Buy 2-FMA Powder Europe
Buy 2-FMA Powder Europe. 2-FMA (2-Fluoromethamphetamine) is a potent fluorinated analog of methamphetamine, widely studied for its stimulant properties and dopamine system interaction. Known for its cleaner stimulation and focus-enhancing potential, 2-FMA is a valuable compound in neuroscience and psychostimulant research.
🧾 What is 2-FMA?
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IUPAC Name: 1-(2-Fluorophenyl)-N-methylpropan-2-amine
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Synonyms: 2-Fluoroamphetamine, 2-Fluoromethamphetamine
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CAS Number: 1017176-48-5
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Molecular Formula: C10H14FN
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Molecular Weight: 167.22 g/mol
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Purity: ≥99% (HPLC/GC-MS tested)
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Form: Crystalline Powder
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Appearance: White to off-white fine powder
✅ Key Features
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Analytical-grade 99%+ purity
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Fluorinated stimulant analog
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Structurally similar to methamphetamine
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Commonly used in neurochemical, behavioral, and CNS research
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Excellent shelf-life with proper storage
⚠️ Warning: Sold strictly for research purposes only. Not for human or animal consumption.
🧬 Applications in Research
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Neurochemical studies on dopamine reuptake inhibition
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Stimulant-receptor binding analysis
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Behavioral models for focus and motivation
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Structural activity relationship (SAR) analysis
📦 Packaging & Storage
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Vacuum-sealed, UV-resistant packaging
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Store at or below 20°C
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Shelf-stable up to 24 months when sealed properly
For wholesale pricing or institutional partnerships, contact our sales team directly.
🔒 Why Buy 2-FMA Powder From us?
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✅ GC/MS Verified for Lab Accuracy
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📦 Global, Discreet, Trackable Delivery
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🧑🔬 Trusted by University & Private Researchers
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🔒 Secure Checkout (Crypto & Card Supported)
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⭐ High Customer Retention & Repeat Orders
Order 2-FMA Powder Europe
2-FMA Powder for sale in europe, also known as 2-Fluoromethamphetamine, is a fluorinated stimulant analog studied within neurochemical, pharmacological, and analytical research environments. Structurally related to methamphetamine and substituted amphetamine analogs, 2-FMA has attracted attention in laboratory settings for its interaction with dopamine systems, stimulant-receptor behavior, and structure-activity relationship studies.





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