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Nicotinamide Hydroiodide

    • Product Name Nicotinamide Hydroiodide
    • Alias Nicotinamide hydroiodide
    • Einecs 236-877-8
    • 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
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    Specifications

    HS Code

    542437

    Product Name Nicotinamide Hydroiodide
    Chemical Formula C6H6N2O·HI
    Molecular Weight 266.04 g/mol
    Appearance White to off-white crystalline powder
    Solubility Soluble in water
    Melting Point Decomposes above 230°C
    Cas Number 552-89-6
    Storage Conditions Store in a cool, dry place, away from light
    Ph Acidic (due to HI component) in aqueous solution
    Synonyms Nicotinamide hydroiodide salt, Niacinamide hydroiodide

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

    Packing & Storage
    Packing Nicotinamide Hydroiodide, 25g, is supplied in a sealed amber glass bottle with a tamper-evident cap and clear labeling.
    Shipping Nicotinamide Hydroiodide should be shipped in tightly sealed containers to protect from moisture and light. Use appropriate secondary containment, and label packages clearly with chemical hazard information. Transport under ambient temperature, following all relevant regulations for handling, shipping, and documentation of hazardous chemicals. Avoid exposure to incompatible substances during transit.
    Storage Nicotinamide Hydroiodide should be stored in a tightly sealed container, protected from light and moisture. Keep it at room temperature, ideally between 15–25°C (59–77°F), and in a well-ventilated, dry area away from incompatible substances such as strong oxidizers. Proper labeling and secure storage are essential to prevent contamination or accidental exposure. Handle with care, using appropriate personal protective equipment.
    Application of Nicotinamide Hydroiodide

    Applications of Nicotinamide Hydroiodide in Industrial Manufacturing

    Nicotinamide Hydroiodide supports a focused range of high-value downstream applications across the pharmaceutical synthesis, specialty reagent supply, radiopharmaceutical precursor preparation, and analytical reference material production sectors. As a primary manufacturer, we supply this material to customers who apply it directly within technical processes requiring rigorous regulatory compliance, exacting formulation practices, and consistent product quality in advanced chemical manufacturing operations.

    1. Active Pharmaceutical Ingredient (API) Synthesis—Nicotinamide Iodide Salts

    This raw material finds its primary volume use in the targeted synthesis of iodinated nicotinamide derivatives for use as pharmaceutical intermediates and final actives. It enables iodide incorporation under controlled conditions to build molecular structures required by advanced pharmaceutical technologies. The precise addition of hydroiodide ions forms crucial bonds in the preparation of specialty APIs, supporting regulated commercial drug manufacturing pipelines.

    Industry compliance standards

    • cGMP (Current Good Manufacturing Practice per 21 CFR parts 210/211)
    • ICH Q7 (Good Manufacturing Practice for Active Pharmaceutical Ingredients)
    • European Pharmacopoeia (Monograph 01/2015:1170, where applicable)
    • US Pharmacopeia (USP, for relevant conforming APIs only)

    Typical usage ratio

    • 0.5%–1.5% w/w in stepwise batch or continuous flow synthesis. Final amount adjusted based on conversion yield targeting stoichiometric excess of iodide for complete reaction.

    Downstream process integration

    • Fed into key iodination stage after amide backbone formation, with in-process QC via HPLC for iodide level verification.

    Final product types

    • Iodinated nicotinamide analogues (direct human and veterinary medicines)
    • Intermediate iodinated amides for further functionalization

    2. Fine Chemical Synthesis—Specialty Reagents for Organic Laboratories

    Nicotinamide Hydroiodide is applied by fine chemical and scientific reagent producers to prepare high-purity iodide salts for laboratory applications that require precise stoichiometric control. Manufacturers use the material as a starting iodide source in catalog reagent production, ensuring consistent identity, purity, and batch traceability demanded by institutional and industrial R&D clients.

