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Instruction of (6-Chloro-pyridazin-3-yl)-piperidin-4-ylMethyl-aMine Hydrochloride, 98+% C10H16Cl2N4, MW: 263.
17: A Comprehensive Guide for Chemical Industry Professionals
(6-Chloro-pyridazin-3-yl)-piperidin-4-ylMethyl-aMine hydrochloride, commonly referred to as (6-CPPM) or C10H16Cl2N4, is a synthetic compound that is widely used in various industries, including the chemical, pharmaceutical, and research industries.
As a chemical compound, (6-CPPM) has unique properties that make it ideal for various purposes, including as an intermediate in the production of other chemicals, as a research reagent, and as a potential drug candidate.
In this article, we will delve into the instruction of (6-CPPM) and its applications in the chemical industry.
Chemical Structure and Properties of (6-CPPM)
(6-CPPM) is a synthetic compound that is classified as a piperidine derivative.
It has a unique chemical structure that comprises a six-membered aromatic ring with a chlorine atom attached to one of the carbon atoms.
The nitrogen atom is attached to another carbon atom, while the fourth carbon atom is substituted with a methyl group.
The fifth carbon atom is substituted with a piperidine ring, while the final carbon atom is substituted with a hydroxyl group, which is bound to a hydrogen atom and a hydrochloride ion.
The molecular formula of (6-CPPM) is C10H16Cl2N4, and it has a molecular weight of 263.
17 g/mol.
Physical and Chemical Properties of (6-CPPM)
(6-CPPM) is a white or almost white, crystalline solid that has a melting point of approximately 225°C.
It is highly soluble in water and in many organic solvents, including ethanol, methanol, and acetonitrile.
It is also slightly soluble in ether.
(6-CPPM) has a pKa value of approximately 9.
0, which makes it a weak base.
It is also a moderate acid, with a pKa value of approximately 10.
3.
The compound has a high density, with a value of approximately 1.
5 g/cm3.
Applications of (6-CPPM) in the Chemical Industry
(6-CPPM) is a versatile compound that has a wide range of applications in the chemical industry.
Some of the most common applications of (6-CPPM) include:
- Intermediate for the production of other chemicals: (6-CPPM) is often used as an intermediate in the production of other chemicals.
Its unique chemical structure makes it ideal for this purpose, as it can be easily modified to produce a variety of other compounds. - Research reagent: (6-CPPM) is widely used as a research reagent in various fields, including pharmaceutical research, medicinal chemistry, and organic synthesis.
Its unique properties make it ideal for use in a variety of experiments and assays. - Potential drug candidate: (6-CPPM) has shown promise as a potential drug candidate in various studies.
Its unique properties make it ideal for use as an anti-inflammatory, analgesic, and anti-cancer agent.
Preparation and Production of (6-CPPM)
(6-CPPM) can be prepared through a variety of synthetic methods, depending on the desired purity and quantity.
Some of the most common methods for preparing (6-CPPM) include: