93-83-4
Chemical Structure
Oleic acid diethanolamide
Synonym(s): OADA
- CAS No.: 93-83-4
- Formula:C22H43NO3
- Molecular Weight:369.58
IUPAC Name: 3-bromo-5-(trifluoromethyl)-1,2,4-oxadiazole
InChIKey: LPMBTLLQQJBUOO-KTKRTIGZSA-N
SMILES: CCCCCCCC/C=C\CCCCCCCC(N(CCO)CCO)=O
Biological Activity: Oleic acid diethanolamide (OADA) is a non-ionic, biodegradable surfactant. Oleic acid diethanolamide reduces the surface tension of water, emulsifies free water in diesel fuel to form a stable emulsion, and can be loaded onto sulfonated polystyrene nanoparticles to enhance oil recovery. Oleic acid diethanolamide is one of the nematicidal secondary metabolites produced by Aspergillus flavus. Oleic acid diethanolamide can be used in studies related to biological control of root-knot nematodes, enhanced oil recovery, and diesel fuel emulsion stabilization[1][2][3][4].
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Oleic acid diethanolamide | Oleic acid diethanolamide (OADA) is a non-ionic, biodegradable surfactant. Oleic acid diethanolamide reduces the surface tension of water, emulsifies free water in diesel fuel to form a stable emulsion, and can be loaded onto sulfonated polystyrene nanoparticles to enhance oil recovery. Oleic acid diethanolamide is one of the nematicidal secondary metabolites produced by Aspergillus flavus. Oleic acid diethanolamide can be used in studies related to biological control of root-knot nematodes, enhanced oil recovery, and diesel fuel emulsion stabilization. | |||||||||||||||||||||
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- [1]. P C Caplan S, et al. Sulfonated Polystyrene Nanoparticles as Oleic Acid Diethanolamide Surfactant Nanocarriers for Enhanced Oil Recovery Processes. Polymers. 2019 Sep 17;11(9):1513.
- [2]. Ghareeb RY, et al. Biocontrol potential of endophytic fungi against phytopathogenic nematodes on potato (Solanum tuberosum L.). Scientific reports. 2024 Jul 05;14(1):15547.
- [3]. Nallusamy P, et al. Synthesis and evaluation of biodegradable oleic acid diethanolamide surfactants for water stabilization in diesel storage tanks[J]. Bulletin of Materials Science, 2025, 48(1): 35.
- [4]. Boshui C, et al. Enhanced biodegradability, lubricity and corrosiveness of lubricating oil by oleic acid diethanolamide phosphate[J]. Tribology in Industry, 2012, 34(3): 152.
Keywords