2-FMA Pellets 50mg

Price range: $124.00 through $529.00

2-FMA Pellets 50mg – High-Purity Research Chemical

2-FMA Pellets 50mg are precisely dosed research chemicals designed for scientific studies. Each pellet contains 50 milligrams of 2-Fluoromethamphetamine (2-FMA), a synthetic stimulant in the substituted amphetamine class. These pellets are ideal for pharmacological and neuroscientific research, particularly in exploring the compound’s effects on neurotransmitter systems such as dopamine and norepinephrine. With a purity exceeding 98%, researchers can rely on the quality and reliability of this product for their investigations.

buy 2-FMA research chemical online: Research Overview

đź§Ş Introduction

2-FMA (2-Fluoromethamphetamine) is a fluorinated phenethylamine derivative of the amphetamine class.
Within the field of analytical and forensic chemistry, it is studied for its structural, physicochemical, and analytical characteristics.
Researchers value 2-FMA as a model compound for investigating fluorine substitution effects, metabolic pathways, and structure–activity relationships (SAR) among amphetamines.

⚠️ Disclaimer: This article is for educational and scientific reference only. 2-FMA is not approved for human or veterinary use.


⚗️2-Fluoromethamphetamine structure and Classification

Property Detail
IUPAC Name 1-(2-fluorophenyl)-N-methylpropan-2-amine
Molecular Formula C10H14FN
Molecular Weight 167.22 g/mol
Chemical Class Phenethylamine / Amphetamine
Functional Group Fluorine atom at the 2-position of the aromatic ring

The substitution of a fluorine atom on the phenyl ring (ortho-position) distinguishes 2-FMA from its analogs such as 3-FMA and 4-FMA.
This small modification influences electron density, lipophilicity, and metabolic stability, making 2-FMA an important focus for comparative structure–activity studies.


🔬how to identify 2-FMA analytical data and Research Applications

1. Analytical Reference and Calibration

In forensic and toxicological analysis, 2-FMA serves as a reference standard for developing chromatographic and spectrometric detection methods.
Researchers use it to validate HPLC, GC–MS, and LC–MS/MS protocols to identify fluorinated amphetamines in controlled experiments.

2. Structure–Activity Relationship (SAR) Studies

2-FMA provides insight into how fluorine substitution alters receptor interaction and enzymatic metabolism.
Comparing 2-FMA with unsubstituted amphetamine or 4-FMA aids in mapping molecular affinity patterns and enzyme binding rates.

3. Metabolic Pathway and Stability Studies

Investigations into 2-FMA metabolism assess its oxidative deamination, N-demethylation, and potential fluorine-induced stability effects.
Such studies help scientists model how halogen substitution influences biotransformation kinetics.

4. Spectroscopic Characterization

Spectroscopic analysis using NMR, IR, and UV–Vis produces distinctive spectral data for 2-FMA.
These signatures help in developing spectral libraries for fluorinated amphetamine detection and comparison.


⚛️ Analytical Techniques Commonly Applied To 2-Fluoromethamphetamine structure

Technique Purpose in Research
Gas Chromatography–Mass Spectrometry (GC–MS) Qualitative and quantitative identification
High-Performance Liquid Chromatography (HPLC) Purity and retention time verification
Nuclear Magnetic Resonance (NMR) Confirmation of molecular structure
Infrared Spectroscopy (FT-IR) Functional group verification (amine, C–F bonds)
Ultraviolet–Visible (UV–Vis) Compound stability and absorbance profiling

Combined, these methods allow researchers to ensure purity, identity, and stability of 2-FMA samples in analytical work.


đź§  Scientific and Research Relevance of high purity 2-FMA chemical analysis

The amphetamine class provides a powerful platform for understanding neurochemical analogues, enzyme interactions, and synthetic pathways.
2-FMA’s fluorine substitution contributes to studies in:

  • Halogen chemistry and its effects on aromatic substitution

  • Receptor modeling and in-silico docking

  • Comparative pharmacokinetic simulations

  • Analytical method validation for halogenated stimulants

Researchers often examine isomeric behavior (2-FMA vs 3-FMA vs 4-FMA) to evaluate how positional fluorination impacts metabolic resistance and chromatographic separation.


đź§« Laboratory Safety and Handling of lab tested 2-FMA properties

Proper laboratory safety is essential when working with 2-FMA.
Follow institutional chemical hygiene plans and national safety guidelines.

Recommended practices:

  • Conduct all work in a ventilated fume hood

  • Wear gloves, protective eyewear, and lab coats

  • Avoid skin contact and aerosol exposure

  • Use airtight, labeled containers for storage

  • Keep samples in cool, dry, and dark conditions to prevent degradation

  • Dispose of materials via certified chemical waste management systems

⚠️ Note: 2-FMA is intended solely for authorized analytical or chemical research.


⚖️ Legal and Regulatory Information To buy 2-FMA research chemical online

Regulatory classification of 2-FMA differs internationally.
While it may not be explicitly scheduled in all jurisdictions, analog legislation and psychoactive substance laws may apply.

Researchers should:

  • Review local and national regulations before acquisition or study

  • Maintain documentation of research authorization

  • Store all materials securely and restrict laboratory access

  • Ensure ethical compliance with institutional and national standards

By upholding compliance and transparency, laboratories maintain both legal safety and scientific integrity.

đź§ľ Conclusion To buy 2-FMA research chemical online

2-FMA (2-Fluoromethamphetamine) represents a significant compound within the fluorinated amphetamine research domain.
Its distinctive fluorine substitution provides valuable insights into molecular behavior, stability, and analytical detection.

As part of broader studies in phenethylamine chemistry, 2-FMA continues to enhance the understanding of substitution effects and structure–function relationships under controlled, compliant laboratory conditions.

When documented properly and handled responsibly, 2-FMA supports legitimate scientific inquiry — reinforcing the role of precision, ethics, and analytical rigor in chemical research.

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