3-Chlorophenmetrazine (3-CPM), also known as PAL-594, is a substituted phenylmorpholine derivative referenced in scientific literature and analytical research. The compound is structurally related to phenmetrazine and other phenylmorpholine analogues and has been investigated in studies involving compound characterization, analytical chemistry, and structure-activity relationship research.
Researchers may encounter 3-CPM in laboratory investigations focused on chemical identification, analytical verification, and comparative studies involving related compounds. Scientific interest in 3-CPM is primarily associated with its chemical structure, measurable analytical properties, and relevance within phenylmorpholine research.
What Is 3-CPM?
3-CPM is a substituted phenylmorpholine compound that has been documented in scientific and pharmacological literature. It is structurally related to phenmetrazine derivatives and has attracted research interest due to its chemical characteristics and analytical properties.
Research involving 3-CPM may include compound identification, structural evaluation, comparative analysis, and laboratory-based investigations focused on phenylmorpholine analogues.
Chemical Structure and Classification of 3-CPM
3-CPM belongs to the phenylmorpholine class of compounds and is structurally related to several phenmetrazine analogues. Researchers often study its chemical framework as part of broader investigations involving substituted phenylmorpholines, analytical chemistry, and comparative compound analysis.
Understanding the structural characteristics of 3-CPM may contribute to scientific discussions involving chemical classification, compound differentiation, and laboratory identification procedures.
Scientific Significance of 3-CPM Research
Scientific interest in 3-CPM is largely driven by its relationship to other phenylmorpholine compounds. Researchers may investigate the compound during studies focused on analytical characterization, structural comparison, and laboratory-based evaluation.
Research involving 3-CPM contributes to broader scientific understanding of phenylmorpholine chemistry and related compound classes.
Why Researchers Study 3-CPM
Researchers may reference 3-CPM in studies involving:
- Analytical chemistry
- Compound identification
- Structural characterization
- Phenylmorpholine research
- Comparative compound analysis
- Scientific documentation
- Laboratory investigations
- Structure-activity relationship studies
These investigations help expand scientific knowledge regarding compound classification and analytical methodologies.
Analytical Characterization of 3-CPM
Analytical laboratories may use various techniques to identify and characterize 3-CPM. Research procedures often involve chemical verification, purity assessment, structural analysis, and comparison with related compounds.
Common analytical approaches include:
- High-Performance Liquid Chromatography (HPLC)
- Liquid Chromatography-Mass Spectrometry (LC-MS)
- Gas Chromatography-Mass Spectrometry (GC-MS)
- Spectroscopic Analysis
- Structural Characterization Techniques
- Compound Verification Procedures
These methods help researchers generate reliable analytical data and support scientific investigations.
3-CPM in Structure-Activity Relationship Studies
Structure-activity relationship (SAR) studies examine how modifications to chemical structures influence measurable characteristics. Researchers may compare 3-CPM with related phenylmorpholine derivatives to better understand chemical similarities, structural differences, and analytical properties.
Such investigations contribute to broader scientific discussions regarding compound classification and comparative research.
Related Compounds and Analogues
Researchers studying 3-CPM may also encounter related compounds such as:
- Phenmetrazine
- 3-FPM (3-Fluorophenmetrazine)
- Phendimetrazine
- Methylenedioxyphenmetrazine
- 4-Methylphenmetrazine
These compounds are frequently referenced in scientific literature involving phenylmorpholine chemistry and comparative investigations.
Research Applications of 3-CPM
Potential areas of scientific interest include:
- Chemical analysis
- Analytical verification
- Reference material evaluation
- Laboratory method development
- Compound characterization
- Comparative research
- Scientific documentation and reporting
Laboratory Storage and Handling Considerations
Research compounds should be stored in a cool, dry, and properly sealed container away from direct sunlight, excessive heat, and moisture. Appropriate laboratory handling procedures and documentation practices help maintain sample integrity and support reliable analytical outcomes.
All research activities should be conducted in accordance with applicable regulations, laboratory protocols, and institutional requirements.
Frequently Asked Questions
Q. What is 3-CPM?
3-CPM (3-Chlorophenmetrazine) is a phenylmorpholine derivative discussed in scientific literature and analytical research.
Q. What are the alternative names of 3-CPM?
Alternative names include 3-CPM, PAL-594, and PAL594.
Q. What is the molecular formula of 3-CPM?
The molecular formula of 3-CPM is C11H14ClNO.
Q. What is the CAS number of 3-CPM?
The CAS number of 3-CPM is 1097796-78-5.
Q. What research fields study 3-CPM?
Research may involve analytical chemistry, compound characterization, neuropharmacology, and structure-activity relationship investigations.
Q. Which analytical methods are commonly used to study 3-CPM?
Researchers may use HPLC, LC-MS, GC-MS, spectroscopy, and other analytical techniques for compound identification and characterization.
Q. Why is 3-CPM important in scientific research?
It is referenced in scientific literature due to its chemical structure, analytical properties, and relevance to phenylmorpholine research.
Q. What compounds are related to 3-CPM?
Related compounds include Phenmetrazine, 3-FPM, Phendimetrazine, Methylenedioxyphenmetrazine, and 4-Methylphenmetrazine.
Educational and Research Disclaimer
This page is provided for educational, scientific, and informational purposes only. Information regarding 3-CPM is intended to support academic discussion, scientific understanding, and research reference activities. Any research involving this compound should be conducted by qualified professionals in accordance with applicable laws, regulations, institutional policies, and laboratory safety standards.





