3-CL-PCP, also known as 3-Chloro-PCP or 3′-Cl-PCP, is an arylcyclohexylamine compound that has been documented in scientific literature and forensic reports. Researchers have referenced the compound in studies involving chemical identification, analytical characterization, forensic investigations, and emerging substance monitoring.
Scientific interest in 3-CL-PCP is primarily related to its structural relationship with phencyclidine (PCP) and its classification within the arylcyclohexylamine family. The compound has been discussed in analytical and forensic literature concerning the identification and monitoring of novel substances.
What Is 3-CL-PCP?
3-CL-PCP is an arylcyclohexylamine derivative structurally related to phencyclidine (PCP). Scientific literature describes it as a compound that has been identified in forensic and analytical investigations involving emerging substances.
Researchers may study 3-CL-PCP as part of analytical chemistry projects, compound identification procedures, and investigations focused on the characterization of arylcyclohexylamine derivatives.
Why Is 3-CL-PCP Studied?
Scientific interest in 3-CL-PCP generally focuses on:
- Compound identification
- Analytical characterization
- Forensic investigations
- Structural analysis
- Emerging substance monitoring
- Scientific documentation
Research involving 3-CL-PCP contributes to a broader understanding of arylcyclohexylamine compounds and analytical detection methodologies.
Key Research Areas
Analytical Chemistry
Researchers may investigate 3-CL-PCP using laboratory methods designed to evaluate chemical identity, composition, and measurable analytical properties.
Forensic Science
Forensic laboratories may reference 3-CL-PCP in compound identification projects and analytical investigations involving emerging substances.
Compound Characterization
Scientific investigations often focus on structural analysis, chemical verification, and comparative evaluation of measurable compound characteristics.
Emerging Substance Monitoring
Research organizations and analytical laboratories may monitor newly identified compounds to improve analytical databases and reference information.
Analytical Methods Commonly Used in Research
Laboratory investigations involving 3-CL-PCP may include:
- High-Performance Liquid Chromatography (HPLC)
- Liquid Chromatography-Mass Spectrometry (LC-MS)
- Gas Chromatography-Mass Spectrometry (GC-MS)
- Spectroscopic Analysis
- Compound Verification Procedures
- Structural Characterization Techniques
These analytical methods help researchers identify compounds and generate reproducible scientific data.
Related Compounds
Scientific literature commonly references the following related compounds:
- PCP (Phencyclidine)
- 3-F-PCP
- 3-Me-PCP
- 3-MeO-PCP
- 4-Keto-PCP
These compounds are frequently discussed in comparative analytical and forensic investigations.
Frequently Asked Questions
What is 3-CL-PCP?
3-CL-PCP, or 3-Chlorophencyclidine, is an arylcyclohexylamine derivative and phencyclidine analogue referenced in analytical and forensic literature.
What is the CAS number of 3-CL-PCP?
The CAS number of 3-CL-PCP is 2201-32-3.
What is the molecular formula of 3-CL-PCP?
The molecular formula of 3-CL-PCP is C17H24ClN.
What research fields study 3-CL-PCP?
Research may involve analytical chemistry, forensic science, compound characterization, and emerging substance monitoring.
Which analytical methods are commonly used to study 3-CL-PCP?
Researchers may use HPLC, LC-MS, GC-MS, spectroscopy, and other analytical techniques for compound identification and characterization.
What compounds are related to 3-CL-PCP?
Related compounds include PCP, 3-F-PCP, 3-Me-PCP, 3-MeO-PCP, and 4-Keto-PCP.
Is the legal status of 3-CL-PCP the same worldwide?
No. Legal status varies by jurisdiction, and researchers should review applicable regulations before conducting research involving the compound.
Research Disclaimer
This page is provided for educational, scientific, and informational purposes only. Information regarding 3-CL-PCP 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.





