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HS Code |
963229 |
| Name | Homopiperonylamine |
| Chemical Formula | C10H13NO2 |
| Molecular Weight | 179.22 g/mol |
| Cas Number | 19355-98-7 |
| Appearance | white to off-white solid |
| Melting Point | 58-62°C |
| Solubility | Soluble in water and organic solvents |
| Smiles | COC1=CC2=C(C=C1)OCCN2 |
| Synonyms | 6-(2-Aminoethyl)-1,3-benzodioxole |
| Storage Conditions | Store at room temperature, tightly closed, dry place |
As an accredited Homopiperonylamine factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Homopiperonylamine, 100g, is packaged in a sealed amber glass bottle with a tamper-evident cap and clear hazard labeling. |
| Shipping | Homopiperonylamine is shipped in tightly sealed containers to prevent contamination and moisture exposure. It is typically packaged in compliance with chemical safety regulations, with proper labeling and documentation. During transport, it should be kept in a cool, dry place, away from incompatible substances and ignition sources, according to applicable regulations. |
| Storage | Homopiperonylamine should be stored in a tightly sealed container, kept in a cool, dry, and well-ventilated area away from incompatible substances such as strong oxidizers. Protect from moisture, direct sunlight, and sources of ignition. Ensure proper labeling and keep away from food and drink. Storage areas should be equipped with appropriate spill containment and safety equipment. |
Applications of Homopiperonylamine in Industrial ManufacturingHomopiperonylamine, produced at our dedicated facility, plays a pivotal role in several specialized industrial manufacturing chains. Its unique amine structure and reactivity underpin its use in the synthesis of fine chemicals, pharmaceuticals, and select flavor and fragrance intermediates. Below, we detail practical application scenarios grounded in consistent, traceable downstream adoption. 1. Synthesis of Cardiovascular Active Pharmaceutical Ingredients (APIs)Multinational and regional pharmaceutical companies integrate homopiperonylamine into the synthesis steps for advanced intermediates in antihypertensive drug manufacturing, especially those containing modified piperonal moieties. Its reactivity and purity profile support stringent requirements in regulated API production, ensuring the necessary selectivity and yield in complex molecule assembly. Industry compliance standards
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2. Production of Piperonal-Based Fragrance IntermediatesLeading aroma chemical firms utilize homopiperonylamine to construct intermediates that impart floral and spicy notes, especially where stability and long-lasting olfactory impact are required. The material’s compatibility with piperonal derivatives permits manufacturers to develop customized ingredients for fine fragrances and personal care product bases. Industry compliance standards
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3. Manufacture of CNS Active Drug IntermediatesHomopiperonylamine remains a key intermediate for custom synthesis companies producing actives or intermediates targeting central nervous system (CNS) disorders, particularly as a source of methylenedioxy-based amine fragments. Its robust lot-to-lot quality supports process scale-up under regulated environments. Industry compliance standards
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4. Synthesis of Agrochemical Active IngredientsGlobal crop protection formulators rely on homopiperonylamine as an intermediate for advanced synthesis steps in the development of piperonyl-based fungicides and insecticide synergists. Due to its chemical specificity, it guarantees effective structural incorporation while supporting sector-specific traceability requirements. Industry compliance standards
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5. Precursor for Specialized Polymer ModifiersMaterials science companies utilize homopiperonylamine to introduce pendant methylenedioxy groups into functional polymers, enhancing final properties such as UV resistance and tailored chemical reactivity. The compound’s controlled structure allows downstream formulators to achieve required modifier performance profiles within advanced material composites. Industry compliance standards
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At our manufacturing site, we see many requests for specialty intermediates, but Homopiperonylamine constantly draws steady attention from the innovators and industrial chemists we work with. Our experience with this material stretches back more than a decade, with demand led by its importance in pharmaceutical research, custom synthesis, and the development of complex organic compounds. We craft every batch from closely monitored raw materials, using well-tested synthesis routes to maintain both purity and reliability.
Our plant produces Homopiperonylamine as a consistently pure white to off-white crystalline solid. Most batches test above 99% purity by HPLC and include a tightly controlled moisture content. Impurities such as related homologs or starting material residues remain far below typical industry specification limits. Whether customers require 25 grams for lab trials or hundreds of kilograms for larger scale production, our technical staff scales up efficiently without compromising on consistency. Every lot comes with a robust certificate of analysis, reporting not just assay and melting point, but residual solvent values and heavy metal test results as well.
Experienced chemists in the analytical lab always run GC-MS and NMR checks against authentic reference standards. While the majority of our shipments go out as the free base, we’ve also delivered the hydrochloride salt to clients who request improved solubility or easier handling. Often, customers rely on our documentation and direct support during audits or quality checks, and we’ve never wavered on transparency regarding our analytical procedures.
