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AEEA-AEEA

  CAS No.: 1143516-05-5   Cat No.: BADC-01339   Purity: ≥95% 4.5  

17-Amino-10-oxo-3,6,12,15-tetraoxa-9-azaheptadecanoic acid is a complex organic molecule characterized by multiple functional groups and heteroatoms within its structure. It contains an amino group (-NH2) at the 17th position, a ketone group (oxo) at the 10th position, and several ether linkages (tetraoxa) throughout its carbon chain. Additionally, it features an amide linkage (aza) at the 9th position, which integrates nitrogen into the backbone. This compound is significant in biochemical and pharmaceutical research due to its potential applications in the design and synthesis of novel molecules with specific biological activities.

AEEA-AEEA

Structure of 1143516-05-5

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Category
ADC Linker
Molecular Formula
C12H24N2O7
Molecular Weight
308.33
Shipping
Store at -20 °C, under inert atmosphere

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Size Price Stock Quantity
1 g $319 In stock

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Synonyms
17-Amino-10-oxo-3,6,12,15-tetraoxa-9-azaheptadecanoic acid; 8-Amino-3,6-dioxaoctanoic acid dimer; 17-Amino-10-oxo-3,6,12,15-tetraoxa-9-azaheptadecan-1-oic acid; H-Adoa-Adoa-OH; H2N-PEG2-NH-PEG2-CH2COOH
IUPAC Name
2-[2-[2-[[2-[2-(2-aminoethoxy)ethoxy]acetyl]amino]ethoxy]ethoxy]acetic acid
Canonical SMILES
C(COCCOCC(=O)NCCOCCOCC(=O)O)N
InChI
InChI=1S/C12H24N2O7/c13-1-3-18-5-7-20-9-11(15)14-2-4-19-6-8-21-10-12(16)17/h1-10,13H2,(H,14,15)(H,16,17)
InChIKey
YQZVQKYXWPIKIX-UHFFFAOYSA-N
Density
1.202±0.06 g/cm3
Solubility
Soluble in DMSO (Slightly, heated, ultrasonic treatment), Methanol (Slightly)
Melting Point
133-135°C
Appearance
White to off-white solid
Storage
Store at -20 °C, under inert atmosphere
Boiling Point
548.7±50.0 °C at 760 mmHg

AEEA-AEEA, or aminoethylethanolamine, is an organic compound with versatile applications across various industries. One of the primary uses of AEEA-AEEA is in the production of chelating agents. Chelating agents are critical in numerous industrial processes, including water treatment, agriculture, and the manufacturing of cleaning products. AEEA-AEEA serves as a building block for these agents due to its ability to form stable complexes with metal ions. This property enhances the efficiency of cleaning and purification processes by effectively binding with metal contaminants, thus ensuring the removal of unwanted metals from solutions.

Another significant application of AEEA-AEEA is in the production of surfactants. Surfactants are compounds that reduce the surface tension between liquids or a liquid and a solid, making them indispensable in detergents, emulsifiers, and foaming agents. AEEA-AEEA is incorporated into surfactants to enhance their performance in cleaning and personal care products. The presence of AEEA-AEEA in surfactants improves their ability to mix with water and oils, resulting in more effective cleaning agents that can remove grease and dirt from various surfaces. This enhancement is crucial in both industrial and household cleaning products.

AEEA-AEEA is also employed in the synthesis of polymers and resins, which are vital components in numerous commercial products. Polymers and resins made from AEEA-AEEA exhibit unique properties such as flexibility, durability, and resistance to environmental factors, making them suitable for a broad range of applications. For instance, these polymers are used in the production of coatings, adhesives, and sealants. The inclusion of AEEA-AEEA in these materials improves their adherence, strength, and longevity, thereby ensuring the high performance of products designed for both consumer and industrial use.

Additionally, AEEA-AEEA plays a crucial role in the manufacturing of pharmaceuticals and agrochemicals. In the pharmaceutical sector, AEEA-AEEA is utilized as an intermediate in the synthesis of various drugs, contributing to the development of effective and safe medications. In agrochemicals, AEEA-AEEA helps in the formulation of herbicides, insecticides, and fungicides, enhancing their efficacy in protecting crops from pests and diseases. The ability of AEEA-AEEA to enhance the solubility and stability of active ingredients in these formulations significantly boosts their performance, ensuring better crop protection and higher yields in agriculture.

The molarity calculator equation

Mass (g) = Concentration (mol/L) × Volume (L) × Molecular Weight (g/mol)

The dilution calculator equation

Concentration (start) × Volume (start) = Concentration (final) × Volume (final)

This equation is commonly abbreviated as: C1V1 = C2V2

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