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2-NMC, short for 2-(Methylamino)-1-(3-methylphenyl)propan-1-one, is a synthetic compound classified as a substituted cathinone. Cathinones are a group of synthetic stimulants chemically related to the naturally occurring compound cathinone, found in the khat plant. These substances often mimic the effects of amphetamines, such as increased energy, alertness, and euphoria. Below are the chemical and physical properties of 2-NMC and other characteristics.

Chemical Properties:

  • IUPAC Name: N,2-Dimethyl-N-(4-methylphenyl)propanamide
  • Chemical Formula: C₁₂H₁₇NO
  • CAS Number: 849642-09-7
  • InChI: InChI=1S/C12H17NO/c1-9(2)12(14)13(4)11-7-5-10(3)6-8-11/h5-9H,1-4H3
  • InChI Key: GYXHTKZVPMDHQT-UHFFFAOYSA-N
  • Canonical SMILES: CC1=CC=C(C=C1)N(C)C(=O)C(C)C

Physical Properties:

  • Molecular Weight: 191.27 g/mol
  • Appearance: Typically, compounds like this would appear as a solid or powder, likely white to off-white in color, though specific details on the physical appearance would depend on the form in which it is manufactured or handled.
  • Boiling Point: Unspecified for this compound, but amides typically have high boiling points due to hydrogen bonding.
  • Melting Point: Generally, amides with similar structures may have a melting point around 100-150°C, but this should be verified with specific data for this compound.
  • Solubility: Likely to be soluble in organic solvents like ethanol or chloroform, but poorly soluble in water due to the hydrophobic nature of the aromatic ring and alkyl groups.

Other Characteristics:

  • Class: Drugs of abuse and illegal drugs, often associated with sports doping.
  • Functional Groups: Amide, aromatic ring, methyl groups.
  • Mechanism of Action: As a drug of abuse, it may act on the central nervous system, though its exact pharmacodynamics are not fully detailed.

This compound is classified in the group of substances related to doping and illegal drug use, often associated with performance enhancement.

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BUY 2-NMC FOR RESEARCHERS  CHEMICAL

To Buy 2-NMC, also known as 2-(methylamino)-1-(3-methylphenyl)propan-1-one, is a compound that has grown in significance within the fields of chemical research and pharmacology. This synthetic cathinone has captured the attention of researchers and enthusiasts alike, due to its properties and potential applications in scientific studies.

For those unfamiliar with  2-NMC, this post serves as a comprehensive guide, covering its properties, uses, sourcing, and safety considerations. Whether you’re a chemical researcher, a pharmacist, or simply someone with a focused scientific curiosity, we’ll provide clear, reliable information on how to work with this compound responsibly.

WHAT YOU WILL LEARN

  • The unique properties and uses of  2-NMC in research.
  • Practical advice on how and where to buy 2-NMC safely.
  • Current insights into its applications and latest research.
  • Key guidelines for handling 2-NMC ethically and safely.

Read on to explore the essential details about  2-NMC and what makes it valuable to the scientific community.

 THE BENEFITS, USES, AND PROPERTIES OF  2-NMC

2-NMC is a member of the cathinone family, sharing structural similarities with other compounds used in pharmacological studies. It is a stimulant-like substance commonly utilized in in-vitro and in-vivo research to analyze the effects of psychoactive compounds on various biological systems.

THE PROPERTIES OF  2-NMC

  • Chemical Formula: C12H17NO
  • Form: Appears predominantly as a crystalline powder.
  • Melting Point: Approximately 149-151°C.
  • Solubility: Soluble in organic solvents like ethanol or acetone.

Researchers appreciate 2-NMC for its moderate stability and reactivity, making it suitable for controlled laboratory experiments.

THE APPLICATIONS OF 2-NMC  IN RESEARCH

Buy 2-NMC is primarily used in the study of neurotransmitter interactions, receptor activities, and the development of therapeutic compounds. Its structural characteristics also offer a platform for understanding the mechanisms of synthetic cathinones. While its pharmacological utility remains under development, it serves as a stepping stone for various future discoveries.

WHERE AND HOW TO BUY 2-NMC

ON TRUSTED SOURCES

When you decide to  Buy 2-NMC, choosing a reputable supplier is critical to ensure the compound’s quality and authenticity. Look for suppliers with:

  • Positive reviews and trustworthy customer feedback.
  • Batch testing and Certificates of Analysis (CoA) for their products.
  • Established history within the chemical supply industry.

THE POINT TO CONSIDER  WHEN YOU BUY BUY 2-NMC

  • Legal Regulations: The legal status of 2-NMC varies across regions. It is your responsibility to verify its compliance with local and international laws before purchasing or using it in your research.
  • Quality Assurance: Only buy 2-NMC that is accompanied by a CoA detailing purity levels and any potential impurities. Avoid suppliers who cannot guarantee batch-specific analysis.
  • Storage and Handling Guidance: Ensure that the compound is packaged safely and includes clear storage instructions.
  • Accessibility and Convenience: Many leading suppliers now offer online purchasing options so that researchers can buy 2-NMC directly from their platform. This method provides convenience and ensures a fast delivery process. Verify shipping policies to confirm compliance with local regulations.

 THE RECENT DEVELOPMENTS IN RESEARCH CONCERNING G  2-NMC

The research into synthetic cathinones, including 2-NMC, has advanced significantly due to their potential impact on neural pathways and pharmacological modeling. Recent studies focus on exploring the following:

  • Neurotransmitter Impact: Research analyzing  2-NMC’s effects on serotonin and dopamine systems.
  • Therapeutic Potential: Early-stage investigations into derivatives for potential treatment of certain conditions.
  • Toxicology Studies: Analyzing safe thresholds for handling and exposure in controlled environments.

While promising, these studies emphasize the need for further, ethically guided research to unlock  2-NMC’s full potential.

 THE SAFETY PRECAUTIONS AND ETHICAL CONSIDERATIONS

HANDLING AND STORAGE

When working with 2-NMC, ensure strict adherence to safety protocols. Common practices include:

  • Use of Personal Protective Equipment (PPE) such as gloves, lab coats, and safety goggles.
  • Safe storage in tightly sealed containers, away from sunlight and heat sources.
  • Proper labeling to prevent potential mishandling.

 THE ETHICAL CONSIDERATIONS

When you Buy 2-NMC, you must only use it for research purposes and never for recreational or non-scientific applications. Misuse of this compound can lead to significant legal and ethical violations, as well as harm. Researchers are encouraged to adhere to institutional ethics standards at all times.

THE IMPORTANCE OF RESPONSIBLE USAGE

when you Buy 2-NMC, It holds immense potential within the fields of pharmacology and chemical studies, yet its responsible use cannot be overstated. Following the proper guidelines ensures not only your safety but also the integrity of your research.

Should you wish to buy 2-NMC for your research needs, remember to prioritize reputable suppliers, comply with legal regulations, and always maintain ethical standards. By doing so, you contribute meaningfully to the exploration and understanding of this fascinating compound.

For further insights into handling 2-NMC or sourcing high-quality samples, feel free to reach out.

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Amphetamine powder is a potent stimulant that directly impacts the central nervous system. It is commonly seen as an off-white or pinkish powder, sometimes appearing as small crystalline particles. Amphetamines have both medical and non-medical uses. Below we will examine the chemical and physical properties of Amphetamine.

Chemical Properties:

  • Chemical Formula: C9H13N
  • Molecular Weight: 135.21 g/mol
  • Structure: Amphetamine is a chiral compound, meaning it has two enantiomers: dextroamphetamine and levoamphetamine. The dextro form is more pharmacologically active.
  • Solubility: It is soluble in water and alcohol, which makes it versatile for various formulations.

Physical Properties:

  • Appearance: Amphetamine typically appears as a white, crystalline powder.
  • Melting Point: The melting point of amphetamine is around 91-92°C (196-198°F).
  • Boiling Point: It has a boiling point of approximately 203°C (397°F) at 760 mmHg.
  • Odor: It generally has a faint, characteristic odor.

These properties make amphetamine a widely used substance in both medical and illicit contexts, primarily for its stimulant effects.

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Buphedrone, also known as α-methylamino-butyrophenone (MABP), is a stimulant drug classified within the phenethylamine and cathinone chemical families. It has structural and pharmacological similarities to other synthetic cathinones, which are sometimes colloquially referred to as "bath salts." These compounds often act as central nervous system stimulants, producing effects akin to amphetamines and cocaine. the chemical and physical properties of Buphedone are as follows:

Chemical Properties:

  • Chemical Formula: C11H15NO
  • Molecular Weight: 177.24 g/mol
  • IUPAC Name: 2-(methylamino)-1-phenylbutan-1-one
  • Structure: It contains a phenyl ring bonded to a butanone chain with a methylamino group.

Physical Properties:

  • Appearance: Typically, buphedrone is found as a white crystalline powder.
  • Solubility: It is soluble in water and organic solvents like ethanol.
  • Melting Point: The exact melting point can vary, but it is generally in the range typical for cathinones.

Buphedrone is known for its stimulant effects, similar to other cathinones, and is often used recreationally. However, it is important to note that the use of buphedrone can be associated with health risks and legal issues in many jurisdictions.

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Butylone, or β-keto-N-methylbenzodioxolylbutanamine (βk-MBDB), is a synthetic psychoactive substance that acts as an entactogen, psychedelic, and stimulant. It belongs to the phenethylamine and cathinone classes of chemicals, which are known for their effects on the central nervous system with the following chemical and physical properties

Chemical Properties:

  • Chemical Formula: C12H15NO3
  • Molecular Weight: 221.25 g/mol
  • IUPAC Name: 1-(1,3-benzodioxol-5-yl)-2-(methylamino)butan-1-one
  • Structure: It contains a benzodioxole ring, a ketone group, and a butanamine chain.

Physical Properties:

  • Appearance: Butylone typically appears as a white crystalline powder.
  • Solubility: It is soluble in water and organic solvents like ethanol.
  • Melting Point: The melting point of butylone is not well-documented, but similar compounds have melting points in the range of 100-150°C.

Butylone is often used in research settings and has been found in some recreational drug markets. It is important to note that the use and distribution of butylone may be regulated or illegal in many regions due to its psychoactive effects.

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Ephedrine crystals refer to a pure, crystalline form of ephedrine, a naturally occurring alkaloid with stimulant properties. It acts on the central nervous system and has sympathomimetic effects, meaning it stimulates the sympathetic nervous system, which is responsible for the "fight or flight" response. Ephedrine is primarily used in medicine for:
  1. Preventing hypotension (low blood pressure) during anesthesia by helping to raise blood pressure.
  2. Bronchodilation – opening up the airways in the lungs to help people with asthma or chronic obstructive pulmonary disease (COPD) breathe more easily. It can also be used to treat bronchial constriction.
Ephedrine works by stimulating alpha and beta adrenergic receptors, leading to vasoconstriction (narrowing of blood vessels), increased heart rate, and relaxation of smooth muscles in the airways, all of which help improve airflow and increase blood pressure. However, ephedrine can have side effects, including increased heart rate, elevated blood pressure, and nervousness. It's important to use it carefully under medical supervision to avoid adverse reactions. he properties of Ephedrine crystals based on their chemical and physical properties:

Chemical Properties:

  1. Chemical Formula: C₁₀H₁₅NO

Physical Properties:

  • Appearance: Colorless or white solid crystals or powder.
  • Taste and Odor: Bitter taste; either odorless or has a slight aromatic odor.
  • Solubility: Soluble in water and alcohol, useful for various pharmaceutical applications.
  • Melting Point: Around 187-188°C (369-370°F).
This classification separates the chemical and physical aspects, highlighting both the molecular structure and observable characteristics of ephedrine to consider when you make the choice to buy Ephedrine Crystals
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Ketamine injection is primarily used as a dissociative anesthetic to induce loss of consciousness before and during surgery or medical procedures. It works by disrupting the transmission of pain signals in the brain while maintaining basic life functions, which makes it especially useful in certain medical contexts, including emergency medicine and for patients with unstable vital signs. It is typically administered by a healthcare provider through intravenous (IV) or intramuscular (IM) injection. Below are the chemical and physical properties of  Ketamine injection

Chemical Properties:

  1. Chemical Formula: C13H16ClNO
  2. Molecular Weight: Approximately 237.7 g/mol
  3. Structure: Ketamine is a chiral compound, typically used as a racemic mixture of its two enantiomers.
  4. Solubility: Ketamine is soluble in water and alcohol, which is important for its formulation as an injectable solution.

Physical Properties:

  1. Appearance: Ketamine Injection is usually a clear, colorless to slightly yellow solution.
  2. pH: The pH of the injectable solution is typically between 3.5 and 5.5.
  3. Formulation: It is available in various concentrations, commonly 10 mg/mL, 50 mg/mL, and 100 mg/mL.

These properties are crucial for its pharmacokinetics and pharmacodynamics, influencing how the drug is absorbed, distributed, metabolized, and excreted in the body.

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Krokodil Desomorphine

Krokodil (Desomorphine) is a highly addictive and dangerous synthetic opioid, originally developed as a medical treatment in the 1930s but never widely used due to its high potential for abuse and harmful effects. It gained notoriety in Russia and other parts of Eastern Europe, where it is typically produced illicitly by combining codeine with various toxic chemicals, such as gasoline, hydrochloric acid, and red phosphorus. These impurities contribute to its highly damaging effects.

Users of Krokodil inject it, and it is known for rapidly inducing a powerful, short-lived high. However, its effects are incredibly destructive to the body. Desomorphine is significantly more potent than morphine, and the drug's street preparation often contains highly toxic substances, which cause rapid and severe tissue damage. One of the most horrifying consequences of Krokodil use is its ability to cause necrosis, leading to skin and soft tissue rotting, hence the nickname "flesh-eating" drug. The drug also leads to severe damage to veins, muscles, and organs, and can result in gangrene, amputations, and even death. In addition to the severe physical damage, Krokodil addiction can lead to a rapid decline in health, with users often experiencing a range of symptoms such as abscesses, ulcers, infections, and extreme weight loss. Due to the dire consequences of using Krokodil, it is considered one of the most dangerous drugs in the world. Because of the horrific effects, Krokodil is illegal in many countries, including Russia, and remains a major public health crisis in areas where it is most prevalent. Here is the chemical and physical properties of Krokodil Desomorphine
  • Chemical Formula: C₁₇H₂₁NO₂
  • Molar Mass: 271.35 g/mol
  • Chemical Structure: It is a morphinane alkaloid, similar in structure to morphine.
  • Appearance: Desomorphine is a colorless, well-crystallized organic base.
  • Effects: Known for its potent, fast-acting effects, including sedation and analgesia (pain relief).
  • Classification: It is classified as a DEA Schedule I controlled substance, indicating its high potential for abuse and lack of accepted medical use.
  • Drug Type: Semi-synthetic opioid.
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Methylone, also known as 3,4-methylenedioxy-N-methylcathinone, is a synthetic stimulant and entactogen of the amphetamine, phenethylamine, and cathinone classes. It is chemically similar to MDMA (ecstasy) and is often used recreationally for its euphoric and empathogenic effects. Methylone was initially developed as an antidepressant but is now more commonly encountered as a recreational drug. It is important to note that the legal status of methylone varies by country, and it may be classified as a controlled substance in many places due to its potential for abuse and health risks.

