Изследователски химикал

4F-MPH

4-Fluoromethylphenidate

Молекулна структура

4F-MPH molecular structure
Чистота
≥98% (HPLC verified)
Продължителност
4-6 hours

Преглед

4F-MPH е изследователски стимулант, използван в проучвания на моноаминовите транспортери (допамин, норадреналин, серотонин). Това съединение се изучава заради своите ефекти върху централната нервна система и като референтен стандарт в съдебната токсикология.

The history of 4F-MPH is part of the broader narrative of stimulant research that includes amphetamine's synthesis in 1887 and the subsequent development of numerous derivatives. Scientists have long investigated how structural modifications to the phenethylamine or cathinone backbone affect interactions with monoamine transporters and receptors. 4F-MPH represents one product of this systematic research. Research into substituted stimulants gained particular attention in the late 20th and early 21st centuries as chemists explored fluorinated, methylated, and otherwise modified analogs. 4F-MPH emerged as a compound of interest for studying structure-activity relationships in dopamine and norepinephrine reuptake inhibition. The compound has been characterized extensively using chromatographic and spectroscopic methods. Contemporary research utilizing 4F-MPH focuses on understanding monoamine transporter pharmacology, stimulant mechanisms of action, and developing analytical detection methods. The compound serves as an important reference standard in forensic toxicology laboratories and contributes to research on central nervous system stimulation and neurotransmitter dynamics.

4F-MPH acts primarily by inhibiting reuptake of monoamine neurotransmitters (dopamine, norepinephrine, serotonin), increasing their synaptic concentrations. This mechanism produces characteristic stimulant effects and makes it valuable for studying central nervous system activation.

4F-MPH holds significant value in scientific research due to its well-characterized properties and legal accessibility in several jurisdictions. This enables comprehensive pharmacological studies and analytical method development.

High-purity 4F-MPH (≥98% by HPLC) serves as a crucial reference standard in research laboratories, quality control testing, and academic research settings. Its consistent quality makes it ideal for method development and validation.

Технически Спецификации

Молекулна формулаC14H18FNO2
Външен видWhite to off-white crystalline powder
Чистота≥98% (HPLC verified)
СъхранениеStore at -20°C in a dark, dry place. Protect from light and moisture.
Срок на годност2 years when stored properly

Защо Изследователите Избират 4F-MPH

🔬Monoamine Transporter Research

4F-MPH serves as a research tool for studying dopamine, norepinephrine, and serotonin transporter mechanisms. Its use as a reference standard enables analytical method validation in neuropharmacology laboratories.

🧬Neuropharmacology Studies

Researchers investigate 4F-MPH to understand structure-activity relationships in stimulant compounds and their effects on monoaminergic systems. This supports broader research into central nervous system stimulation.

📊Forensic Applications

High-purity 4F-MPH is essential for forensic toxicology laboratories developing detection methods for novel stimulants in biological samples and supporting quality control protocols.

Изследователски приложения

1
Analytical reference standard
2
Pharmacological research
3
Quality control testing
4
Forensic toxicology
5
Method development

Важна Забележка: Това съединение е предназначено само за изследователски и аналитични цели. Не за консумация от хора.

Химични Свойства

Данни за Разтворимост

DMSO
10 mg/ml
Ethanol
5-10 mg/ml
Water
Poorly soluble

Аналитични методи

HPLC-UV
GC-MS
LC-MS/MS
NMR spectroscopy

Външни Бази Данни

Безопасност и Информация за Опасности

Signal Word:Warning
⚠️
⚠️

Hazard Statements (H):

  • H302: Harmful if swallowed
  • H315: Causes skin irritation
  • H319: Causes serious eye irritation
  • H335: May cause respiratory irritation

Precautionary Statements (P):

  • P261: Avoid breathing dust/fume/gas/mist/vapors/spray
  • P264: Wash hands thoroughly after handling
  • P280: Wear protective gloves/protective clothing/eye protection/face protection
  • P301+P312: IF SWALLOWED: Call a POISON CENTER or doctor if you feel unwell

Чести Ефекти

Увеличена енергия
Подобрен фокус
Еуфория
Будност
Потискане на апетита
Увеличена мотивация

Правен статус по държава

Законно за Изследвания

Кликнете върху държава за подробна правна информация и детайли за доставка.

Често задавани въпроси

Q:What is 4F-MPH used for in research?

4F-MPH is primarily used as an analytical reference standard in forensic toxicology, pharmacological research, quality control testing, and method development. It is NOT intended for human or veterinary use.

Q:How should 4F-MPH be stored?

Store 4F-MPH at -20°C in a dark, dry environment. Protect from light and moisture to maintain stability. When stored properly, research chemicals have a shelf life of approximately 2 years. Always use amber glass vials with proper sealing.

Q:Is 4F-MPH legal in my country?

Legal status varies by jurisdiction. 4F-MPH is legal for research purposes in several EU countries including Ireland, Italy, Netherlands as of 2026. Always verify current regulations in your specific location before ordering.

Q:What analytical methods are used to test 4F-MPH purity?

High-Performance Liquid Chromatography with UV detection (HPLC-UV) is the primary method for purity analysis. Additional confirmation methods include Gas Chromatography-Mass Spectrometry (GC-MS), Liquid Chromatography-Mass Spectrometry (LC-MS/MS), and Nuclear Magnetic Resonance (NMR) spectroscopy.

Q:What is the minimum purity guaranteed for EuroChems 4F-MPH?

All EuroChems 4F-MPH products are guaranteed to be ≥98% pure as verified by HPLC analysis. Each batch includes a Certificate of Analysis (COA) confirming purity specifications.

Свързани Изследвания

Подобни Съединения

Известие за Безопасност

Само за изследователски цели. НЕ ЗА ЧОВЕШКО КОНСУМИРАНЕ. Изисква правилно лабораторно обработване.