|
HS Code |
188275 |
| Product Name | Acriflavine Hydrochloride |
| Chemical Formula | C14H14ClN3 |
| Molecular Weight | 259.74 g/mol |
| Appearance | Reddish-brown or orange powder |
| Solubility | Soluble in water |
| Cas Number | 8063-24-9 |
| Ph Range | 5.5 - 6.5 (1% solution) |
| Storage Conditions | Store at room temperature, protected from light |
| Usage | Antiseptic and antibacterial agent |
| Melting Point | 225-230°C (decomposes) |
| Odor | Odorless |
| Synonyms | 3,6-Diaminoacridine hydrochloride |
As an accredited Acriflavine Hydrochloride factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Acriflavine Hydrochloride is packaged in a 25g amber glass bottle with a secure screw cap and detailed chemical labeling. |
| Shipping | Acriflavine Hydrochloride should be shipped in tightly sealed containers, away from light and moisture, at ambient temperature. It is classified as a hazardous material; therefore, appropriate labeling and documentation are required. Personal protective equipment (PPE) must be used during handling, and transportation must comply with relevant chemical safety regulations. |
| Storage | Acriflavine Hydrochloride should be stored in a tightly closed container, protected from light and moisture. Store at room temperature, typically between 15°C and 25°C (59°F and 77°F). Keep away from incompatible substances such as strong oxidizing agents. Ensure the storage area is well-ventilated and chemicals are clearly labeled to prevent accidental misuse. |
Competitive Acriflavine Hydrochloride prices that fit your budget—flexible terms and customized quotes for every order.
For samples, pricing, or more information, please contact us at +8615365186327 or mail to sales3@ascent-chem.com.
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Tel: +8615365186327
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Acriflavine Hydrochloride has been at the core of our catalog since the earliest days of synthetic dye chemistry. Behind every batch from our plant stands decades spent fine-tuning processes, examining raw material origins, and verifying purity at bench scale and commercial run alike. Our customers have counted on our experience to provide a consistently high-standard dye for laboratory research, pharmaceutical development, and select industrial applications. Acriflavine Hydrochloride, with its distinctive golden-orange crystals and high water solubility, stands out among basic dyes not only for color properties but for its broad utility in science and industry.
Manufacturing Acriflavine Hydrochloride is not just about following a recipe. There is an art to achieving a consistent spectrum and purity. From our experience, minor changes in process conditions – temperature control, pH adjustment, isolation steps – create visible and measurable impacts on assay, appearance, and application suitability. Our production adheres to strict in-process analytical testing, supported by full-scale HPLC and UV-Vis spectrophotometry to confirm each batch aligns with our published specifications: dye content generally above 80%, chloride as specified, and minimal inorganic sulfates or heavy metals.
Experience has shown there is no shortcut in the removal of non-bound acridine, which often contaminates hastily manufactured material on the market. Impurities of this nature can compromise microbial staining or interfere with molecular assays. By holding every batch to high performance liquid chromatography endpoints, we preserve the sharp fluorescence and microbiological compatibility that research labs and pharmaceutical QA specialists look for.
Lab results often hinge on subtle differences in raw materials. Over the years, we have seen that uneven dye lots or poorly defined crystalline product has led many to misinterpret experimental outcomes. Electrophoresis gels, cell viability stains, and nucleic acid visualizations all depend on clarity of signal and absence of interfering background from side components. Our approach involves sourcing only high-grade starting aromatic amines and acetic acid derivatives, then refining process parameters to produce gold-standard consistency.
In our experience, research and manufacturing partners demand rapid and hassle-free re-supply, backed by technical support. Our long track record with Acriflavine Hydrochloride means we do not just ship barrels and boxes; we supply confidence for recurring orders and scale-up projects. When a pharmaceutical developer faces regulatory questions for finished product consistency, our documentation offers granular, batch-by-batch traceability furnished by lab chemists who know the lot numbers personally.
