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HS Code |
871995 |
| Chemical Name | 5-Fluoro-2-Methylbenzylamine |
| Molecular Formula | C8H10FN |
| Molecular Weight | 139.17 g/mol |
| Cas Number | 55760-18-6 |
| Appearance | Colorless to pale yellow liquid |
| Boiling Point | 208-210°C |
| Density | 1.071 g/cm³ |
| Purity | Typically >98% |
| Solubility | Soluble in organic solvents such as ethanol and DMSO |
As an accredited 5-Fluoro-2-Methylbenzylamine factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | A 100g amber glass bottle labeled "5-Fluoro-2-Methylbenzylamine," featuring hazard symbols, lot number, concentration, and manufacturer details. |
| Shipping | 5-Fluoro-2-Methylbenzylamine is shipped in sealed, chemically resistant containers to prevent leakage and degradation. It is handled according to regulations for hazardous materials, with clear labeling and appropriate documentation. The package is protected from moisture and extreme temperatures during transit to ensure safe and stable delivery to the recipient. |
| Storage | 5-Fluoro-2-Methylbenzylamine should be stored in a tightly sealed container, away from light, heat, and sources of ignition. Keep it in a cool, dry, and well-ventilated place, preferably in a flammable chemical storage cabinet. Ensure it is clearly labeled and segregated from incompatible substances such as acids and oxidizers. Always follow standard laboratory safety protocols. |
Applications of 5-Fluoro-2-Methylbenzylamine in Industrial Manufacturing5-Fluoro-2-Methylbenzylamine serves as a crucial intermediate in multiple specialized chemical processes. As the manufacturer, we supply this material to several advanced sectors requiring precise quality consistency and regulatory adherence. Below are the main industrial applications based on actual downstream demand: 1. Pharmaceutical Active Ingredient Intermediate for CNS DrugsOur 5-Fluoro-2-Methylbenzylamine is widely integrated as an intermediate in the synthesis of central nervous system (CNS) drug candidates, particularly selective serotonin and norepinephrine reuptake inhibitors (SSRIs/SNRIs). Process chemists use this amine in condensation and reductive amination steps during active pharmaceutical ingredient (API) development for clinical and commercial manufacturing. The compound’s structure, including the fluorine atom at the 5-position, plays a key role in modulating target binding and metabolic stability of resulting drugs. Industry compliance standards
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2. Agrochemical Synthesis: Fluorinated Phenylpyrrole IntermediatesAgrichemical R&D and commercial manufacturers utilize 5-Fluoro-2-Methylbenzylamine to introduce functionalized aromatic moieties in the assembly of phenylpyrrole fungicides and herbicides. Its selective reactivity and compatibility with halogenated coupling partners streamline process routes, reduce by-product formation, and support the regulatory compliance required for crop-protection chemicals. Industry compliance standards
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3. Fluorinated Polymer Modifier ManufacturingSpecialty polymers and performance materials producers use our compound to introduce site-specific fluorination into benzylamine-modified polymers. This step enhances thermal and chemical resistance, electrical insulation, and hydrophobicity required in demanding electronics and coating applications. The integration ensures specific microstructural control at the polymer chain-end or backbone, supporting application in microelectronics and specialty adhesives. Industry compliance standards
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4. Advanced Organic Synthesis: Building Block for Fine ChemicalsContract and industrial-scale fine chemical synthesis processes employ this amine as a building block in the preparation of fluorine-containing organic molecules. Its incorporation facilitates regioselective transformations, leading to the generation of fluorinated amides, ureas, and other tailored compounds. Chemists use this reagent for the preparation of libraries for medicinal chemistry, material sciences, and analytical reference standards. Industry compliance standards
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Every batch of 5-Fluoro-2-Methylbenzylamine tells a story of what matters in specialty chemicals—consistency, purity, and practicality in processes that impact both the laboratory and the industry. We’ve been running distillation columns, monitoring reactors, and doing the hands-on work that underpins the quality found in each drum. There’s value in understanding a chemical like 5-Fluoro-2-Methylbenzylamine beyond the standard product bullet points you often see online. We work with this compound daily, and in our facility, every step counts.
The chemical structure—featuring a benzylamine core with fluorine at position five and a methyl at position two—leads to unique reactivity and physical behavior. The influence of the electron-withdrawing fluorine atom alongside the electron-donating methyl group creates a compound with distinct properties. For those involved in synthesizing pharmaceutical intermediates, advanced dyes, or agrochemical candidates, these details mean practical differences in yields, handling, and downstream transformations.
In synthesis, our in-house approach utilizes precise temperature control during amination. We watch the exothermic profiles closely and check the material at different stages by gas chromatography to ensure that no impurities creep into the product. Aroma and volatility are checked as well, since the smell often tells you more about a batch than numbers alone.