Here are the  chemical and physical properties to consider before you buy Methylone :

Chemical Properties:

  • Chemical Formula: C11H13NO3
  • Molecular Weight: 207.23 g/mol
  • Structure: Methylone is a beta-keto analogue of MDMA, meaning it has a ketone group at the beta position of the side chain.
  • IUPAC Name: 1-(1,3-benzodioxol-5-yl)-2-(methylamino)propan-1-one

Physical Properties:

  • Appearance: Methylone typically appears as a white or off-white crystalline powder.
  • Solubility: It is soluble in water and organic solvents like ethanol.
  • Melting Point: The melting point of methylone is around 147-148°C.

Methylone is often used recreationally and is known for its psychoactive effects, which can include euphoria, increased energy, and altered sensory perception. However, it is important to note that the use of methylone can have significant legal and health implications.

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 U-47700 Fentanyl Analogues

U-47700 is a synthetic opioid that, while not structurally related to fentanyl, is frequently discussed alongside fentanyl analogs because of its similar potency and associated risks. Below are key points about U-47700 and fentanyl analogs:

U-47700

  • Structure: U-47700 belongs to the class of synthetic opioids but does not share the structural backbone of fentanyl. Instead, it was initially developed as a potential painkiller.
  • Potency: It is highly potent and has effects comparable to other powerful opioids, including euphoria, pain relief, and respiratory depression.
  • Risks: U-47700 has been associated with numerous cases of intoxication and fatalities, largely due to its small therapeutic window and high risk of overdose.
  • Legal Status: Due to its abuse potential and associated risks, U-47700 has been classified as a Schedule I controlled substance in several countries, meaning it has no accepted medical use.

Fentanyl Analogues

  • Definition: Fentanyl analogs are chemically modified versions of fentanyl, a prescription opioid used for severe pain management.
  • Potency: These analogs are often even more potent than fentanyl itself, with some being hundreds of times stronger than morphine.
  • Risks: Due to their potency, even a small amount can cause respiratory failure and death, making them a significant contributor to the opioid overdose crisis.
  • Illicit Use: Fentanyl analogs are frequently manufactured and distributed illegally, often mixed with other drugs or pressed into counterfeit pills, increasing the risk of unintentional overdoses.

Commonalities Between U-47700 and Fentanyl Analogues

  • Both have been involved in opioid-related intoxications and fatalities.
  • Both are characterized by their high potency and narrow margin of safety.
  • Both are associated with the illegal drug market and are significant contributors to the opioid epidemic.
While U-47700 and fentanyl analogs are not structurally similar, their comparable potency and associated dangers place them within the broader discussion of synthetic opioids

Chemical Properties of U-47700

  • Molecular Formula: C₁₆H₂₂Cl₂N₂O
  • Molecular Weight: 329.3 g/mol
  • Chemical Structure:
    • Core Structure: Trans-3,4-dichloro-N-(2-(dimethylamino)cyclohexyl)-N-methylbenzamide.
    • Includes dichloro-substituents on the benzamide ring and a dimethylamino group.
  • Pharmacology: Acts as a synthetic opioid with analgesic effects.

Fentanyl Analogues

  • Molecular Formula: Varies depending on the analogue, but is based on the fentanyl core structure (C₂₂H₂₈N₂O).
  • Chemical Modifications: Slight structural changes to fentanyl's backbone (e.g., substitutions on the piperidine ring or changes in the phenethyl group).
  • Molecular Weight: Varies with the analog but typically in the range of 300-400 g/mol.
  • Pharmacology: Extremely potent synthetic opioids, often 50–100 times stronger than morphine.

Physical Properties of U-47700

  • Appearance: Often found as a white or light pink powder (hence the street name "Pinky").
  • Melting Point: Approximately 218–222°C (based on analogous structures).
  • Solubility: Soluble in organic solvents; limited solubility in water.

Fentanyl Analogues

  • Appearance: Typically white to off-white powders, liquids, or transdermal patches, depending on the preparation.
  • Melting Point: Varies depending on the specific analogue; typically ranges between 86°C and 106°C for fentanyl base.
  • Solubility: High solubility in organic solvents; also soluble in water and lipids, contributing to high potency and rapid absorption.
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