    Industry compliance standards

    • ISO 9001:2015 Quality Management Systems
    • ACS Reagent Grade Specifications
    • COA and batch-level traceability per VWR/Sigma-Aldrich standards

    Typical usage ratio

    • 2–8% w/w depending on downstream iodide ion target level in final chemical reagent formulation

    Downstream process integration

    • Metered addition during controlled mixing and recrystallization protocols, followed by vacuum drying and quality certification steps

    Final product types

    • High-purity analytical iodide reagents
    • Buffer preparation components for molecular biology and chemical assay kits

    3. Radiopharmaceutical Precursor Preparation

    Hospitals and specialized medical isotope suppliers use Nicotinamide Hydroiodide in the synthesis of iodinated tracers and labeled compounds for diagnostic nuclear medicine. The hydroiodide provides a controlled iodide source in precursor solutions, supporting high radiochemical yields and safety in radio-labeling processes that supply PET/SPECT imaging centers with clinical-grade agents.

    Industry compliance standards

    • GMP for Radiopharmaceuticals (EU-GMP Annex 3, PIC/S PE 009-16)
    • ISO 13485:2016 (Quality systems for medical devices including radiopharmaceuticals)
    • US FDA 21 CFR Part 212 (cGMP for PET drugs)

    Typical usage ratio

    • 0.1–0.5% w/v in labeling precursor solutions; titrated for maximum radiochemical yield while minimizing free iodide byproducts

    Downstream process integration

    • Introduced into radionuclide exchange vessels before short-life isotope incorporation, followed by immediate purification and QC

    Final product types

    • Clinical radiopharmaceutical precursors (e.g., I-123, I-125, I-131-labeled compounds)
    • Radio-labeled diagnostic probes for hospital radiopharmacy compounding

    4. Analytical Reference Material Production

    Accredited standards producers and chemical metrology laboratories utilize Nicotinamide Hydroiodide to generate precise reference formulations for QA/QC in pharmaceutical, environmental, and forensics testing. Manufacturers require batch-stable, certificate-backed supply, as hydroiodide’s specificity supports traceable calibration standards used in regulated HPLC, UV-Vis, and titration analyses.

    Industry compliance standards

    • ISO 17034:2016 (General Requirements for the Competence of Reference Material Producers)
    • ISO/IEC 17025:2017 (Testing and Calibration Laboratories)
    • USP Reference Standards program (for pharmaceutical materials)

    Typical usage ratio

    • 0.01–0.15% w/w in highly diluted, gravimetrically controlled solutions tailored to method calibration range

    Downstream process integration

    • Weighted addition during automated precision dissolution and aliquoting; closed-system handling under ISO-cleanroom conditions

    Final product types

    • Primary and secondary reference materials for instrument calibration
    • Traceable analytical standards for pharmaceutical and environmental method validation
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    Certification & Compliance
    More Introduction

    Nicotinamide Hydroiodide: A Chemist’s Perspective On A Trusted Chemical

    Grounding Our Work in Dependable Chemistry

    In our own operations, we’ve handled a full range of organic and inorganic iodides. Nicotinamide hydroiodide holds a unique position in our inventory—a product whose value stands out precisely because of its targeted application possibilities. With the chemical model C6H6IN2O, each batch we produce meets strict purity levels that suit all but the most finicky synthesis routes. Usually, the crystalline white to off-white powder signals a material that’s ready for fine work in both pharma intermediates and niche research.

    Every chemical tells its own story. Unlike many bulk commodity iodides, nicotinamide hydroiodide represents years of practical demand from genuine business partners. In our experience, it’s usually specialty and fragrance segments, advanced organic synthesis labs, and select pharmaceutical researchers who ask after this compound by name. Other lines—sodium iodide, potassium iodide, methyl iodide—see bigger volumes but rarely such repeat business from the most detail-oriented customers.

    Understanding How Quality Shows Up

    Some manufacturers can overlook the subtleties of crystalline form, water content, or residual solvent profile. Through repeated production cycles and research collaborations, we recognized that many of the lost yields in downstream applications trace back to inconsistent product. This is particularly true for compounds like nicotinamide hydroiodide, which suffer from hydrolysis or color changes if handled carelessly. A well-controlled environment at each crystallization and drying stage gives us the repeatability that our clients expect, batch after batch.

    No mystery or magic: you either invest in regular maintenance for your production line, or you witness higher customer complaints weeks later. Our own staff keep their eyes on the incoming iodine and nicotinamide raw materials, right down to particle sizing after drying. The result? Less batch-to-batch variability, fewer headaches for chemists who depend on reliable input for their synthetic routes, and more predictable downstream success.

