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2C-D Pellets – 25mg

35.00

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Description

Overview of 2C-D Pellets

2C-D Pellets are the pelletized form of 2,5-Dimethoxy-4-methylphenethylamine, a synthetic compound belonging to the substituted phenethylamine family. Compounds in this class are widely examined in analytical chemistry, forensic science, and academic research due to their distinct structural features and predictable analytical profiles. On chemsmixlab.com, 2C-D Pellets are provided strictly as a laboratory reference material for controlled scientific study.

In professional research contexts, the term 2C-D Pellets research chemical refers to a non-pharmaceutical compound used for analytical comparison, method development, and educational training. The pellet format offers consistent unit handling and reduced variability during sample preparation, which is valuable in laboratory environments.


Chemical Classification and Structural Characteristics

2C-D is classified as a substituted phenethylamine, characterized by a phenethylamine backbone with specific substitutions on the aromatic ring. The compound features methoxy groups at the 2- and 5-positions and a methyl group at the 4-position, which influence its chemical behavior and analytical response.

General chemical characteristics include:

  • Chemical name: 2,5-Dimethoxy-4-methylphenethylamine

  • Chemical class: Substituted phenethylamine

  • Physical form: Solid pellets

  • Appearance: Off-white to light tan pellets

  • Solubility: Soluble in appropriate laboratory-grade solvents

  • Stability: Stable under recommended laboratory storage conditions

The pelletized form supports standardized handling and improved consistency across analytical workflows.


Laboratory and Analytical Applications

2C-D Pellets are used exclusively in laboratory, forensic, and academic research settings. High-quality reference compounds are essential for laboratories that require accurate identification and reproducible analytical data.

Common research applications include:

  • Development and validation of analytical methods

  • Generation of chromatographic and spectroscopic reference data

  • Comparative studies of substituted phenethylamines

  • Training of laboratory personnel and students

  • Expansion of analytical and forensic reference libraries

Using a 2C-D Pellets research chemical supports precision, reproducibility, and scientific reliability in analytical investigations.


Analytical Identification Techniques

Accurate identification and characterization of 2C-D Pellets rely on established analytical techniques. Laboratories typically use multiple complementary methods to confirm compound identity.

Liquid Chromatography–Mass Spectrometry (LC-MS)

LC-MS is widely used for substituted phenethylamines due to its sensitivity and ability to provide accurate molecular mass and fragmentation data.

Gas Chromatography–Mass Spectrometry (GC-MS)

GC-MS produces reproducible retention times and characteristic fragmentation patterns, making it valuable for forensic analysis and database comparison.

Fourier-Transform Infrared Spectroscopy (FTIR)

FTIR analysis helps identify functional groups such as methoxy substituents and confirms the aromatic structure of the compound.

Nuclear Magnetic Resonance (NMR) Spectroscopy

NMR offers detailed structural confirmation and is commonly used in academic or advanced forensic laboratories.

Together, these techniques establish a comprehensive analytical profile for 2C-D Pellets.


Importance in Forensic and Academic Research

Substituted phenethylamines like 2C-D are important in forensic and academic research because they represent chemically diverse compounds that laboratories may encounter in analytical work. Access to reliable reference materials allows researchers to:

  • Accurately identify unknown samples

  • Strengthen analytical databases and spectral libraries

  • Train laboratory staff using real-world reference compounds

  • Prepare for emerging analytical challenges

A properly documented 2C-D Pellets research chemical supports credible, repeatable, and defensible laboratory conclusions.


Handling and Laboratory Safety

Strict laboratory safety procedures must be followed when handling 2C-D Pellets.

Recommended safety practices include:

  • Wearing gloves, lab coat, and eye protection

  • Handling only in controlled laboratory environments or fume hoods

  • Avoiding inhalation, ingestion, or direct skin contact

  • Using calibrated tools for weighing and sample preparation

Clear labeling, documentation, and restricted access are essential for maintaining laboratory safety and regulatory compliance.


Storage and Stability Guidelines

Correct storage conditions help preserve compound integrity and analytical reliability.

Best storage practices include:

  • Airtight, chemically compatible containers

  • Cool, dry, and dark storage environments

  • Protection from moisture, heat, and direct light

  • Restricted access to trained research personnel

Following these guidelines ensures long-term stability of 2C-D Pellets for laboratory research.


Legal and Regulatory Considerations

The legal status of 2C-D varies depending on jurisdiction. Laboratories are responsible for ensuring compliance with all applicable local, national, and institutional regulations before acquiring, storing, or analyzing this compound.

ChemsMixLab provides research-focused educational information only and does not support misuse or non-research applications.


Selecting Reliable Research Compounds

When sourcing substituted phenethylamine reference materials, laboratories should evaluate:

  • Verified purity with analytical documentation

  • Batch-to-batch consistency

  • Compatibility with laboratory instrumentation

  • Compliance with regulatory and institutional requirements

A dependable 2C-D Pellets research chemical supports accurate data generation and meaningful scientific outcomes.


Conclusion

2C-D Pellets are a specialized substituted phenethylamine intended solely for laboratory, analytical, and educational research. Their primary value lies in supporting compound identification, analytical method development, and professional training within controlled research environments.

When handled responsibly and analyzed using established techniques, 2C-D Pellets contribute valuable reference data to forensic science and analytical chemistry. ChemsMixLab remains committed to providing clear, ethical, and research-focused content to support legitimate scientific work.

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