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AgrochemicalsBuprimate Impurity 1

SKU: SAB-13-A

Original price was: ₹60,000.00.Current price is: ₹50,000.00.

Buprimate Impurity 1

Name:2-amino-5-butyl-6-methylpyrimidin-4-ol

CAT. NO.:SAB-13-A

CAS NO.:4038-64-6

  • Description
  • Datasheet
  • Additional information

Description

Buprimate Impurity 1

Chemical Name 2-amino-5-butyl-6-methylpyrimidin-4-ol
Catalog Number SAB-13-A
Parent AI Bupirimate
Synonyms 2-Amino-5-butyl-6-methylpyrimidin-4(3H)-one; 2-Amino-5-butyl-6-methyl-4(3H)-pyrimidinone; 2-Amino-5-butyl-6-methyl-1,4-dihydropyrimidin-4-one;2-Amino-5-butyl-6-methyl-1H-pyrimidin-4-one
CAS Number 4038-64-6
Molecular Formula C₉H₁₅N₃O
Molecular Weight 181.23
Appearance White to Off-White Solid
Melting Point >265.2°C
Shipping & Storage Information

 

Storage-20°C

Shipping: Free Shipping at Room Temperature in INDIA,  may vary elsewhere

Stability: Datasheet

Solubility DMSO (Slightly), Methanol (Slightly)
Stability Stable under recommended storage conditions
Category Agrochemical Impurity Standard/Metabolites
Description &Applications 2-Amino-5-butyl-6-methylpyrimidin-4-ol, also known as ABMP, is a synthetic compound with a wide range of applications in the field of scientific research. It is a derivative of pyrimidine, which is a heterocyclic compound with a six-membered ring structure containing two nitrogen atoms. ABMP is a versatile compound that has been used in numerous scientific studies, ranging from biochemical and physiological effects to its application in laboratory experiments
References Goldfarb, David Scott, et al.: U.S. Pat. Appl. Publ., (2009)

2-Amino-5-Butyl-6-Methylpyrimidin-4-ol: Exploring a Fascinating Molecular Entity

In the intricate world of organic chemistry, molecules often captivate researchers and scientists with their unique structures and potential applications. One such intriguing compound is 2-Amino-5-Butyl-6-Methylpyrimidin-4-ol, a compound whose complex name belies its significance and potential in various scientific fields. Let’s embark on a journey to uncover the properties, synthesis, and potential applications of this captivating molecule.

Structural Marvel: At first glance, the compound’s name might seem like an imposing jumble of letters and numbers, but breaking it down reveals a story of atoms and bonds coming together to form a distinct and purposeful structure. The molecule consists of a pyrimidine ring, a five-membered nitrogen-containing heterocycle, with additional functional groups attached. The “2-amino” indicates the presence of an amino group (-NH2) at the second position of the pyrimidine ring, while “5-butyl” signifies a butyl group (-C4H9) attached at the fifth position. Furthermore, “6-methyl” implies the presence of a methyl group (-CH3) at the sixth position, and “4-ol” indicates a hydroxyl group (-OH) at the fourth position. Together, these constituents create a remarkable and distinctive molecular architecture.

Synthesis and Exploration: The synthesis of 2-Amino-5-Butyl-6-Methylpyrimidin-4-ol requires a sequence of carefully orchestrated reactions. Organic chemists utilize their expertise to design routes that yield this compound while optimizing efficiency and yield. By manipulating various reactants and conditions, scientists can unlock the secrets of this compound’s synthesis, allowing for further investigation and potential applications.

Potential Applications:

  1. Pharmaceutical Research: The unique structure of 2-Amino-5-Butyl-6-Methylpyrimidin-4-ol makes it a potentially valuable scaffold in pharmaceutical research. It could serve as a starting point for the development of novel drugs, particularly those targeting specific enzymes or biological pathways.
  2. Medicinal Chemistry: The compound’s amino and hydroxyl groups offer opportunities for functionalization, potentially leading to derivatives with enhanced pharmacological properties. Medicinal chemists can explore modifications to fine-tune the compound’s interactions with biological systems.
  3. Biological Studies: Researchers may use 2-Amino-5-Butyl-6-Methylpyrimidin-4-ol as a tool to probe biological processes. Its unique structure could allow it to bind to specific biomolecules, enabling researchers to study these interactions and their implications for cellular function.
  4. Agrochemicals: The compound’s structural features might be harnessed in the development of novel agrochemicals, such as pesticides or plant growth regulators, to address agricultural challenges and enhance crop yields.
  5. Materials Science: The intricate arrangement of atoms in the compound could find applications in materials science. It might serve as a building block for the construction of novel materials with tailored properties.

Additional information

Pack Size

50mg

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