    Direct Experience in Diverse Applications

    Nicotinamide hydroiodide serves as more than a lab curiosity. In our own facilities, it's a steady go-to for experimenting with iodination strategies, as both a safe iodine source and a reaction intermediate itself. Some contract research clients rely on its reactivity to build more complex niacin (vitamin B3) derivatives. Others need it for patent-protected fragrance chemistry, since many fragrance aldehydes and heterocycles start life from specialty iodides.

    Outsiders sometimes treat all organic iodides as if they’re fungible. This attitude stems from a lack of hands-on process experience. During one custom synthesis project, a new client approached us after three other suppliers produced a sticky, yellowish batch that triggered side reactions. Only after evaluating their drying and packing habits could we tighten up our process, yielding a stable, clean product that mapped perfectly to reaction outcomes and helped that partner nail their patent submission.

    How This Product Differs from Other Iodides

    Ask anyone in commercial chemistry about iodides, and you’ll hear the mainstays: sodium iodide, potassium iodide, methyl iodide, and a few others. Each comes with its own quirks. The alkali iodides, for example, find plenty of use as nucleophilic iodide sources or mild reducing agents. Methyl iodide trends toward toxicity problems and difficult handling, with regulatory warnings following every shipment.

    Nicotinamide hydroiodide avoids many of these snags. Its lower volatility, milder odor, and solid-state storage potential make it safer to process compared to simple methyl iodide. The nicotinamide backbone delivers additional hydrogen bonding, yielding a more stable salt that won’t sublimate or decompose unpredictably during routine handling.

    Moreover, its organic character allows for more nuanced reactivity in specific N-alkylation and C–H activation chemistries. Over years of doing contract R&D, we’ve learned that researchers comfortable with routine iodides get strong results by swapping in this compound at certain steps. It bridges the gap between inorganic, highly ionic salts and the highly volatile, more dangerous alkyl iodides.

    Tales from the Floor—The Realities of Sourcing and Handling

    We’ve seen the full arc in our lab and plant. Early batches demanded careful pH monitoring of the dissolution and neutralization steps, with staff learning through missteps how sensitive this iodide can be to even low-level impurities in the input. Many a young chemist has seen their pure white batch bloom unexpectedly pink or brown after leaving it exposed to even small traces of oxygen or sunlight. Today, we take no chances—everything from transfer lines to packaging drums receives real scrutiny.

    The learning curve hasn’t just shaped how we make the product—it’s shaped how we talk to customers. Over the years, we’ve advised on storage temperatures, recommended inert atmosphere packing for overseas shipments, and even adjusted particle sizing for some clients attempting automated dispensing in flow systems. Those conversations always pay off. One fragrance client, struggling with unexpected off-aromas, found all it took was an upgraded packing liner and strict temperature control in transit to cure the issue.

    Specifications Built for Research and Production—Not Marketing Copy

    Forget buzzwords. People building molecules care about what goes in their flask. Our technical sheets cite purity above 98% by HPLC or titration, with iodine content cross-verified by our in-house labs before a batch leaves the floor. Water content usually stays under 0.5%—we clamp down hard on moisture migration, knowing how quickly an iodide can drop in stability.

    Melting point checks, off-color detection, chloride and sulfate scan: it isn’t for show. We have twice pulled full batches because of subtle color shifts. Some suppliers will dump mixed solvent residues and leave it at that. Every time we take those measures, our R&D partners save weeks of troubleshooting complicated syntheses. It’s an investment we set in stone, because we’ve seen the cost of skipping steps in real production.

    The main form our product takes is a flowable, moderately dense powder, packed in well-sealed HDPE drums or glass bottles for specialty requests. Each package batch includes product origin details and lab-backed certificates. This isn’t just policy—these touchstones build trust with partners who sometimes stake entire research timelines on a single drum of intermediates.

    Listening to Customers—And Learning From Their Results

    It’s one thing to sell a drum; it’s another to follow what happens afterwards. Some of our most valuable knowledge comes from end-users willing to share their findings. Managers from pilot pharma lines report batch records on how our nicotinamide hydroiodide performed against specs, sometimes sending back grading sheets. A surge in upstream residue? Odd color formation after milling? Every report, good or bad, circles back to improvements in our own housekeeping.

