2-(4-Benzylmorpholin-2-yl)ethanamine dihydrochloride

≥95%

Reagent Code: #115798
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CAS Number 1914148-61-0

science Other reagents with same CAS 1914148-61-0

blur_circular Chemical Specifications

scatter_plot Molecular Information
Weight 293.23 g/mol
Formula C₁₃H₂₂Cl₂N₂O
inventory_2 Storage & Handling
Storage Room temperature, dry and sealed

description Product Description

This compound is primarily utilized in the field of medicinal chemistry and pharmacological research. It serves as a key intermediate in the synthesis of various biologically active molecules, particularly those targeting the central nervous system. Its structure is often explored for the development of potential therapeutic agents, including antidepressants, anxiolytics, and analgesics. Researchers leverage its morpholine and amine functionalities to design compounds that interact with specific receptors or enzymes in the brain, aiming to modulate neurotransmitter activity. Additionally, it is studied for its potential role in improving drug delivery systems due to its ability to enhance solubility and bioavailability of active pharmaceutical ingredients.

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Size Availability Unit Price Quantity
inventory 1g
10-20 days ฿3,708.00
inventory 100mg
10-20 days ฿756.00
inventory 250mg
10-20 days ฿1,242.00

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2-(4-Benzylmorpholin-2-yl)ethanamine dihydrochloride
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This compound is primarily utilized in the field of medicinal chemistry and pharmacological research. It serves as a key intermediate in the synthesis of various biologically active molecules, particularly those targeting the central nervous system. Its structure is often explored for the development of potential therapeutic agents, including antidepressants, anxiolytics, and analgesics. Researchers leverage its morpholine and amine functionalities to design compounds that interact with specific receptor

This compound is primarily utilized in the field of medicinal chemistry and pharmacological research. It serves as a key intermediate in the synthesis of various biologically active molecules, particularly those targeting the central nervous system. Its structure is often explored for the development of potential therapeutic agents, including antidepressants, anxiolytics, and analgesics. Researchers leverage its morpholine and amine functionalities to design compounds that interact with specific receptors or enzymes in the brain, aiming to modulate neurotransmitter activity. Additionally, it is studied for its potential role in improving drug delivery systems due to its ability to enhance solubility and bioavailability of active pharmaceutical ingredients.

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