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4F-PHP research chemical is a synthetic cathinone derivative designed for forensic and pharmacological research applications. This compound, scientifically known as 1-(4-fluorophenyl)-2-(pyrrolidin-1-yl)hexan-1-one, provides researchers with a valuable reference material for the characterization and analysis of synthetic cathinones. The 4F-PHP research chemical is compatible with GC-MS, LC-MS/MS, NMR, and FTIR analytical techniques, making it suitable for comprehensive drug testing and forensic analysis. This research chemical supports cathinone derivative analysis, drug metabolism research, and forensic identification applications. The 4F-PHP for research is intended exclusively for laboratory use, providing forensic scientists and pharmacology researchers with an essential tool for understanding synthetic cathinone chemistry and developing improved analytical methods.

Research Chemical

4F-PHP – Research Chemical

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PRODUCT OVERVIEW

The 4F-PHP research chemical is a high-purity synthetic cathinone derivative designed for advanced forensic and pharmacological research. This compound, scientifically known as 1-(4-fluorophenyl)-2-(pyrrolidin-1-yl)hexan-1-one, provides researchers with a valuable reference material for the characterization and analysis of synthetic cathinones. The 4F-PHP research chemical represents an important member of the synthetic cathinone family, offering researchers insights into the structure-activity relationships of these substances.

Forensic scientists and pharmacology researchers utilize this 4F-PHP reference material for critical analytical applications. The primary use involves cathinone derivative analysis, where precise structural characterization is essential for the identification and classification of designer drugs. The 4F-PHP analytical standard is particularly valuable for forensic identification, enabling researchers to distinguish between different synthetic cathinone analogs and understand their chemical properties. The compound represents an important member of the pyrrolidine-containing cathinone family.

The 4F-PHP research chemical is specifically designed for use with advanced analytical technologies employed in forensic and research laboratories. GC-MS provides sensitive and specific detection, enabling researchers to identify and quantify 4F-PHP in complex biological samples. LC-MS/MS offers enhanced sensitivity and selectivity, supporting forensic toxicology and drug testing applications. NMR spectroscopy and FTIR provide complementary structural information, allowing researchers to confirm the identity and purity of the compound.

Research applications for this synthetic cathinone standard extend across multiple scientific disciplines. Synthetic cathinone chemistry research benefits from the availability of a pure reference compound, allowing researchers to investigate the structure-activity relationships of these substances. Drug metabolism studies utilize this standard to investigate metabolic pathways and identify metabolites, which is essential for understanding drug elimination and toxicity. Forensic identification research relies on this 4F-PHP standard to develop improved analytical methods for drug testing and evidence analysis.

The 4F-PHP for research is manufactured to meet the demanding requirements of modern analytical laboratories. Quality control measures ensure batch-to-batch consistency, providing researchers with confidence in their analytical results. The product supports the development of analytical methods, validation studies, and routine testing in forensic and clinical laboratories.


WHY CHOOSE THIS PRODUCT?

✔ High-purity 4F-PHP research chemical for laboratory use
✔ Synthetic cathinone standard for forensic and pharmacology research
✔ Compatible with GC-MS, LC-MS/MS, NMR, and FTIR techniques
✔ Essential for cathinone derivative analysis and drug characterization
✔ Supports forensic identification and drug testing applications
✔ Enables synthetic cathinone metabolism studies
✔ Professional-grade standard for research laboratories
✔ Important reference for structure-activity relationship studies
✔ Trusted by forensic scientists and pharmacology researchers
✔ Quality-controlled manufacturing ensures consistent performance

Lot-traceable with certificate of analysis
Consistent purity, batch after batch
Multiple pack sizes for bench or bulk
Correct GHS labelling and safe packaging
Category
Research Chemical
Storage
Cool, dry, well-ventilated area
Shelf life
24 months from date of manufacture

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