    On one occasion, a research group working on new imaging agents shared details on how our iodide compared favorably to other sources. Where generic materials left behind stubborn black residues, their protocols with our batch tracked clean, both analytically and in visual presentation—something we’d struggled to guarantee ten years ago. This kind of feedback cycles right back into SOP revisions and motivates staff to hold the line even through the busiest cycles.

    The Regulatory Tightrope: Risk Management in Sourcing and Shipping

    Imports, exports, and site certifications continue to get more involved each year. Iodide chemistry isn’t immune from new restrictions, especially with heightened scrutiny on potential diversion to misuse. Chemical shipment nowadays draws more paperwork than actual transit time. Through trial and error, we honed a routine: real-time batch traceability, detailed documentation, open communication with logistics partners, right down to shipping labels that tell the whole story and withstand customs inspection without delays.

    This diligence isn’t about appearances; it saves both money and trust. Disrupted shipments ruin tight research schedules, and missing or incomplete paperwork dings inspection scores hard in regulated markets. Our regular clients—a mix of startups testing a new scaffold and established multinational labs—know they can count on transparent, compliant deliveries. Each year, we upgrade our own compliance manuals and belt-and-braces packaging for air and sea freight, learning from every hiccup.

    Supporting Innovation and Integrity in Chemistry

    Projects using this iodide often target new chemical entities, improved radiolabeling systems, or unique building blocks for specialty materials. We don’t see this as a sideline business—it’s shaped how we hire, train, and select our raw materials. Some clients ask for sub-batch sampling to match their QC protocols; others want rapid answers on contamination risk, packaging migration, or solvent residue profiles. As a manufacturer, we have no luxury to shrug these off. Each project’s success or failure returns directly to us.

    We deliver more than a material; we stand by every shipment, offering advice from handling tweaks to route modifications that shave hours off a tough step. Many of our procedures owe their existence to late-night calls or urgent emails from a project manager halfway through an unexpected scale-up. In one recent year, an abrupt need for bulk nicotinamide hydroiodide from an industrial pharma client forced us to triple-check our raw iodine source to prevent potential shortages. Every lesson learned marks steady progress for the teams that depend on us.

    Making Choices—Why Formulation Matters

    As the one producing the material—not reselling some ambiguous source—we make deliberate, hands-on decisions about every batch. We face questions about particle size, storage conditions, and analytical traces daily. Production isn’t a black box. If we cut corners, research and manufacturing partners feel it within one or two steps. If we invest in tight control and transparent process records, they gain predictability.

    Labs synthesizing higher-value compounds, whether in pharma or fragrances, come to recognize the difference. Trust is built not from the finish of a sales brochure but from months and years of consistent results. Only those who grind through missed yields and failed purities learn that lesson in earnest.

    Our pride comes from those partners who return because our compound did its job—month after month, year after year. Looking ahead, we keep refining technique, tightening control, and sharing hard-won advice with every client willing to listen.

    Looking Forward Together—Sharing Lessons From the Lab and Plant

    The chemical landscape changes, and so do the needs of those pushing boundaries in research and production. We see new uses surfacing as a result of deeper collaboration: one group tests more sustainable solvents in intermediate step-ups, another explores radiolabeling for trace diagnostics. Our commitment stays steady. We keep conversations going, chase questions until we hit bedrock answers, and treat every order as the start of a lasting partnership. Sometimes that means tweaking crystal form, sometimes dialing in a custom pack size. Always, it means production teams and sales teams sitting down together after every season to review what went right—and, more importantly, what we could fix before the next batch runs.

    Real-world chemical manufacturing is not glamorous, nor is it forgiving of lazy shortcuts. Reliability matters more now than ever, as discovery cycles tighten and regulatory scrutiny grows sharper by the year. Through it all, every kilo of nicotinamide hydroiodide we send out reflects not only our technical skills but also our respect for those who entrust us with their work. Through every complaint resolved, every handshake renewed, and every improvement logged, the strongest partnerships come from the willingness to share experience, data, and straight answers—one drum at a time.