Not every Acriflavine Hydrochloride is made alike. Over the years, we have worked with product managers and procurement teams who ask why certain lots from other sources perform inconsistently for bacterial staining or DNA visualization assays. Sometimes the problem traces to other dye salts such as Acriflavine Neutral or Acriflavine Zinc Chloride, which differ structurally and display altered fluorescence spectra. These variants may also introduce unpredictable salt concentrations or coloring intensity, hampering repeat analysis.
By standardizing both the hydrochloride form and manufacturing parameters, our product achieves results that align with century-old literature and modern analytical requirements. For instance, our customers in the pharmaceutical sector rely on our material for defined molecular weights and low ash content, where alternative salts would disrupt finished product profiles or regulatory submissions. In agricultural research, only the hydrochloride version provides the desired antimicrobial performance, with neutral or zinc salts producing diminished outcomes in both animal and plant applications.
We focus tightly on making a single, well-characterized product—no mixing different forms in the same drum, and no relabeling lower grade variants. Discussions with life science end-users and industrial blenders have highlighted this as a key reason our dye stands out. Where some traders offer material of vague lineage or unknown intermediate profiles, we retain firm control from starting batch to sealed drum.
Microbiology has relied on Acriflavine Hydrochloride since long before our own manufacturing lines ran, but our deliveries have supported groundbreaking projects. We remember a research group investigating hospital-acquired infection sources who depended on the high sensitivity of Acriflavine Hydrochloride for tracking motile bacteria in water samples. The sensitivity of the assay worked only because the dye carried no off-spec contaminants and remained stably fluorescent for weeks.
In animal health investigations, veterinary researchers have counted on our production-grade dye for wound irrigation demonstrations, as acriflavine’s moderate antimicrobial effect—absent excess solvent residues—remains gentler than alternate topical antimicrobials. We field repeated questions about solution compatibility, shelf-life, and visual appearance under UV; every enquiry draws from hands-on batch analysis and long experience with storage stability.
Industrial dye blenders consult us on mixing protocols and pH adjustment. We have refined our product to tolerate a wide pH range without precipitation or color shift, thanks to ongoing dialogue with customers processing at scale. Years of feedback from the field tell us that off-color or poorly soluble acriflavine disrupts process yields and slows Q.C. validation—real costs for manufacturing lines. Technical specialists on our team have made improvements such as extended washing sequences and multiple-stage recrystallization to boost the consistency and purity of each batch.
No chemical product covers every application, and we share these realities openly with partners. Acriflavine Hydrochloride’s main strength comes in analytical and pharmaceutical contexts—not in textile dyeing, where color stability or wash-fastness fails to keep up with modern synthetic dyes. Some customers inquire about use in histology or tissue staining, but other dyes deliver sharper contrast or reduced photobleaching. Based on comparative studies in our lab, we provide honest feedback at the quotation phase, pointing out cases where alternative stains meet needs more precisely.
We have seen the occasional misuse of Acriflavine Hydrochloride in in vivo applications that exceed established concentration guidelines, with adverse outcomes for both lab animals and cell cultures. We urge careful attention to published protocols; our technical support offers literature-based dosing ranges, informed by reviews of real-world practices and our own investigation files. Over the years, close coordination with end-users has led to more widespread adoption of safer, validated handling and disposal practices.
Chemical manufacturing demands more than technical know-how. Clear lines of communication help avoid waste, repeat work, and stalled productions. Our staff know Acriflavine Hydrochloride inside and out—from incoming inspection, to batch synthesis, to shipping logistics. Face-to-face troubleshooting provides real answers for the unexpected issues that always crop up on the plant floor. When one research client inquired about a mild red tint in a particular lot, our QA team could track the source to a recently adopted solvent, and narrow the cause with a series of targeted tests—no generic computer-generated answers, just practical investigation and real-world experience. That approach underpins our continued improvement efforts.
Process audits sometimes highlight “small” adjustments: shifts in water content, time in filtration, or the temperature at precipitate formation. Decades in the plant have taught us that a 1°C difference, or a few hours left in drying, transforms the entire batch profile. Team members share findings across shifts and departments, which means fewer surprises and more reliable product for every run. In an era of supply chain turbulence, real people with hands-on experience anchor our batch controls better than any paper specification alone.
