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HS Code |
357659 |
| Chemical Name | 1-Methyl-2-Imidazolecarboxaldehyde |
| Cas Number | 2546-89-2 |
| Molecular Formula | C5H6N2O |
| Molecular Weight | 110.12 |
| Appearance | White to off-white crystalline powder |
| Melting Point | 85-88°C |
| Solubility | Soluble in water and organic solvents |
| Purity | Typically ≥98% |
| Storage Conditions | Store at room temperature, keep container tightly closed |
| Smiles | Cn1cc[nH]c1C=O |
| Inchi | InChI=1S/C5H6N2O/c1-7-3-2-6-5(7)4-8/h2-4H,1H3 |
As an accredited 1-Methyl-2-Imidazolecarboxaldehyde factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | 1-Methyl-2-Imidazolecarboxaldehyde is supplied in a 25-gram amber glass bottle, with tamper-evident seal and hazard labeling. |
| Shipping | 1-Methyl-2-Imidazolecarboxaldehyde is shipped in tightly sealed containers, safeguarded from moisture and light. It is transported according to standard hazardous chemical regulations, with appropriate labeling and documentation. Suitable protective packaging ensures containment during transit, and compliance with local, national, and international shipping requirements is strictly maintained for safety and legal adherence. |
| Storage | Store **1-Methyl-2-imidazolecarboxaldehyde** in a cool, dry, and well-ventilated area, tightly sealed in a container compatible with organic chemicals. Protect from light, moisture, and sources of ignition. Avoid contact with strong oxidizing agents and acids. Clearly label the container, and keep it away from incompatible materials. Follow standard laboratory chemical storage guidelines for hazardous substances. |
Applications of 1-Methyl-2-Imidazolecarboxaldehyde in Industrial Manufacturing1-Methyl-2-Imidazolecarboxaldehyde serves as a key intermediate in various specialized industrial sectors. Its reactive aldehyde group and imidazole core enable efficient downstream modifications across synthesis of advanced materials, pharmaceuticals, and agrochemicals. As a direct manufacturer, we supply product consistently controlled for purity, traceable batch records, and technical support for precise integration into customer operations worldwide. 1. Active Pharmaceutical Ingredient (API) IntermediatesPharmaceutical production uses 1-Methyl-2-Imidazolecarboxaldehyde in the synthesis step for certain heterocyclic drug scaffolds. The compound’s aldehyde group undergoes nucleophilic addition or reductive amination to construct advanced intermediates, often as part of the core structure formation. Consistency in impurity profile and heavy metal content is essential for cGMP-based API manufacturing. Industry compliance standards
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2. Agrochemical SynthesisThe material functions as a core-building block in agrochemical intermediate production, especially for synthetic plant growth regulators and certain azole pesticides. Its reactivity supports alkylation, cyclization, and imidazole-side chain tailoring essential in modern crop protection chemistry. Industry compliance standards
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3. Resin and Polymer ModifierIn specialty polymer applications, customers use 1-Methyl-2-Imidazolecarboxaldehyde as a chain extender or crosslinking agent in polyimide and epoxy resin systems. The aldehyde group provides compatibility with amine and anhydride curing systems, allowing precise adjustment of glass transition temperature and mechanical profile in engineered polymers. Industry compliance standards
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4. Analytical Reference Material ProductionReference material suppliers employ this compound as a marker or labeled standard for imidazole ring quantification in analytical chemistry. Its distinct structure enables traceable validation of LC/MS and GC/MS methods in pharmaceutical and forensic laboratories. Industry compliance standards
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From the vantage point of a chemical manufacturing team that pulls together each batch of 1-Methyl-2-Imidazolecarboxaldehyde, it’s clear the journey from base chemicals to a finish that meets today’s research and industrial standards requires more than know-how. It demands care layered with discipline and a readiness to rework methods until both quality and consistency push ahead of the pack. Our experience with the multi-step synthesis and isolated purification of this product confirms each gram tells a story — not just of raw material, but of repeated refinement and close monitoring over each reaction stage.
The backbone of this molecule comes from the imidazole ring system, which carries a methyl group at the 1-position and an aldehyde function at the 2-position. This configuration brings special reactivity not found in similar imidazole derivatives. As manufacturers, we watch the methyl group shield the ring from certain side reactions, while the aldehyde carbonyl lends itself to a broad set of synthetic strategies. This compound doesn’t mimic the behavior of its close relatives like 2-formylimidazole or 1-methylimidazole. Instead, its combined properties give chemists both selectivity and flexibility.
The difference in reactivity flows from hands-on experience. For example, the added methyl group not only modifies polarity but also impacts solubility in organic solvents, giving users a material that dissolves smoothly in most standard lab environments. This small change yields knock-on effects. In our labs, we see higher yields and fewer byproducts in condensation reactions, which end-users frequently mention when discussing custom peptide or heterocycle production.
