4F-MPH (4-Fluoromethylphenidate) | Analytical Research Profile
Are you seeking validated analytical data on Buy 4F-MPH Powder online for neuropharmacological or executive function investigations? 4-Fluoromethylphenidate (4F-MPH) is a synthetic phenidate derivative and a structural analogue of methylphenidate (Ritalin). Within the scientific community, it is a primary subject for researchers investigating dopamine reuptake inhibition, synaptic signaling efficiency, and the impact of halogenation on the potency of substituted phenethylamines.
For laboratories looking to buy research chemicals online, utilizing high-purity 4F-MPH powder ensures maximum flexibility in preparing precise molar concentrations for in vitro assays and controlled behavioral modeling.
Chemical Structure & Pharmacodynamics
The pharmacological profile of 4F-MPH is defined by the substitution of a fluorine atom at the para (4-) position of the phenyl ring. This modification significantly alters the compound’s binding affinity and metabolic stability:
-
Transporter Selectivity: 4F-MPH acts as a highly potent norepinephrine-dopamine reuptake inhibitor (NDRI). Research suggests that the 4-fluorine substitution increases the binding affinity for the dopamine transporter (DAT) compared to unsubstituted methylphenidate.
-
Metabolic Resistance: The carbon-fluorine bond is exceptionally strong, which can influence the metabolic clearance rate and duration of action, making it a valuable probe for studying pharmacokinetics.
-
Formulation Versatility: As a crystalline powder, 4F-MPH maintains high chemical stability and is easily soluble in aqueous solutions for standardized laboratory applications.
Primary Research Applications
4F-MPH analytical standards are essential for several advanced scientific domains:
-
Cognitive Enhancement Studies: Investigating how NDRI compounds modulate the prefrontal cortex to influence attention, working memory, and executive function.
-
Neuroscience of Motivation: Assessing the compound’s impact on the mesolimbic reward system and its role in goal-directed behavior.
-
Forensic Toxicology: Developing precise GC-MS/LC-MS methods to identify 4F-MPH in biological matrices and distinguish it from other phenidate analogues.
-
Structure-Activity Relationship (SAR): Utilizing 4F-MPH to map the binding pockets of catecholamine transporters and understand how halogen size and electronegativity affect stimulant potency.
Technical Specifications
| Feature | Details |
| IUPAC Name | Methyl 2-(4-fluorophenyl)-2-(piperidin-2-yl)acetate |
| CAS Number | 1354631-33-6 |
| Molecular Formula | $C_{14}H_{18}FNO_{2}$ |
| Formulation | High-Purity Crystalline Powder |
| Purity Grade | Analytical Grade ($\ge$98%) |
Safety, Regulatory Status, and Procurement
4F-MPH is intended strictly for laboratory research and forensic applications. It is not for human or veterinary consumption.
-
Regulatory Compliance: Researchers must verify the legal status of phenidate analogues in their jurisdiction. 4F-MPH is subject to restrictive scheduling in several countries under “Analogue Acts” or specific controlled substance lists.
-
Handling Protocols: As a potent stimulant, 4F-MPH should be handled in a controlled laboratory setting using appropriate Personal Protective Equipment (PPE).
-
Documentation: Every shipment includes a comprehensive Safety Data Sheet (SDS) covering solubility, toxicological data, and secure disposal procedures.
Why Source Through Verified Channels?
Accurate scientific results depend on the absence of unreacted precursors or isomeric impurities. Sourcing through a legitimate research chemical supplier ensures that your 4F-MPH powder provides the standardized assay and purity required for repeatable, publication-quality research.