Most clients source Homopiperonylamine not because it’s a headline name, but because progress in drug discovery, aroma research, and material science demands highly functional amines. Many of our pharmaceutical partners use Homopiperonylamine as a building block for innovative CNS-active compounds, employing the methylenedioxy ring and extended carbon chain to impart key molecular features. The amine group reacts smoothly under reductive amination or acylation, leading to libraries of derivatives for biological screening.
A surprising number of flavor and fragrance houses rely on the molecule to explore bio-inspired scent compounds or stable intermediates. The aromatic structure, reminiscent of natural products, lends a foundation for molecules that mimic nature’s complexity without sacrificing synthetic tractability. We routinely consult with R&D groups who need gram quantities for structure-activity studies or stable isotopically labeled versions for mass spec tracking. Over the years, we’ve even scaled up for industrial clients developing new chemical sensors or specialty polymers—Homopiperonylamine’s rigid ring system introduces valuable geometric and electronic effects not found in more linear amines.
Any time we ship this compound out the door, our technical sales staff stays connected with the application chemists. We discuss batch-to-batch nuances, specific analytical profiles, and even process tweaks for downstream functionalization. For those moving from discovery to process scale, we’ve helped troubleshoot issues ranging from solvent compatibility during scale-up to optimization of reaction conditions in larger reactors.
Over years of production, we see requests for similar structural motifs—simple benzylamines, derivatives with different ring substitutions, or shorter chain analogues. Homopiperonylamine regularly stands out in these conversations, and direct experience helps us explain the practical differences. The methylenedioxy ring delivers more than just aesthetic appeal: it changes how the amine reacts, resists unwanted oxidative degradation, and enhances selectivity in key transformations. Chemists trust it to avoid some of the pitfalls of plain benzylamine, which often succumbs to oxidation or polymerization during tough steps.
Clients frequently ask us about the choice between this compound and piperonylamine or basic phenethylamine derivatives. The structure of Homopiperonylamine, with its extended chain, introduces a flexible linker between the aromatic system and the terminal amine. This flexibility often increases solubility in organic media and helps new molecules reach their biological targets by reducing steric hindrance. Researchers synthesizing CNS targets or potent receptor ligands often report improved pharmacokinetic profiles over simpler analogs.
Supply reliability also separates our Homopiperonylamine from basic commodity amines. Many global manufacturers report production instability for less common ring structures. Our plant invests in in-house control over every part of the synthesis, so clients never face stock-outs due to upstream supplier volatility. For groups validating new routes, our technical team routinely supports the move from bench chemistry to industrial process, catching any subtle differences between structurally similar building blocks.
Quality matters. From sourcing raw materials—selecting only those with traceable origin and certificate of analysis—to actively monitoring for trace contaminants like palladium, bromide, or persistent organic pollutants, our background as direct producers allows us to maintain standards above the baseline. Our reactors, filtration trains, and packaging lines all follow strict workflow controls, with automation at critical steps to reduce operator variation.
Sampling procedures include both in-process controls and finished product confirmation. If a batch veers off target for melting range, color, or moisture, we preemptively rerun the purification rather than shipping material with marginal values. Because amines can pick up water or oxidize quietly on the shelf, we pack only under dry nitrogen atmosphere and tightly seal drums or bottles. Our logistics team works with specialty carriers for both hazardous and non-hazardous routes, so degradation during transport barely rates as an issue.
Big or small clients see the same rigorous documentation: analytical spectra, purity results, and stability data for storage at ambient and refrigerated conditions. Our technical support doesn’t end at shipment. Many customers reach back out with scale-up or regulatory questions, and we keep full batch histories ready for review. With years in production, we’ve built a database of batch performances under a range of process tweaks, which helps us quickly answer new technical challenges or suggest route modifications.
No chemical production runs entirely free from pitfalls, and Homopiperonylamine—due to its functional groups—brings its own challenges. Residual starting materials or over-alkylated impurities typically lurk at low levels if reactions proceed unchecked. We’ve invested in more efficient purification setups and rigorous process tuning to limit these impurities, and we regularly validate our methods against customer reference samples. Moisture pick-up can threaten free-flowing powder, so our packaging uses multiple barriers and all loading happens in climate-controlled rooms.
From a chemical stability point of view, the methylenedioxy ring and aliphatic amine each bring quirks. Homopiperonylamine remains reasonably stable under mild acidic or basic conditions, but long exposure to high temperatures or intense UV can nudge some side reactions forward. Clients formulating sensitive pharmaceutical compounds sometimes worry about shelf life, but real-world stability studies reveal little chemical drift under reasonable handling. Where unique requirements exist—such as high-purity API precursors or stricter solvent residue levels—we tune the process or packaging further, sometimes tailoring an entire drum run for a single client with documented controls along the way.
We also see logistical complexity in global shipment. Some customers in research institutions lack cold storage or face import bottlenecks from routine security checks. Anticipating these problems, our team pre-qualifies carrier routes and provides buffer stocks to keep projects alive even if customs slows final delivery. Collaboration with our clients remains constant; it’s not rare to field a call from a lead scientist running a late-stage screening, needing immediate supply or guidance on reconstitution for biological assays.
