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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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BUY BUTYLONE ONLINE 

Curious about the world of research chemicals and considering Butylone for your next study or project? To Buy Butylone online has never been more accessible, but doing so responsibly and safely is crucial. Whether you are a research enthusiast or someone exploring the possibilities of Butylone, this guide will equip you with everything you need to know from understanding its properties and applications to finding trusted vendors and navigating legal and ethical considerations.

WHAT IS BUTYLONE?

Butylone, also known as beta-keto-N-methylbenzodioxolylbutanamine (or bk-MBDB), is a research chemical that belongs to the cathinone class. It is closely related to compounds like methylone and MDA, known for their stimulating and empathogenic effects. However, like many research chemicals, Butylone is not intended for human consumption and is primarily used in laboratory and experimental settings.

 THE PROPERTIES OF BUTYLENE

  • Chemical Formula: C12H15NO3
  • Molecular Weight: 221.25 g/mol
  • Appearance: Typically distributed as a white crystalline powder.
  • Applications: Often studied for its potential effects on serotonin and dopamine regulation.

Butylone has found its place in scientific studies exploring neurological pathways and chemical interactions. Researchers value its ability to provide insights into brain chemistry and behavior.

THE ADVANTAGES WHEN YOU DECIDE TO BUY BUTYLONE ONLINE

When it comes to purchasing research chemicals like Butylone, To buy Butylone online offers you several distinct advantages over traditional procurement methods.

 THE CONVENIENCE AND ACCESSIBILITY

Online stores allow you to Buy Butylone online from the comfort of your home, eliminating the hassle of visiting physical stores or labs. With just a few clicks, your purchase can be delivered discreetly to your doorstep.

 IT WIDELY  VARIETY

Online vendors often stock a broader range of research chemicals than local suppliers. This variety lets you compare options, access rare compounds, and select the perfect product for your specific research needs.

COMPETITIVE PRICING

Many online retailers offer competitive pricing due to lower overhead costs. You are likely to find better deals online, especially when you buy Butylone online in bulk.

ENHANCED SAFETY MEASURES

Reputable online vendors prioritize customer safety by ensuring clear labeling, sealed packaging, and secure transactions. Reliable websites also provide lab test results or certificates of analysis to verify the quality of their products.

THE HINTS FOR CHOOSING A TRUSTED ONLINE VENDOR TO BUY BUTYLONE

With many online options available, selecting the right vendor is critical to ensuring a safe and successful purchase. Here’s what to look for when you buy Butylone online.

1. CHECK THE  LEGAL COMPLIANCE

Ensure that the vendor operates legally in your jurisdiction. Research chemicals, including Butylone, have varying legal statuses depending on the country or state. Avoid sellers who disregard these regulations, as that could complicate your purchase or research.

2. VERIFY PRODUCT QUALITY

Reputable vendors provide lab testing certificates or documents of analysis for their products. These reports confirm the chemical’s purity and composition, which are essential for accurate research outcomes.

3. READ CUSTOMER REVIEWS

Customer feedback can reveal a great deal about a vendor’s credibility, product quality, and customer service. Look for consistently positive reviews that highlight the vendor’s professionalism and reliability.

4. PRIORITIZE SECURE PAYMENT CONDITIONS 

Secure websites offer payment methods that protect buyers from fraud, such as credit cards, PayPal, or cryptocurrency. Check for website encryption (look for the lock icon in the browser) to ensure your financial information is safe.

5. EVALUATE CUSTOMER SUPPORT

Good customer support is a hallmark of trusted vendors. Ensure they provide clear communication, a responsive support team, and transparency about order status, shipping times, and return policies.

THE LEGAL AND ETHICAL CONSIDERATIONS OF BUTYLONE ONLINE

Before you decide to Buy  Butylone Online, it’s important to understand its legal and ethical implications.

THE LEGAL STATUS IF YOU BUY BUTYLONE ONLINE

Butylone’s legal standing varies by country. While it is classified as a controlled substance in many regions, others may permit its purchase and possession strictly for research purposes. Always check your local laws before proceeding with a purchase.

 THE ETHICAL INSTRUCTIONS  FOR RESEARCH CHEMICALS

It is crucial to buy  Butylone online and use it responsibly and solely for scientific purposes. Misuse can lead to ethical violations and potential harm. Researchers have a moral responsibility to conduct their studies with integrity and to adhere to ethical research standards.

THE RESPONSIBLE DISPOSAL

When your research with Butylone concludes, dispose of unused material responsibly to prevent environmental harm or misuse. Follow local guidelines for hazardous waste disposal.

