a result of those values and real-world experience. If you need a nano-silver solution that fits strict appearance and performance criteria, and you expect deep technical backing and batch-traceable confidence, our team is ready to help move your idea forward.