Vigilant attention to evolving regulatory standards keeps us responsive to environmental and safety changes. As compliance requirements tighten in various regions, we review and update our procedures, invest in safer operating protocols, and produce all necessary documentation for registrations and audits. This proactive approach not only sustains trust, but also speeds up new product development efforts in highly regulated markets.
It’s common for users to discover unexpected potential in a molecule like Homopiperonylamine. Some clients walk in believing they’ve found a niche amine, only to discover wide utility after several synthesis stages. We routinely engage in technical conversations that evolve into new application strategies—perhaps optimizing reductive aminations for a novel target, or evaluating the impact of ring substitution on reactivity. This bottom-up technical consulting approach strengthens both our customer relationships and our internal knowledge base.
For R&D teams in academia or industry, speed and sureness matter more than glossy specifications. Repeat customers often reiterate that it isn’t just access to the chemical that sets us apart, but the day-to-day reliability and technical input from direct producers. Our long history in the amine category allows us to solve not just the stated problems, but also those that arise as a project unfolds.
Such openness also feeds back into our own lab. A researcher’s unique purification challenge might prompt us to retool our chromatography columns, while a process safety suggestion from a client team could prompt investment in new monitoring modules on our reactors. We rarely see one-size-fits-all scenarios; instead, every request brings its own nuance and sparks improvements both to the process and finished product.
We understand that with every gram of Homopiperonylamine comes trust, and this shapes our entire approach. Open lines to our analytical team mean that unusual test results or unforeseen challenges never become brick walls for our clients. Many of our customers operate under strict regulatory review, and our documentation stands up to the closest scrutiny. Before a new customer even places a large order, we typically provide sample grams with full analytic backing, so scale-up feels less risky and uncertainties can be ironed out early.
Repeatability stands as the true test for any synthetic intermediate. We track not just the finished composition, but the subtle shifts in melting point, crystalline form, and even batch color—data that often goes overlooked by resellers or non-producers. When a client reports trouble in an end-use application—unusual reaction yield, faint impurities in downstream NMR—we dive back into our production data and raw material sources to find a solution. Some issues can be fixed with improved filtration or slower addition rates in synthesis, and our process engineers remain directly involved to implement these improvements quickly.
Technical support extends well beyond the transaction. We know many users working under tight timelines, with R&D budgets riding on each delivery. Questions about solubility, downstream functionalization, or analytical detection often arise weeks or months after the initial sale. Our team welcomes this ongoing dialog, and we keep full archives of production and analytical data ready for reference whenever new technical questions appear.
Years of working closely with research and production chemists sharpened our perspective on why specific building blocks draw repeat business. Homopiperonylamine, with its well-defined reactivity and stability, rarely causes the downstream complications that can plague more variable intermediates. For teams advancing candidates through lead optimization or pilot scale-up, predictability lends a significant advantage—each batch behaves consistently, so process adjustments elsewhere in the pipeline don’t cascade into surprises.
Some of our earliest pharmaceutical clients initially selected this molecule for its rare structural motif. Over time, they extended their use into secondary screening projects and material science initiatives, valuing a single-source supply chain with full transparency. Others in advanced fragrance research harnessed the ring system to devise new compound libraries, benefiting from the unique interaction of the methylenedioxy group with olfactory receptors. Each use case confirms our central belief: innovative chemistry calls for partners with experience, not just inventory.
Sometimes the competitive landscape shifts, or new regulatory updates challenge previously reliable suppliers. Because we operate our own production lines, our supply resilience proves out over time—global events or raw material scarcity might disrupt many chains, but our vertical integration and backup inventory practices limit these risks for clients. It’s the details that matter: knowing each drum’s history, each analytical test, and each process tweak made in the name of performance and compliance.
Producing advanced specialty amines drives us to refine both process and product constantly. The chemistry never stands still—our R&D teams investigate both greener synthesis routes and new product forms in response to client interests. We welcome feedback from application chemists and procurement specialists alike. Every technical call or application note has the potential to drive the next incremental improvement.
Homopiperonylamine’s ongoing appeal rests not only in its reliable structure or practical reactivity, but in the commitment baked into every shipment. As industry standards shift and research demands grow more complex, we adapt quickly—testing new process equipment, validating alternative reagents, or building out documentation for novel use environments. Each improvement loops back, benefitting not only our direct clients but also the broader innovation ecosystem that depends on accessible, high-quality building blocks.
Our history with this compound, shaped by candid dialogue with countless researchers and scale-up chemists, guides us forward. We continue to invest in facility upgrades, enhanced analytical packages, and supply chain resilience to meet both today’s needs and tomorrow’s. Within our walls, Homopiperonylamine represents more than just a chemical—it reflects the continuous partnership between the manufacturer and every innovator pushing the boundaries of science.