Buy NB-5-MeO-MiPT Oxalate Powder
$80.00
Product Short Description
NB-5-MeO-MiPT Oxalate Powder is a brandless, high-purity (≥98%) research chemical supplied as a fine oxalate salt for analytical laboratory use. This tryptamine derivative serves as a reference standard in advanced chemical studies, with full batch documentation available. For research use only. Not for human or veterinary use. Not for clinical, diagnostic, or consumptive applications.
Product Overview
NB-5-MeO-MiPT Oxalate Powder represents a premium, brandless research chemical formulated exclusively for sophisticated laboratory applications in analytical chemistry and synthetic organic research. As a protected tryptamine derivative in stable oxalate salt form, it provides researchers with a reliable, high-purity (≥98%) compound for investigative protocols requiring precise structural analogs and reference materials. This product undergoes rigorous quality controls to ensure consistency, making it suitable for institutional labs, academic institutions, and industrial R&D environments focused on neurotransmitter analog synthesis, receptor binding studies, and chromatographic standards.
Produced without branding to maintain neutrality across global research markets, NB-5-MeO-MiPT Oxalate Powder emphasizes traceability and analytical integrity over commercial identifiers. Its oxalate form enhances solubility characteristics, facilitating accurate dissolution in standard laboratory solvents for experimental setups. Researchers value this compound for its role in expanding structure-activity relationship (SAR) explorations within the tryptamine class, always within strictly controlled laboratory settings. For research use only. Not for human or veterinary use. Not for clinical, diagnostic, or consumptive applications.
This offering positions qualified buyers to procure a verified analytical reagent that supports reproducible experimental outcomes. With comprehensive documentation including Certificates of Analysis (COAs), it meets the demands of compliance-driven research operations worldwide.
Chemical Identity & Classification
NB-5-MeO-MiPT Oxalate Powder carries the systematic designation as the oxalate salt of N-Boc-5-methoxy-N-methyl-N-isopropyltryptamine, a synthetically modified tryptamine scaffold incorporating a tert-butoxycarbonyl (Boc) protecting group on the indole nitrogen. While a specific CAS number for the oxalate salt variant is not universally registered, the core freebase structure aligns with related identifiers such as those for 5-MeO-MiPT (CAS 96096-55-8), with the molecular formula of the base approximated at C20H30N2O3 (346.47 g/mol) prior to salt formation. Synonyms include NB-5-MeO-MiPT oxalate, 5-MeO-MiPT Boc-protected oxalate, and N1-tert-butoxycarbonyl-5-methoxy-N-methyl-N-isopropyltryptamine oxalate.
Classified as a reference material and analytical reagent, this compound falls within the tryptamine family, distinguished by methoxy substitution at the 5-position of the indole ring, N-methyl-N-isopropylamine side chain, and N-Boc protection for synthetic utility. The oxalate counterion imparts enhanced crystallinity and handling stability, common in research-grade tryptamine salts. This classification supports its application as a chromatographic standard or synthetic intermediate in non-biological research contexts.
Chemical & Physical Characteristics
NB-5-MeO-MiPT Oxalate Powder manifests as a fine, white to off-white crystalline solid, characteristic of high-purity oxalate salts in the tryptamine series. Its physical form ensures ease of weighing and transfer in laboratory microscale operations, with low bulk density facilitating precise volumetric preparations. Solubility profiles indicate good dispersibility in polar solvents such as methanol, dimethyl sulfoxide (DMSO), and aqueous buffers at neutral pH, while exhibiting limited solubility in non-polar hydrocarbons like hexane or toluene.
Stability under ambient laboratory conditions remains high when protected from moisture and light, with the Boc-oxalate structure conferring resistance to oxidative degradation compared to unprotected analogs. Melting point data, derived from analogous salts, typically falls in the 140-160°C range under inert atmospheres, though exact values are batch-verified via differential scanning calorimetry (DSC). These neutral, factual characteristics position the powder as a dependable reagent for storage and experimental manipulation.
Purity & Analytical Verification
Every batch of NB-5-MeO-MiPT Oxalate Powder meets or exceeds 98% purity, as confirmed through multi-method analytical protocols standard to research chemical production. High-performance liquid chromatography (HPLC) with UV detection at 280 nm quantifies the primary component against certified reference standards, routinely achieving >99% for principal peaks. Complementary gas chromatography-mass spectrometry (GC-MS) and liquid chromatography-mass spectrometry (LC-MS) verify molecular ion clusters and fragmentation patterns consistent with the expected structure.
