1-Methyl-5-Oxo-Pyrrolidine-3-Carboxylic Acid

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Reagent Code: #78514
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CAS Number 42346-68-9

science Other reagents with same CAS 42346-68-9

blur_circular Chemical Specifications

scatter_plot Molecular Information
Weight 143.14 g/mol
Formula C₆H₉NO₃
badge Registry Numbers
MDL Number MFCD00014102
thermostat Physical Properties
Boiling Point 361.7°C
inventory_2 Storage & Handling
Density 1.319 g/cm3
Storage room temperature

description Product Description

1-Methyl-5-Oxo-Pyrrolidine-3-Carboxylic Acid is primarily utilized in the pharmaceutical and chemical research industries. It serves as a key intermediate in the synthesis of various bioactive compounds and drug candidates. Its structure is particularly valuable in the development of molecules with potential therapeutic applications, such as inhibitors for specific enzymes or receptors. Additionally, it is employed in the study of metabolic pathways and the design of novel pharmacophores. In organic chemistry, it is used as a building block for constructing complex heterocyclic compounds, which are often explored for their medicinal properties. Its versatility makes it a valuable component in the discovery and optimization of new drugs.

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Size Availability Unit Price Quantity
inventory 250mg
10-20 days ฿2,260.00

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1-Methyl-5-Oxo-Pyrrolidine-3-Carboxylic Acid
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1-Methyl-5-Oxo-Pyrrolidine-3-Carboxylic Acid is primarily utilized in the pharmaceutical and chemical research industries. It serves as a key intermediate in the synthesis of various bioactive compounds and drug candidates. Its structure is particularly valuable in the development of molecules with potential therapeutic applications, such as inhibitors for specific enzymes or receptors. Additionally, it is employed in the study of metabolic pathways and the design of novel pharmacophores. In organic chem

1-Methyl-5-Oxo-Pyrrolidine-3-Carboxylic Acid is primarily utilized in the pharmaceutical and chemical research industries. It serves as a key intermediate in the synthesis of various bioactive compounds and drug candidates. Its structure is particularly valuable in the development of molecules with potential therapeutic applications, such as inhibitors for specific enzymes or receptors. Additionally, it is employed in the study of metabolic pathways and the design of novel pharmacophores. In organic chemistry, it is used as a building block for constructing complex heterocyclic compounds, which are often explored for their medicinal properties. Its versatility makes it a valuable component in the discovery and optimization of new drugs.

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