Our batches of 1-Methyl-2-Imidazolecarboxaldehyde adhere to a strict purity window — always topping 98% as determined by HPLC with confirmation from NMR spectra. We take pride in holding this compound to such benchmarks, knowing each impurity can undermine the downstream transformations our customers depend on. Every sample carries an honest appearance: off-white crystalline powder, free from discoloration or clumping. Each lot passes through melt point testing, solubility checks, and we reserve samples to recheck stability over months, not just weeks.
Production does not scale in a straight line. Every move from pilot to full-run brings adjustments. For this molecule, controlling temperature on the formylation step—often a place where younger chemists want to rush—holds the key. Too rapid a reaction often yields a jumble of tars and colored side-products, but patient reaction times coax out the isolated aldehyde, letting us keep metal content and organic volatiles well under regulatory thresholds.
Research teams focused on heterocyclic scaffolds and pharmaceutical building blocks select 1-Methyl-2-Imidazolecarboxaldehyde for its unique handling in synthetic sequences. As manufacturers, we regularly field questions from organic chemists building more complex molecules like kinase inhibitors or fluorescent probes. The methyl and aldehyde combination opens doors in cyclization reactions, especially those where 2-formylimidazole fails due to instability or poor selectivity.
In our own trials, this product shows stability toward mild bases, a major advantage during multi-step syntheses. In fact, the methyl group helps the molecule resist chromatographic tailing and unwanted hydrogen bonding—reducing yield loss during preparative separations. We have watched R&D teams cut down on time-consuming re-purifications, saving days across long synthetic campaigns.
Analytical and diagnostic device manufacturers draw on this compound to craft functionalized imidazole-based ligands. The presence of both methyl and aldehyde functionalities enables tethering to solid supports without laborious protection-deprotection cycles. This reduces both waste and dangerous byproducts, a change coming into focus as more regulations target green chemistry and minimization of hazardous residues.
In chemical distribution, many products pass through channels without a clear view of origin or processing detail. As direct manufacturers, we live side by side with the fine distinctions that matter most. Comparing 1-Methyl-2-Imidazolecarboxaldehyde with 1-methylimidazole or even raw imidazole, the contrast lies in more than formula—it shows up in behavior at the bench and on the production floor.
A lab using 1-methylimidazole might struggle with poor functional group compatibility, especially when introducing further modifications at the ring. With 1-Methyl-2-Imidazolecarboxaldehyde, laboratories push forward modifications at the aldehyde position, unlocking a wider palette of reactions while still benefiting from imidazole’s core stability. In real terms, that means fewer failed runs and less material wasted as hazardous byproducts, giving process managers practical room to optimize.
The air and moisture sensitivity typical of bare imidazole aldehydes does not surface here to the same degree. In our facilities, we maintain atmospheric controls, but we have shipped product across climates without end-users reporting major hydrolysis concerns. Some high-purity derivatives require strict storage below zero; our variant travels well at ambient temperature for reasonable periods—a detail appreciated by customers operating in field laboratories or less-controlled environments.
Scaling up always unmasks the tiny flaws that run unnoticed in small-scale work. With 1-Methyl-2-Imidazolecarboxaldehyde, we invest in precise control of starting material and step-wise purification after each reaction milestone. By sticking with on-site synthesis rather than farm out steps, we keep full traceability—ensuring nobody ends up surprised by unknown residues or batch-to-batch deviations.
Choosing the proper solvents along the way prevents downstream contamination. We avoid chlorinated solvents entirely, eliminating related trace impurities and easing the regulatory burdens for end-users in pharma and diagnostics. Our reactor setup includes real-time data logging at each critical parameter, giving us an honest read on any anomaly before a batch leaves our doors. Every discussion with client R&D teams reinforces the value of such direct oversight; in an era of tighter regulatory scrutiny, customers prefer to trust the manufacturer who knows every stir, reflux, and wash that their raw material has endured.
Any chemical carrying an aldehyde group calls for attention to skin and eye contact. In our plant, standard personal protective equipment—nitrile gloves, splash goggles, local exhaust—has handled the needs in weighing and conveyance. Our team sees little vapor hazard owing to this compound’s limited volatility, but we still ventilate areas around open processing. Companies handling gram to kilogram quantities take similar measures, based on feedback and incident review with our partners.
One advantage over typical imidazole aldehydes remains its lower reactivity toward aerial oxidation, resulting in longer shelf stability and reduced risk of evolution of byproducts during normal storage. We ship in HDPE lining with tamper seals, not only to contain any dust but also to prevent cross-contact with other sensitive intermediates.