We standardize production with target concentrations often above 99% by GC, and limit residual solvents and by-products to the lowest feasible margin. Moisture content is one of the first variables we monitor, as even a fraction of a percent difference can result in material clumping or loss of reactivity in follow-up reactions. Our technicians routinely measure density with electronic meters calibrated weekly, and confirm refractive index to track subtle shifts batch to batch—trust in the numbers comes from seeing them verified repeatedly.
Color and appearance aren’t footnotes. Fresh samples present as nearly colorless to pale yellow liquid, indicating stability and a clean production run. If anyone in your lab has ever opened a bottle of 5-Fluoro-2-Methylbenzylamine and noticed a tinge of brown or unexpected turbidity, they’re looking at either degradation, mishandling, or a supply chain lapse. Years of producing this compound taught us that a few degrees’ deviation in distillation can make all the difference in aesthetic and analytical purity. That’s the value of manufacturing at the source—the feedback loop is immediate.
Customers in the pharmaceutical sector frequently request this molecule as a step in assembling more complex APIs, particularly those exploring fluorinated analogs for enhanced metabolic stability. In crop science, the methyl and fluoro substituents allow for the design of new herbicidal scaffolds and fungicides. The benzylamine backbone is a proven gateway for N-alkylation, acylation, and Suzuki couplings, which means that researchers aren’t boxed in—they’re enabled to efficiently try new ideas. From our perspective, supporting this kind of chemistry goes beyond simply filling orders; it’s about making sure every researcher and process chemist downstream has material that performs predictably.
Our own experience includes pilot runs for custom analog development. Here, even minor adjustments to reaction conditions—altering catalysts, exploring different solvents, modifying stirring speeds—change product outcome and impurity profile. Feedback and close collaboration with our client's R&D teams helped us develop better isolation techniques, so the labs working on novel actives save time and reduce waste. We take pride in sharing what works and what doesn’t; our knowledge base grows with every process development tweak we try.
Plenty of manufacturers offer standard benzylamines or unimolecular analogs without functional group diversity. The addition of a fluorine atom in the five position and a methyl in the two position distinctly alters the physical and chemical profile of this compound. From a synthetic organic chemistry standpoint, adding fluorine not only changes the compound’s reactivity under catalytic conditions, but also can increase metabolic stability in drug development. The methyl group adds steric hindrance that shifts selectivity in nucleophilic aromatic substitution and controls the regioselectivity of further derivatizations.
Some buyers are familiar with unsubstituted benzylamine or para/meta-substituted fluoro analogs. Our experience shows that ortho-methylation—the “2-methyl” piece—changes boiling point, affects crystallinity when you try to form salts, and impacts how the material behaves under hydrogenation or halogenation steps. These are not minor tweaks; they produce concrete results in yield, scale-up compatibility, and shelf-life.
We’ve seen users encounter trouble trying to swap in off-the-shelf benzylamine or less selective isomers. Consistent results rarely follow when the molecule’s electronic and steric environment diverge from the carefully tuned 5-Fluoro-2-Methyl layout. The molecules are not plug-and-play equivalents; real-world chemistry rarely rewards such shortcuts.
One recurring concern among our longstanding customers involves traceability. Knowing each batch’s provenance gives them the reassurance that the material will behave predictably. We recognize the risk in relying on intermediaries who might obscure the supply chain or repack without proper monitoring. Our direct process control means we can point to raw material logs, process conditions, reaction times, and quality checks for any given batch.
Transparency shows up in Certificates of Analysis backed by in-house analytical reports, not just templated paperwork. Raw data for NMR, GC/MS, and HPLC are archived and cross-checked before shipping. This approach doesn’t just build compliance for audits, it actually gives our partners confidence in scaling their processes or transferring them to regulatory settings. Quality should always be reproducible, not anecdotal.
Scaling a specialty amine isn’t just about scaling up the glassware. We’ve been through the trials of increasing reactor volumes, extending crystallization or extraction times, and watching how mixing profiles shift as the operation gets larger. Bumps in this road often look like intermittent solvent residues or slight shifts in melting point range. Manufactures must adapt; we adapt by refining each protocol based on feedback from our own analytical team and customer labs.
In addition, shelf life and storage behavior affect everyone down the line. 5-Fluoro-2-Methylbenzylamine is less prone to hydrolysis or oxidative side reactions than some of its unsubstituted relatives. This means less worry about degradation products forming over time, which is something our QA/QC people test by running accelerated aging studies with deliberate moisture and air exposure. Results have shown that the molecule holds up well, maintaining assigned specifications even after periods longer than typical warehouse turnover.
One of the trends we notice in the chemical market involves the proliferation of third-party brokers and untraceable resellers. Working with the manufacturer lets you avoid risks like relabeled drums, undisclosed storage issues, and lack of process accountability. By producing 5-Fluoro-2-Methylbenzylamine in-house, we keep both the know-how and the product within our control, instead of handing off responsibilities at each step. That improves not just cost or turnaround times, but also safety, compliance, IP protection, and support for process upscaling.
