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2f-dck

(1 customer review)

Price range: $99.99 through $2,400.00

Synonym: 2-fluorodeschloroketamine
CAS Number: 111982-49-1
Formula: 2-(2-fluorophenyl)-2-(methylamino)-cyclohexanone
Molecular mass: 257.7 g/mol
Purity: >98%

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Description

buy 2F-DCK online

2F-DCK (2-Fluorodeschloroketamine) is a fluorinated analog of ketamine belonging to the arylcyclohexylamine class of dissociative research chemicals. This compound has gained considerable interest in neuropharmacology and neuroscience laboratories due to its potent NMDA receptor antagonism and structural similarity to ketamine, while featuring a fluorine substitution that can modify its metabolic and binding profile.

As a high-purity research chemical, 2F-DCK serves as a valuable tool for scientists investigating glutamate signaling, dissociative mechanisms, and potential neuroprotective pathways in controlled experimental settings.

Chemical Properties and Structure

2F-DCK features the characteristic arylcyclohexylamine backbone with a fluorine atom at the 2-position of the phenyl ring. This structural modification can influence lipophilicity, metabolic stability, and receptor affinity compared to the parent ketamine molecule.

Key chemical characteristics include:

  • Molecular formula: C₁₃H₁₆FNO
  • High purity crystalline powder form
  • Good chemical stability under recommended storage conditions
  • Selective NMDA receptor antagonist activity

The fluorine substitution is of particular interest to researchers studying how halogen modifications affect the pharmacological and pharmacokinetic properties of dissociative compounds.

Primary Research Applications

2F-DCK is primarily utilized in the following scientific domains:

  • NMDA Receptor Pharmacology — Detailed investigation of glutamate receptor antagonism and downstream signaling
  • Dissociative Mechanism Studies — Exploring the molecular basis of dissociation and altered states in laboratory models
  • Neuroprotection Research — Examining potential protective effects against excitotoxicity
  • Comparative Pharmacology — Comparing 2F-DCK with ketamine and other arylcyclohexylamines
  • Analytical Method Development — Creation and validation of detection methods for this class of compounds

The compound’s profile makes it especially suitable for electrophysiological, binding, and behavioral studies in neuroscience research.

Quality Assurance and Analytical Standards

Vylix Labs maintains rigorous quality control for 2F-DCK. Every batch is produced to high purity standards (typically ≥98%), verified through multiple analytical techniques including HPLC, GC-MS, and NMR spectroscopy. Researchers receive a comprehensive Certificate of Analysis (COA) with each order, documenting identity, purity, and key specifications.

This commitment to quality ensures batch-to-batch consistency and supports reproducible results in demanding laboratory environments.

Handling, Storage, and Safety Guidelines

For optimal chemical stability, store 2F-DCK powder in a cool, dry, and dark environment. Use airtight containers to minimize exposure to moisture and oxygen. Proper storage significantly extends shelf life and maintains compound integrity.

Standard laboratory safety protocols apply when handling 2F-DCK:

  • Wear appropriate PPE (lab coat, gloves, safety goggles)
  • Work in well-ventilated areas or fume hoods
  • Avoid inhalation or skin contact
  • Follow all institutional guidelines for research chemical management
Advantages of Using 2F-DCK in Research

Laboratories select 2F-DCK powder for its:

  • High potency as an NMDA antagonist
  • Structural similarity to ketamine with modified properties
  • Reliable performance in various assay systems
  • Utility in studying fluorine’s effects on arylcyclohexylamine pharmacology
  • Well-characterized analytical profile

These attributes make 2F-DCK research chemical a preferred tool for advanced dissociative and glutamate-related research.

Comparison with Related Dissociative Research Chemicals

Compared to ketamine, 2F-DCK often exhibits slightly altered potency and duration profiles due to the fluorine substitution. Researchers frequently use this compound to explore how halogen modifications influence binding affinity, metabolic stability, and overall pharmacological behavior within the arylcyclohexylamine class.

Best Practices for Laboratory Use

When incorporating 2F-DCK into research protocols, we recommend:

  • Verifying the COA upon receipt
  • Preparing fresh working solutions according to experimental needs
  • Including appropriate vehicle and positive controls
  • Documenting exact concentrations and conditions precisely
  • Maintaining detailed records for publication and compliance purposes
The Role of 2F-DCK in Advancing Neuroscience

2F-DCK dissociative research contributes to our broader understanding of NMDA receptor function and dissociative pharmacology. As research into glutamate systems and potential therapeutic applications continues to evolve, compounds like high purity 2F-DCK provide essential tools for mapping these complex biological pathways.

Conclusion

2F-DCK research chemical (2-Fluorodeschloroketamine) remains a significant research chemical for laboratories exploring NMDA antagonism, dissociative mechanisms, and related neuropharmacological questions. With its high purity, well-characterized profile, and reliable performance, it continues to support cutting-edge scientific discovery.

At Vylix Labs, we are dedicated to providing researchers with high purity 2F-DCK and other research chemicals, supported by transparent documentation and professional service.

Explore our full catalog of high-purity research chemicals designed for laboratory excellence.

All products are sold strictly for research and laboratory use only. Not for human or animal consumption.

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1 review for 2f-dck

  1. Nicholas

    Safe landing. Nice packaging haha

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