Nuclear magnetic resonance (NMR) spectroscopy, including 1H and 13C variants, provides structural elucidation, confirming Boc protection, methoxy substitution, and oxalate integration without impurity signals above 0.5%. Residual solvent analysis via headspace GC ensures compliance with ICH guidelines (e.g., <5000 ppm for Class 3 solvents). COAs, available upon request with each order, detail full chromatograms, spectra, and quantitative results, empowering researchers to validate material integrity prior to use.
Quality Control & Batch Integrity
Batch-controlled manufacturing ensures lot-specific traceability from raw material sourcing through final packaging, with each production run assigned a unique identifier for complete audit trails. Internal quality assurance incorporates in-process controls, including Fourier-transform infrared (FTIR) spectroscopy for identity confirmation and Karl Fischer titration for moisture content (<0.5%). Third-party verification by ISO-accredited laboratories supplements in-house testing, providing unbiased purity certifications.
Documentation standards include detailed batch records, stability summaries, and retention samples held for five years, facilitating regulatory inquiries or repeat-order matching. This rigorous framework minimizes variability, delivering consistent powder characteristics across shipments. Researchers benefit from this integrity, enabling reliable replication of analytical methods without unexpected deviations.
Safety, Handling & Laboratory Precautions
Handling NB-5-MeO-MiPT Oxalate Powder requires standard laboratory protocols observed by trained personnel in fume hoods or controlled environments. Appropriate personal protective equipment (PPE) includes nitrile gloves, safety goggles, lab coats, and respiratory protection if aerosolization risks exist during transfer. Avoid skin contact, inhalation, or ingestion by maintaining closed systems and using secondary containment.
Consult the accompanying Material Safety Data Sheet (MSDS/SDS) for detailed hazard classifications, typically including irritancy potential and precautionary statements under GHS standards. Work exclusively in designated chemical storage areas equipped with spill mitigation resources. Proper disposal follows institutional hazardous waste guidelines post-experimentation.
Packaging, Labeling & Storage
Supplied in tamper-evident, research-grade amber glass vials or high-density polyethylene (HDPE) containers with inert liners, NB-5-MeO-MiPT Oxalate Powder packaging prevents moisture ingress and light exposure. Labels feature compliant markings: product name, lot number, purity statement, CAS reference (where applicable), net quantity, handling icons, and research-use declarations per UN GHS and IATA standards for safe transport.
For optimal integrity, store at controlled room temperature (15-25°C) in a desiccator or sealed environment, away from incompatibles like strong oxidizers or bases. Under these conditions, shelf life extends beyond 24 months, with re-testing recommended annually. This setup ensures powder remains analytically viable upon receipt.
Intended Research Use & Market Positioning
NB-5-MeO-MiPT Oxalate Powder targets analytical chemistry, synthetic method development, and reference standard applications in academic, pharmaceutical R&D, and forensic laboratories. Its protected tryptamine structure suits studies in indole alkaloid derivatization, protecting group strategies, and LC/MS method validation. Educational labs utilize it for advanced organic spectroscopy demonstrations, while industrial sectors employ it in quality control assays for complex mixtures.
Positioned as a versatile reagent, it fills gaps in tryptamine analog availability without implying end-use outcomes. This market focus serves qualified entities prioritizing compliance and precision.
Ordering, Availability & Fulfillment
NB-5-MeO-MiPT Oxalate Powder is readily available for purchase through secure, WooCommerce-optimized checkout supporting major cards, bank transfers, and crypto options where compliant. Stock rotates frequently to maintain freshness, with real-time inventory updates on product pages. Orders process within 24 business hours, shipped discreetly via tracked carriers (DHL, FedEx) with signature requirements and cold-chain options if specified.
Global fulfillment adheres to export regulations, with customs documentation for research declarations. Responsive support via email or live chat addresses inquiries on batch status, COA requests, or shipping estimates, ensuring seamless procurement.
Legal & Regulatory Disclaimer
This product is sold strictly for research purposes only. Not for human or veterinary use. Not for clinical, diagnostic, or consumptive applications. Buyers assume full responsibility for compliance with all applicable local, national, and international laws and regulations governing the purchase, possession, handling, and use of research chemicals. The seller provides no warranties regarding suitability for any specific application and disclaims liability for misuse. Verify jurisdictional controls prior to ordering; export may require end-user statements.
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