2C-C Pellets – 30mg
€1,200.00
Overview of 2C-C Pellets
2C-C Pellets are the pelletized form of 2,5-Dimethoxy-4-chloro-phenethylamine, a synthetic compound belonging to the substituted phenethylamine (2C) series. Compounds in this category are frequently examined in forensic science, analytical chemistry, and academic research due to their well-defined structural features and consistent analytical behavior.
On chemsmixlab.com, 2C-C Pellets are provided strictly as a reference material for laboratory and forensic analysis. Pelletization offers standardized units, making the compound easier to handle, document, and prepare for analytical workflows. In professional contexts, the term 2C-C Pellets research chemical refers to a non-pharmaceutical substance used exclusively for scientific study and analytical comparison.
Chemical Classification and Structural Features
2C-C is classified as a ring-substituted phenethylamine, characterized by methoxy groups at the 2- and 5-positions of the aromatic ring and a chlorine atom at the 4-position. This chloro substitution differentiates 2C-C from other 2C-series compounds and influences its physicochemical and analytical properties.
General chemical characteristics include:
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Chemical name: 2,5-Dimethoxy-4-chloro-phenethylamine
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Chemical class: Substituted phenethylamine
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Physical form: Solid pellets
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Appearance: Off-white to pale beige pellets
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Solubility: Soluble in appropriate laboratory-grade solvents
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Stability: Stable under controlled laboratory storage conditions
The pellet format supports consistency in weighing, storage, and sample preparation.
Laboratory and Forensic Research Applications
2C-C Pellets are used exclusively in forensic laboratories, analytical research facilities, and academic institutions. Reference compounds from the 2C series are essential for laboratories that analyze substituted phenethylamines and related structures.
Typical research applications include:
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Analytical method development and validation
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Creation of chromatographic and mass spectral reference data
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Comparative studies of halogen-substituted phenethylamines
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Training of forensic analysts and laboratory technicians
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Expansion of analytical and forensic compound libraries
Using a 2C-C Pellets research chemical supports reproducible results and strengthens the reliability of analytical findings.
Analytical Identification and Characterization
Accurate identification of 2C-C Pellets requires the use of established analytical techniques. Laboratories typically apply multiple methods to confirm compound identity and purity.
Gas Chromatography–Mass Spectrometry (GC-MS)
GC-MS is widely used for substituted phenethylamines due to its reproducible retention times and characteristic fragmentation patterns. The presence of a chlorine atom contributes to identifiable isotopic patterns in mass spectra.
Liquid Chromatography–Mass Spectrometry (LC-MS)
LC-MS offers high sensitivity and accurate molecular mass determination, making it suitable for confirmatory analysis and trace-level detection.
Fourier-Transform Infrared Spectroscopy (FTIR)
FTIR analysis identifies functional groups such as methoxy substituents and confirms aromatic ring structures.
Nuclear Magnetic Resonance (NMR) Spectroscopy
NMR provides detailed structural confirmation, particularly useful for academic research and advanced forensic investigations.
Together, these methods establish a robust analytical profile for 2C-C Pellets.
Importance in Forensic and Academic Science
Substituted phenethylamines like 2C-C are important in forensic and academic research because they represent structurally diverse compounds that require precise identification. Access to high-quality reference materials allows laboratories to:
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Confidently identify unknown samples
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Improve spectral libraries and analytical databases
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Train analysts using real-world reference compounds
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Enhance preparedness for emerging analytical challenges
A well-documented 2C-C Pellets research chemical supports defensible and repeatable forensic conclusions.
Handling and Laboratory Safety
Strict laboratory safety protocols must be followed when handling 2C-C Pellets.
Recommended safety practices include:
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Wearing gloves, lab coat, and protective eyewear
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Handling only in controlled laboratory or forensic environments
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Avoiding inhalation, ingestion, or skin contact
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Using calibrated tools for weighing and sample preparation
Proper labeling, documentation, and restricted access are essential to maintain laboratory safety and compliance.
Storage and Stability Guidelines
Correct storage is critical for preserving compound integrity and analytical reliability.
Best storage practices include:
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Airtight, chemically compatible containers
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Cool, dry, and dark storage conditions
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Protection from moisture, heat, and direct light
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Access limited to trained research personnel
Adhering to these guidelines ensures long-term stability of 2C-C Pellets for research use.
Legal and Regulatory Considerations
The legal status of 2C-C may vary depending on jurisdiction. Laboratories are responsible for ensuring compliance with local, national, and institutional regulations prior to acquisition, storage, or analysis.
ChemsMixLab provides educational and research-focused information only and does not encourage misuse or non-research activities.
Selecting Reliable Research Pellets
When sourcing substituted phenethylamine reference materials, laboratories should evaluate:
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Verified purity and analytical documentation
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Consistency between batches
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Compatibility with analytical instrumentation
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Compliance with regulatory requirements
A dependable 2C-C Pellets research chemical supports accurate data generation and high-quality scientific outcomes.
Conclusion
2C-C Pellets are a specialized substituted phenethylamine reference compound intended solely for forensic, analytical, and educational research. Their value lies in supporting compound identification, analytical method development, and professional training within controlled laboratory environments.
When handled responsibly and analyzed using established techniques, 2C-C Pellets contribute valuable reference data to forensic science and analytical chemistry. ChemsMixLab remains committed to delivering ethical, transparent, and research-focused content to support legitimate scientific work.
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