The regulatory climate for synthetic dyes has changed dramatically during the time we have been in business. Acriflavine Hydrochloride once was ordered by the kilogram without much question; now, traceability, toxicology data, and impurity profiles form part of nearly every purchase. We have adapted our process to provide up-to-date documentation and responded to customer audits with detailed batch records, permitting seamless use in regulated settings—whether for investigational drug manufacturing or critical agricultural studies.
Periodic updates to analytical methods keep our process on track with evolving pharmacopeia standards. Our team cross-verifies acid-insoluble ash and traces of unspecified organic byproducts, with special focus on reducing possible nitrosamine formation. These refinements stem from real dialogue with regulatory reviewers and are applied across all production runs, not just special deliveries for select clients.
Many research customers want assurance that our Acriflavine Hydrochloride continues to match historical publications for spectral characteristics and reactivity; we keep decades of batch retention samples on hand for comparison and problem-solving. This hands-on continuity has earned trust with QA specialists from leading universities and pharma multinationals who value genuine comparability, not just on-paper numbers.
Improvements in the Acriflavine Hydrochloride process come from incremental, tested changes. Chemists on our floor meet weekly to discuss outcomes—not every experiment nets immediate results, and sometimes a promising change uncovers a new weak point in filtration or batch recovery. The willingness to document process alterations and share data across teams pays dividends as customer applications evolve. Some improvements arise from direct feedback; for example, one customer’s report of slight opalescence in solution prompted the replacement of a filter medium, resulting in visually clearer product and grateful feedback from the field.
Our team learns as much from setbacks as successes. Equipment failures, weather impacts on supply, even new raw material sources all influence the nature of each batch. Addressing these variables head-on, by investing in preventive maintenance and refining quality controls, ensures supply resilience and strengthens relationships. Supply partners value honest communication about production timelines, so they can plan their research or manufacturing efforts better.
Supplying Acriflavine Hydrochloride means more than filling drums. Lab personnel and process technicians who contact us expect practical recommendations and expert troubleshooting. Our technical team has worked through challenges such as dye precipitation in mixed organic/aqueous blends and handled regulatory inquiries into trace metal analysis. Ongoing training and strong connections to academia keep our technical resources fresh; our support always draws on personal experience, not generic literature searches.
Direct interactions matter. On more than one occasion, an end-user struggling with slow dissolution under low temperature contacted us. Our chemists worked out improved pre-warming protocols and recommended specific buffer pairings to restore expected performance, saving both time and materials for busy labs. Follow-through builds partnership and ensures positive outcomes even after the invoice is paid.
The last decade has taught everyone in the industry about the vulnerability of supply chains. Sourcing acridine intermediates and maintaining robust supply of reagents are constant concerns; relationships with trusted suppliers and tested backup sources keep us responsive amid market shifts. Our bulk handling invests in minimized packaging waste, safer chemical handling, and traceable logistics, even for rush orders and international shipments.
Recent initiatives at our facility have focused on reducing overall waste and monitoring emissions more tightly. Through process optimization and solvent recovery, we have cut both the cost and environmental footprint per batch. Staff take training seriously on waste handling, and we keep a direct line with local authorities to address all compliance requirements. These steps make our operations more sustainable for the long term and maintain trust with environmentally conscious clients.
Customers come back to us for more than just the product. They value how our team listens, responds, and adapts to the changing landscape of research, regulation, and market need. Our long-standing stability, our laboratory infrastructure, and our willingness to own issues and fix them directly anchor those relationships. In the past year, several research labs shifted their sourcing to us after running into unreliable supply or inconsistent quality from alternative providers. Feedback on each delivery—positive and negative—drives our next round of improvements.
Choosing a source for Acriflavine Hydrochloride is about more than comparing technical data. The difference shows up in every experiment, manufacturing run, and research breakthrough: batches that perform predictably, technical questions that get answered quickly, and a supply partner who stands by every shipment. Our direct experience, both in process and in partnership, defines our reputation and the quality we bring to every drum delivered.