1-BENZYL-3-HYDROXY-PYRROLIDINE-2,5-DIONE

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Reagent Code: #51406
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CAS Number 78027-57-3

science Other reagents with same CAS 78027-57-3

blur_circular Chemical Specifications

scatter_plot Molecular Information
Weight 205.21 g/mol
Formula C₁₁H₁₁NO₃
thermostat Physical Properties
Melting Point 113-114℃
Boiling Point 459.8±45.0℃(Predicted)
inventory_2 Storage & Handling
Density 1.385
Storage room temperature

description Product Description

Used primarily in pharmaceutical research and development, this compound serves as a key intermediate in the synthesis of various biologically active molecules. Its structure is particularly valuable in the creation of compounds targeting neurological disorders, as it can influence neurotransmitter activity. Additionally, it finds application in the development of anti-inflammatory and analgesic drugs, where its unique chemical framework enhances the efficacy of the final product. Researchers also explore its potential in designing novel treatments for chronic pain and depression, leveraging its ability to interact with specific receptors in the brain.

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inventory 1g
10-20 days ฿19,251.00

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1-BENZYL-3-HYDROXY-PYRROLIDINE-2,5-DIONE
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Used primarily in pharmaceutical research and development, this compound serves as a key intermediate in the synthesis of various biologically active molecules. Its structure is particularly valuable in the creation of compounds targeting neurological disorders, as it can influence neurotransmitter activity. Additionally, it finds application in the development of anti-inflammatory and analgesic drugs, where its unique chemical framework enhances the efficacy of the final product. Researchers also explor

Used primarily in pharmaceutical research and development, this compound serves as a key intermediate in the synthesis of various biologically active molecules. Its structure is particularly valuable in the creation of compounds targeting neurological disorders, as it can influence neurotransmitter activity. Additionally, it finds application in the development of anti-inflammatory and analgesic drugs, where its unique chemical framework enhances the efficacy of the final product. Researchers also explore its potential in designing novel treatments for chronic pain and depression, leveraging its ability to interact with specific receptors in the brain.

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