THE FUTURE OF BUTYLONE IN  RESEARCH CHEMICALS

The research chemicals market continues to evolve rapidly, fueled by advances in synthetic chemistry and the growing interest in understanding complex biochemical processes. Here are some trends shaping the landscape of Butylone and similar compounds.

THE INCREASED REGULATION

Governments worldwide are imposing stricter regulations on research chemicals to curb misuse. This trend reinforces the importance of partnering with compliant vendors.

THE ADVANCEMENTS IN TECHNOLOGY

The development of more sophisticated laboratory tools and AI-based computational chemistry models is expanding how researchers study chemicals like Butylone.

 THE FOCUS ON ACCESSIBILITY

Improved online platforms are making research chemicals more accessible to qualified professionals while ensuring user safety remains a top priority.

THE POTENTIAL FOR COLLABORATIVE RESEARCH

There is growing interest in fostering collaborations between scientists in academia and the private sector. These partnerships can lead to discoveries and more comprehensive studies.

ENHANCED TRANSPARENCY

Vendors are investing in traceability and transparency, providing researchers with better information about product origins, safety protocols, and testing methodologies.

TO BUY BUTYLONE ONLINE RESPONSIBLY 

When you decide to Buy Butylone online can be a seamless process when you follow the key steps outlined in this guide. Start by understanding the chemical’s properties, uses, and legal implications. Identify trusted online vendors who provide high-quality products, documented testing, and security assurances. Finally, approach your purchase with an emphasis on responsible use and ethical research practices.

Scientific exploration is an endeavor that requires precision, care, and responsibility. By following these guidelines, you can focus your efforts on meaningful research while enjoying a convenient and secure shopping experience.

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A-PVP (alpha-Pyrrolidinovalerophenone), also known as Flakka, is a synthetic stimulant that belongs to the class of compounds called substituted cathinones. These compounds are structurally similar to amphetamines and often have powerful stimulant effects on the central nervous system. A-PVP is chemically related to pyrovalerone, a drug originally developed for the treatment of fatigue, though it is not widely used in clinical practice. As a stimulant, A-PVP can cause effects similar to those of other drugs like cocaine and methamphetamine, such as increased energy, euphoria, and alertness. However, it is also associated with significant risks, including agitation, hallucinations, delirium, and violent behavior. Flakka, which is the street name for A-PVP, gained notoriety due to its association with dangerous behaviors and mental health effects, particularly in certain regions where it was sold as a cheaper alternative to other stimulants. The drug is often found in a white or off-white crystalline form and can be ingested through various methods, including smoking, snorting, or injecting. Due to its potential for abuse and the severe health risks it poses, A-PVP is classified as a controlled substance in many countries, and its use can lead to serious physical and psychological harm. Below is the chemical and physical properties of A-PVP Crystal
Chemical Properties:
  • Chemical Formula: C15H21NO
  • Molecular Weight: Approximately 231.33 g/mol
  • Structure: A-PVP is a ketone analog of prolintane and is structurally related to other synthetic cathinones like MDPV.
  • Functional Groups: Contains a pyrrolidine ring, a phenyl group, and a ketone group.
Physical Properties:
  • Appearance: A-PVP typically appears as a crystalline powder, which can vary in color from white to light brown.
  • Solubility: Soluble in organic solvents like ethanol and methanol but has limited solubility in water.
  • Melting Point: The melting point of A-PVP is not well-documented in public literature, but similar compounds typically have melting points in the range of 100-150°C.
(Note: A-PVP is a controlled substance in many countries, and handling or studying it should be done in compliance with local regulations.)
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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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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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For those thinking to buy Fentanyl powder is an illicit form of fentanyl, a synthetic opioid that is far stronger than many other opioids, including morphine and heroin. While fentanyl is medically prescribed for severe pain, such as post-surgery recovery or for patients with chronic pain, it is highly dangerous when abused or improperly used. In its powdered form, fentanyl is often mixed with other substances, increasing the risk of overdose, as it can be difficult to measure the correct dose. Fentanyl works by binding to the body's opioid receptors, which control pain and emotions. It can induce powerful effects such as pain relief, euphoria, and respiratory depression. The risk of overdose is especially high with fentanyl because its potency can easily lead to fatal respiratory depression if someone unknowingly consumes a dose too large for their tolerance. Even a tiny amount of fentanyl can be lethal, which is why its misuse is particularly hazardous. Fentanyl is also associated with a rise in overdose deaths, especially when it is mixed with other illegal drugs, often without the user’s knowledge. The compound with the chemical formula C₂₂H₂₈N₂O is likely a complex organic compound, though it is not a widely recognized or well-documented substance in common chemical databases. Based on the given details, here's an attempt to describe its chemical and physical properties:

Chemical Properties:

  • Molecular Formula: C₂₂H₂₈N₂O suggests an organic compound with nitrogen (N), oxygen (O), and carbon (C) atoms. It could be a type of amine or amide, or a related compound involving nitrogen and oxygen functionality.
  • Functional Groups: The presence of nitrogen and oxygen hints that this compound could have functional groups such as amines (–NH₂), amides (–CONH₂), or ethers (–O–), but the exact functional groups would depend on the full structure.
  • Reactivity: The compound may react under conditions typical for organic molecules containing nitrogen and oxygen, such as acid-base reactions, nucleophilic substitution, or ester hydrolysis (if an ester group is present). It may also undergo combustion, polymerization, or oxidation under certain conditions.

Physical Properties:

  • Solubility: As stated, this compound is slightly soluble in water. The slight solubility is a characteristic common to many large organic compounds. The solubility could be influenced by the structure and intermolecular forces (e.g., hydrogen bonding, Van der Waals forces) in the compound.
  • Form: The compound is described as solid and can exist in either a crystal or crystalline powder form. This suggests it has a defined and organized molecular structure capable of forming crystals.
  • Boiling Point: The boiling point is not well-established. This could be due to a lack of detailed studies or because the compound may decompose before reaching a boiling point. Large organic compounds like this often have high boiling points, but specific data is required to be sure.
  • Density: The density is also not well-established, but it can be speculated that its density would depend on its molecular weight and the packing arrangement of its solid form. Organic solids with similar molecular weights can have densities ranging from 1.0 to 1.5 g/cm³.
Given that fentanyl citrate (a related compound) is more soluble in water, this compound may have similar molecular characteristics but with a different solubility profile due to the variations in their structures.
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Ketamine powder is a form of the drug ketamine, which is primarily used as an anesthetic in medical settings. It is known for its dissociative properties, meaning it can cause a sense of detachment from reality. In addition to its medical use, ketamine has gained attention for its potential in treating depression and other mental health conditions. However, it is also used recreationally, which can lead to misuse and potential health risks. It has both chemical and physical properties that are important to understand:

Chemical Properties:

  • Chemical Formula: C13H16ClNO
  • Molecular Weight: Approximately 237.7 g/mol
  • Structure: Ketamine is a chiral compound, meaning it has two enantiomers (mirror-image forms), known as S-(+)-ketamine and R-(−)-ketamine.
  • Solubility: Ketamine is soluble in water and alcohol, which makes it versatile for various medical formulations.

Physical Properties:

  • Appearance: Ketamine typically appears as a white crystalline powder.
  • Melting Point: The melting point of ketamine is around 258-261°C (496-502°F).
  • Odor: It is generally odorless.
  • Taste: Ketamine has a slightly bitter taste.

These properties make ketamine suitable for its use in medical settings, particularly in anesthesia and pain management.

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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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Methoxetamine, often abbreviated as MXE, is a dissociative drug that is chemically similar to ketamine and phencyclidine (PCP). It was developed in the early 2010s and gained popularity as a recreational drug. MXE is known for its hallucinogenic and dissociative effects, which can alter perception, mood, and cognitive processes. It is typically used for its euphoric and mind-altering properties, but it can also lead to adverse effects such as confusion, agitation, and impaired motor function. Due to its potential for abuse and lack of medical use, MXE is classified as a controlled substance in many countries. CAS No:   1239943-76-0
The chemical and physical properties of Methoxetamine (MXE) in terms of their respective categories:

Chemical Properties:

  • Chemical Structure: Methoxetamine is chemically related to ketamine and has the IUPAC name 2-(3-methoxyphenyl)-2-(ethylamino)cyclohexanone. It features a cyclohexanone core with an ethylamino group and a methoxyphenyl group.
  • Molecular Formula: C15H21NO2
  • Molecular Weight: Approximately 247.34 g/mol
  • Solubility: It is soluble in organic solvents like ethanol and methanol but less soluble in water.

Physical Properties:

  • Appearance: Methoxetamine typically appears as a white crystalline powder. It can also be found in other forms, such as capsules or tablets.
  • Melting Point: The melting point of methoxetamine is not well-documented in public literature, but it is typically solid at room temperature.
These properties play a role in the substance's use in both recreational and research settings.
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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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