2-FDCK Chemical Profile: Molecular Structure, Analytical Methods & Research Overview
what 2-FDCK
2-FDCK Chemical Profile
2-FDCK (2-Fluorodeschloroketamine) is an arylcyclohexylamine research compound studied for its chemical structure, analytical characteristics, and relationship to dissociative compounds. This chemical profile provides an overview of molecular information, identification methods, laboratory
Understanding compounds such as 2-FDCK requires accurate chemical documentation, including molecular data, analytical methods, and laboratory characterization techniques. This information supports researchers and professionals involved in chemical analysis and compound identification.
This 2-FDCK chemical profile provides an overview of molecular information, analytical methods, and chemical analysis guides used for research documentation.
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What Is 2-FDCK? -2-FDCK Chemical Profile
2-FDCK, also known as 2-Fluorodeschloroketamine, is a fluorinated arylcyclohexylamine compound. It is structurally related to other compounds within the same chemical family and is mainly discussed in analytical and research contexts.
The compound contains a cyclohexanone structure combined with an aromatic fluorinated group, creating a distinct molecular profile that can be examined through modern analytical techniques.
2-FDCK Chemical Information
Chemical Name:
2-(2-Fluorophenyl)-2-(methylamino)cyclohexan-1-one
Common Name:
2-FDCK / 2-Fluorodeschloroketamine
Chemical Class:
Arylcyclohexylamine compound
Molecular Formula:
C₁₃H₁₆FNO
Molecular Weight:
Approximately 221.27 g/mol
The molecular structure of 2-FDCK contains key functional groups that allow scientists to study its composition and identify it using analytical instrumentation.
Chemical Structure and Classification
The structure of 2-FDCK places it within the arylcyclohexylamine category. This chemical family is recognized for compounds containing:
Aromatic ring structures
Cyclohexane-based frameworks
Nitrogen-containing functional groups
Structural analysis helps researchers understand relationships between similar chemical compounds and their analytical characteristics.
Analytical Identification Methods for 2-FDCK
Accurate chemical identification requires laboratory-based analytical methods. Common techniques used in chemical characterization include:
Laboratory identification commonly uses advanced techniques such as GC-MS and LC-MS analysis methods for chemical characterization
GC-MS Analysis
Gas Chromatography–Mass Spectrometry (GC-MS) is widely used for separating and identifying chemical compounds based on their molecular characteristics.
GC-MS analysis provides information related to:
Molecular fragmentation patterns
Compound identification
Chemical composition
GC-MS and LC-MS Analysis Methods Guide LC-MS/MS Analysis
GC-MS and LC-MS Analysis Methods Guide LC-MS/MS Analysis
Liquid Chromatography–Mass Spectrometry (LC-MS/MS) is another important technique used for chemical analysis.
It can provide information about:
Molecular ions
Compound detection
Structural confirmation
Internal link: Chemical Analysis Guides
NMR Spectroscopy
Nuclear Magnetic Resonance (NMR) spectroscopy provides detailed information about molecular structure by analyzing atomic environments within a compound.
NMR can support:
Structural confirmation
Molecular characterization
Research documentation
FTIR Spectroscopy
Fourier Transform Infrared (FTIR) analysis examines molecular vibrations and functional groups.
It is commonly used for:
Functional group identification
Material characterization
Comparative analysis
Importance of Chemical Analysis Documentation
Chemical profiles provide structured information that helps researchers understand compound identity, classification, and analytical characteristics.
A complete chemical documentation approach may include:
Molecular information
Analytical testing methods
Structural references
Laboratory characterization data
Explore more: Chemical Analysis Guides
2-FDCK and Related Research Compounds
Chemical classification allows researchers to compare compounds based on:
Molecular structure
Functional groups
Analytical behaviour
Chemical relationships
Related chemical profile pages can help build a broader understanding of arylcyclohexylamine compounds and research chemistry.
Research Chemical Profiles
Laboratory Techniques Used in Chemical Characterization
Modern chemical analysis may involve multiple instruments working together:
Mass spectrometry
Chromatography
Spectroscopy
Molecular analysis tools
Combining analytical techniques improves confidence in chemical identification and documentation.
Frequently Asked Questions
What is 2-FDCK?
2-FDCK is a fluorinated arylcyclohexylamine compound studied mainly for chemical and analytical research purposes.
What does 2-FDCK stand for?
2-FDCK refers to 2-Fluorodeschloroketamine.
How is 2-FDCK identified?
Chemical identification can involve analytical techniques such as GC-MS, LC-MS/MS, NMR, and FTIR spectroscopy.
Why are chemical profiles important?
Chemical profiles organize scientific information about molecular characteristics, classification, and analytical methods.
Conclusion
The 2-FDCK chemical profile provides an overview of molecular information, structural classification, and analytical approaches used in chemical research documentation. Understanding chemical properties and identification methods supports accurate scientific reference and laboratory analysis.
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