Operating from the manufacturer’s side, tightening rules invite not just compliance but genuine innovation. Our waste management incorporates solvent recycling and multi-layer containment for any aldehyde-carrying liquid streams. That’s become crucial—not just for regulatory paperwork but for daily safety and water table protection. Across our production lines for fine chemicals, including 1-Methyl-2-Imidazolecarboxaldehyde, we have dropped chlorinated effluent to near zero.
The persistent development in catalytic and atom-economical approaches opens pathways to reduced hazardous byproducts in this synthesis stream. Our team works with local authorities and academic partners to keep abreast of new routes using less toxic reagents and to validate those in-house before switching up core process protocols. Real-world data—inline emissions, long-term sample degradation, utility draw—governs our improvement plans as much as boardroom mandates. Major clients increasingly look for these lifecycle details, especially in sectors where a company’s green credentials shape purchasing decisions at the highest levels.
Conversations with users who source their 1-Methyl-2-Imidazolecarboxaldehyde directly from us range from academic synthetic chemists needing reproducible results for publication, to contract manufacturers scaling new actives for clinical leads. The most frequent praise highlights product purity and documentation trail—not just specification sheets, but records of production conditions, storage, and shipping that track back to day-one logs.
Some call out how our lot-to-lot consistency lets them forego laborious pre-screening steps. For others, assurance comes from having access to actual analytical data—batch chromatograms, FTIR, stability analysis—at the first request. By holding fast to strict in-house controls, we can show not only what is present in each lot but what is absent—something traders and third-party channels rarely verify.
One hurdle that influences every segment of fine chemical manufacture relates to scale and purity: smaller labs crave small batches at high specification, while production-scale customers demand tens of kilograms with identical attributes. We address this by running both bench-top and larger reactors in parallel, allowing for both screening and scale-up without guesswork or compromise in handling protocols.
Global logistics add turbulence to chemical supply. As chemical manufacturers, we stage buffer inventory in several regions, giving research and formulation teams confidence during times when broader supply chains wobble. Feedback sessions with users identified this approach as a relief, particularly on time-sensitive projects with inflexible deadlines driven by regulatory filing windows.
Advancements in packaging—via moisture-proof inner bags and heavy-gauge outer drums—mean shipment to high-humidity regions no longer threatens product integrity. Through joint review sessions with industry consortiums, we fine-tune every touchpoint from factory floor to customer lab, always with real usage scenarios in mind.
Every kilo of 1-Methyl-2-Imidazolecarboxaldehyde that leaves our site reflects not just skill in reaction management, but in the experience of tuning every parameter for user value. While traders and third-party re-bottlers leave questions about process and history, direct involvement, from raw material sourcing through to packaging and technical back-up, provides the reliability that seasoned chemists demand.
Product consistency gains added weight as more labs transition to automation and digitized process control. Uniform reactivity profile plays a vital role in such environments. In real-world settings, we’ve watched automated reactors produce the same intermediate batch after batch only when raw material behaves as expected. Conversely, compounded errors from poor upstream control cascade into downtime and lost revenue. Our experience repeatedly shows the dividends of hands-on, engaged manufacture, not just rubber-stamped specification adherence.
It would be a mistake to claim 1-Methyl-2-Imidazolecarboxaldehyde covers every research or industrial challenge. What stands out in our daily practice is that the best solutions arise through close collaboration—user feedback loops, direct technical support, real-time troubleshooting. Our QC department routinely interacts with customer R&D teams during method validation or when rare off-specification problems arise. Over the years, shipping direct to over a dozen countries, the core insight remains the importance of honest results and support that traces every step before and after delivery—values that underpin not just product sales but scientific progress more widely.
As new reagents and techniques emerge, we continue to refine our manufacture of 1-Methyl-2-Imidazolecarboxaldehyde, doubling down on improvements that come from real-world demand rather than abstract marketing claims. Each day in process control and response to clients’ novel applications reinforces that good chemistry depends as much on attention to each operational detail as on the molecules themselves.
The journey of 1-Methyl-2-Imidazolecarboxaldehyde is shaped by continuous feedback loops: material in, analysis out, application upstream, review downstream. In practical terms, each successful reaction it catalyzes or enables in your laboratory draws on the investment and expertise behind each batch. By remaining focused on small differences—trace impurity removal, controlled crystallization, honest real-time documentation—we support research and development far from the confines of our own shop floor.
Researchers, commercial teams, and pilot plants see the difference that direct chemical manufacture makes, not only in reliability but in the support, transparency, and practical know-how gained from lived experience. The story of our 1-Methyl-2-Imidazolecarboxaldehyde continues to evolve with the industry, shaped not by broad claims but by practical demonstration, customer collaboration, and the drive to tackle the toughest challenges in modern synthesis.