We hold regular internal audits and validate cleaning regimens, whether transitioning from a fluorinated amine line to a non-halogenated compound or vice versa. Cross-contamination concerns are minimized with tank-by-tank records and, where practical, line segregation. The physical layout of our factory reflects the needs of molecules like this—dedicated lines, monitored headspace, inert atmosphere control for the more air-reactive intermediates.
Clients developing new synthetic routes have rigorous demands. We hear from researchers looking for reliable supply as their projects move from bench to pilot scale. Our production staff often steps in to help troubleshoot scale-up issues. For instance, we’ve found that larger volumes magnify minor complexion differences rooted in raw material variability or subtle temperature distributions within bigger vessels. Instead of facing these alone, our customers get the benefit of the data and adjustment history we keep on every scale increase we’ve managed. This collaborative approach means less troubleshooting time for everyone.
Solubility testing in different process solvents forms a regular feature in our lab notebooks. 5-Fluoro-2-Methylbenzylamine’s compatibility with alcohols and nonpolar organics streamlines many reaction setups. It doesn’t just dissolve; it stays in solution at practical concentrations and doesn’t crash out unpredictably when cooled. We’ve had cases where an alternative supplier’s batch left residues that complicated isolation steps—something traced back to microimpurities or excess water that wouldn’t have passed our in-house thresholds.
One ongoing discussion in specialty amine production surrounds minimizing environmental impacts of waste streams. We take this seriously. During our process refinement, we moved away from older amination methods that required excessive solvent or generated problematic by-products. Our process uses catalysts and scrubbing systems that limit air emissions. Wastewater undergoes staged filtration and pH control before release, and spent solvent gets recycled as possible—both for regulatory compliance and out of recognition that chemical production has a broader responsibility.
Another area where we invest effort occurs around transportation safety. The amine’s classification as a hazardous material comes with strict DOT and ADR shipping guidelines. Drum lining materials and secondary containment help preserve product integrity in transit. We’ve worked with packaging engineers on impact-resistant, tamper-evident closures because small leaks or vapor loss can have outsized effects on less tolerant downstream chemistry. Each shipping batch receives tracking codes that tie directly to our production records and quality reports. As a manufacturer, we build safeguards from packing to delivery dock.
Our most successful refinements have come directly from customer feedback. Labs have asked for additional packaging options to accommodate smaller pilot batches without risking repeated exposure or prolonged open storage. We added new vessel sizes and inert gas blanket options as a direct response. The collective reality in labs and plants drives our changes, not just what looks good in a catalog.
Maintaining open communication channels improves not just satisfaction but final product outcomes. Process chemists and manufacturing scientists talk with us about challenges, from minor color changes after custom reaction sequences to demands for even tighter impurity controls for regulatory filings. We document every request, and our R&D team frequently runs trials to see how small tweaks might satisfy new requirements or industry regulations that may be emerging. This isn’t just about responsiveness—it’s about seeing production as part of an evolving collaboration, not a one-way transaction.
Producing materials like 5-Fluoro-2-Methylbenzylamine means staying informed about international regulatory shifts. Whether it’s revised REACH guidelines in the EU or TSCA changes stateside, compliance doesn’t happen by accident. Our regulatory team monitors updates and immediately shares relevant changes with both the shop floor and our customer base. That means tweaks to documentation, batch records, or packaging can be implemented without delays that risk compliance lapses.
Auditable paper trails for every kilo shipped are a staple in our facility; randomized spot checks by third-party inspectors confirm this. We don’t just pass internal audits—we expose our processes to outside review because an open-door policy ensures any problem gets caught early. Customers relying on us for compliant sourcing see the difference between a manufacturer committed to transparency and a cut-rate operation willing to take regulatory gambles.
Operating as both producer and partner, we see the daily challenges of delivering fine chemicals that make an impact on research, scale-up, and finished product stability. Every aspect of the process—raw material quantification, reactor charge tracking, temperature ramp monitoring, downstream purification, and final QC testing—benefits from direct, day-to-day engagement with the actual product, not just paperwork. We don’t ship anything unexamined, and new employees learn the importance of “process memory”—each run builds on the last, tightening our standards.
The markets we serve count on a stable, quality-controlled supply of 5-Fluoro-2-Methylbenzylamine for a range of industrial and academic objectives. Our record in supporting researchers under NDA, customizing delivery options for R&D, and scaling up for commercial routes demonstrates that manufacturing expertise in fine organic compounds can’t be replaced by commercial reselling. We don’t just make the product—our entire process infrastructure exists to address every variable customers care about.
We keep improving - new distillation methods, better yield optimization through in-process analytics, and continual feedback-driven change helps our team stay sharp. What never shifts is our commitment to delivering material that meets the highest standards. Whether you’re developing a new agrochemical active, producing regulated intermediates, or searching for improved synthetic building blocks, the insights from years of actual production experience make a difference. Our line for 5-Fluoro-2-Methylbenzylamine benefits from lessons learned the hard way, adaptation to real-world requirements, and a culture built around direct accountability. Reliable specialty amines come from hands-on manufacturers willing to learn, adapt, and support those they supply.