5-MeO-DiPT hydrochloride
5-MeO-DiPT hydrochloride Price range: €23.50 through €336.00
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EPT fumarate (N-ethyl-N-propyltryptamine)
EPT fumarate (N-ethyl-N-propyltryptamine) Price range: €23.50 through €336.00

DiPT fumarate (N,N-diisopropyltryptamine)

DiPT fumarate properties

Synonym: N,N-diisopropyltryptamine fumarate
CAS Number: 14780-24-6
Formula: 3-[2-(diisopropylamino)ethyl]-1H-indole fumarate
Molar Mass: 360.5 g/mol
Purity: >97%

Price range: €23.50 through €336.00

* The information on this page is a summary and is not intended to cover all available information about this medication. It does not cover all possible uses, directions, precautions, drug interactions or adverse effects and is not a substitute for the expertise and judgment of your healthcare professional.

DiPT Fumarate – N,N-diisopropyltryptamine of Research Purity

Product name: DiPT Fumarate
Full Name: N,N-diisopropyltryptamine fumarate salt
Molecular Formula (base + salt): C16H26N2 C4H4O4
Molecular Weight: 348.44 g/mol
Form: White to off-white crystalline powder
Purity: ≥98% (HPLC analyzed)
Application: For scientific/forensic research only
CAS number (free base): 61-52-9


What is DiPT Fumarate?

DiPT (N,N-diisopropyltryptamine) is a unique synthetic tryptamine, best known for its unusual auditory effects. Unlike other tryptamines that cause visual changes, DiPT primarily affects hearing—such as distorted pitches and sound waves—making it unique for experimental neuroauditory research.

The fumarate salt form provides improved stability, solubility and accurate dosing, which is crucial for reproducible laboratory experiments.


Research applications of DiPT

  • Neuroauditory research: Study of perceptual distortion of sound and pitch
  • Comparative pharmacology: Analysis alongside DMT, MET, MiPT and other tryptamines
  • Serotonergic receptor analysis: Activity at 5-HT2A and related receptors
  • Cognitive disruption experiments (in controlled models)

⚠️ Not for human or animal consumption. For research purposes only in accredited laboratories.


Benefits of DiPT Fumarate for Research

✔ Very specific auditory effects – rare within tryptamines
✔ High purity (≥98%) for accurate analysis
✔ Suitable for experimental neuropharmacology
✔ Fumarate form extends shelf life and facilitates handling


Disadvantages and Limitations

  • Less suitable for visual consciousness studies
  • Few documented long-term effects
  • Possible highly subjective/individual response
  • Legal status may vary by country

Laboratory Data and Certification

CharacteristicSpecification
Purity≥98% (HPLC)
FormCrystalline powder
Melting pointapprox. 178–182 °C (fumarate form)
SolubilityGood in ethanol, acetone
Storage conditionsDark, dry, between 2–8 °C
Batch numberDIPT-FUM0625
Analysis performed onJune 21, 2025

Recommended Use Scenarios (Laboratory)

GoalConcentrationMethodRemark
In vitro receptor research5–15 µMDissolved in DMSO or ethanolFor binding to serotonin receptors
In vivo (animal models, authorized)0.5–2 mg/kgInjection/oral administrationAuditory effect analysis

Frequently Asked Questions (FAQ)

❓ What makes DiPT unique among tryptamines?

DiPT is best known for its auditory disturbances, rather than visual hallucinations. Researchers often use it to study the interplay between serotonergic systems and auditory processing.

❓ Is DiPT legal in my country?

DiPT falls under grey legislation or the analogy law in many countries. Always check the current legislation of your country/region.

❓ Why the fumarate form and not the free base?

The fumarate form is more stable, better suited for precise dosing and less sensitive to oxidation or degradation.

❓ Can DiPT be used outside the lab?

No. DiPT is exclusively intended for scientific research by professionals in a controlled environment.


Summary

DiPT Fumarate offers scientists and laboratories a unique opportunity to analyze a rarely studied auditory tryptamine. Due to its stable fumarate form, high purity and striking effects on auditory perception, this substance is particularly suitable for neuropharmacological and receptor-targeted experiments.

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